SlideShare a Scribd company logo
1 of 4
Download to read offline
Scientific Review
ISSN(e): 2412-2599, ISSN(p): 2413-8835
Vol. 4, Issue. 7, pp: 64-67, 2018
URL: https://arpgweb.com/journal/journal/10
DOI: https://doi.org/10.32861/sr.47.64.67
Academic Research Publishing
Group
64
Original Research Open Access
Cancer and Carbon Nano Tubes: A Promising Hope of Future
Satish Kumar Samal
Department of Nanotechnology, Swarnandhra College of Engineering and technology, Narasapur, Andhra Pradesh-534280, India
Abstract
One way to alleviate the terrible side effects of chemotherapy is to find a way to better control what cells are needed
to be targeted by the drugs in cancer patients. By being able to target only the cancerous cells within the body, less
chemotherapy drugs would need to be injected into the patient for cancer treatment, thus reducing, if not completely
wiping away, the side effects of the chemotherapy drugs. Cancer researchers have figured out a method that better
delivers drugs, such as chemotherapy drugs, to cancer cells without damaging surrounding healthy ones, by
discovering a way to use single-walled carbon nanotubes (SWCNTs) as targeted medicinal delivery mediums. For
how small they are, their inner volumes are relatively large, leaving enough space to carry drugs into the body. Both
the inner and outer surfaces of SWCNTs can be easily modified for “functionalization”. Their small size nature
allows them to enter the nuclei of cells freely. Most importantly, single-walled carbon nanotubes are completely safe
and nontoxic and proven to be stable to use in inserting and transporting drugs into the body. Presently, carbon
nanotubes are not only being used as drug delivery systems, but as a means of directly killing malignant cells within
the body. All of these applications of CNTs makes it promising and would lead to great advances in medicine in the
future.
Keywords: Chemotherapy; Cancer; Single walled carbon nanotubes (SWCNTs); Functionalization; Malignant cells.
CC BY: Creative Commons Attribution License 4.0
1. Carbon Nanotubes: Amazing Structures
The discovery of carbon nanotubes has led to huge breakthroughs in the biomedical field. Their chemical and
structural properties allow them to be used for a variety of scientific practices on a molecular level. These carbon
nanotubes allow research to be conducted on a nano scale. Researchers are currently conducting studies where they
use carbon nanotubes (CNTs) as sensors that can locate harmful toxins that damage DNA, as a drug delivery system,
and as a tool to destroy cancerous.
2. Discovery
The first carbon nanotube was discovered in 1991 by scientist Sumio Iijima. Iijima had discovered multi-walled
carbon nanotubes which are cylindrical structures comprised of sheets of rolled up benzene ring carbons that are
usually capped on at least one end Martin [1]. They were described as several carbon tubes, nested like “Russian
dolls” [2]. A few years later in 1993, single walled carbon nanotubes (SWCNT) were discovered by Iijima’s group at
NEC and Donald Bethune's group at IBM's Almaden Research Center in California [2]. Single walled carbon
nanotubes are also long cylindrical structures, but they are made up of only one layer of rolled up benzene ring
carbons. CNTs are very small, but also very strong. In fact, carbon nanotubes are stronger than steel. Also, carbon
nanotubes can act as either conductors or semiconductors [1].
Fig-1.
Single Walled CNT Double walled CNT Multi Walled CNT
The discovery of these impressive structures and their interesting properties ignited much research within the
scientific community. Through this research, it was discovered that carbon nanotubes have many different scientific
applications. However, it is the carbon nanotubes impact on the medical field which proves to be the most beneficial
to society.
Scientific Review
65
2. Bio Medical Applications
Over the past few years, breakthroughs have been made pertaining to the use of carbon nanotubes in the medical
field. Many of these advances have been specifically focusing on the use of carbon nanotubes in cancer research.
Scientists have been trying to find ways to utilize the amazing properties of carbon nanotubes to fight cancer and to
alleviate some of the side effects associated with other cancer treatments, such as chemotherapy
To understand why it is so important to find new cancer treatments and to improve already existing ones like
chemotherapy, one must understand the side effects that cancer patients must endure every day. Patients treated with
chemotherapy are injected with large doses of medicine to ensure that enough will hopefully reach many of the
cancerous cells in the body. Chemotherapy drugs damage any quickly dividing cell. When chemotherapy drugs are
simply injected into the body, the drugs cannot distinguish between malignant cells and healthy cells which are also
dividing quickly, therefore the drugs, in addition to killing the cancerous cells may damage normal cells as well.
Common healthy cells which are damaged during chemotherapy include: the cells of hair follicles, the cells lining
the digestive tract, the cells of the skin and mouth, and bone marrow and blood cells. The damaging of these cells is
what causes the many awful side effects that chemotherapy patients must experience while undergoing treatment.
The damaging of the hair follicles is what causes hair loss. Nausea and vomiting are caused by the damage of the
cells lining the digestive tract. The damage of the cells in the skin and mouth causes dryness and sores in the
patient’s mouth and also dry skin. All of these side effects are awful; however the damage of the bone marrow and
blood cells is dangerous [3].
During chemotherapy, bone marrow, which is the liquid inside a person’s bones that makes blood cells, may not
be able to produce enough cells to allow the body to function properly. Not having enough red blood cells is known
as anemia, which causes fatigue and the feeling of being short of breath. White blood cells are what fight off
infection within the body; therefore the lowering of the white blood cell count makes a patient more susceptible to
disease. Lastly, chemotherapy lowers the platelet count in the body. Platelets are the small specimens that form the
blood clots that stop bleeding from cuts or bruises; therefore if there are not enough of them within the body, the
cancer patients may bleed too much even from the most miniscule wound. Although chemotherapy is a wonderful
tool for the fight against cancer, its side effects are alarming. Fortunately, CNTs may be utilized to help diminish the
awful side effects of chemotherapy.
3. Chemotherapy Sensors
Carbon nanotubes have many uses, one of which being the ability to be used as sensors. SWCNTs can act as
highly specific electronic sensors for detecting clinically important bio molecules [1]. The sensors can detect
chemotherapy drugs as well as toxins and free radicals in the body. These sensors are created by wrapping carbon
nanotubes in DNA so they can be injected safely into living tissue. Scientists from MIT have been working on this
project and have developed nanotechnology that can be placed inside living cells to determine whether
chemotherapy drugs are reaching their targets or attacking healthy cells. The sensors would work by giving off a
fluorescent light whenever the nanotubes would come in contact with different agents within the body. The different
drugs or agents would change the intensity or wavelength of the light given off by the nanotubes. This would allow
doctors to determine exactly what the sensors have come in contact with. This discovery could allow doctors to
monitor chemotherapy treatment in patients and to know exactly where the drugs are, and whether or not the drugs
are attacking their intended targets [4]. Although knowing whether or not the chemotherapy drugs are reaching the
right cells is important, an even bigger step has been made. Researchers at several universities believe that carbon
nanotubes may be used not only as sensors, but as drug delivery systems in the future.
4. Chemotherapy Drug Delivery
One way to alleviate the terrible side effects that chemotherapy has on cancer patients is to find a way to better
control what cells the drugs attack. By being able to target only the cancerous cells within the body, less
chemotherapy drugs would need to be injected into the patient for cancer treatment, thus reducing, if not completely
wiping away, the side effects of the chemotherapy drugs. Cancer researchers have figured out a method that better
delivers drugs, such as chemotherapy drugs, to cancer cells without damaging surrounding healthy ones, by
discovering a way to use single-walled carbon nanotubes as targeted medicinal delivery mediums [4].
It is the single-walled carbon nanotubes’ amazing properties which allow it to be such a useful delivery tool.
Firstly, their small nature allows them to enter the nuclei of cells freely. For how small they are, their inner volumes
are relatively large, leaving enough space to carry drugs into the body. Drugs, however, can also be attached to the
tips and walls of the single-walled carbon nanotubes. Moreover, both the inner and outer surfaces of SWCNTs can
be easily modified for “functionalization” [2]. This means that the surfaces can be manipulated to function in a
specific way for different drugs. Thus single-walled carbon nanotubes can be modified to bind with whatever drug
(in this case chemotherapy drugs) they are delivering, while at the same time not changing the properties of the drug.
In addition, it is also possible to make their surface compatible with the cancerous areas which they are targeting so
that other areas will remain unaffected [2]. Most importantly, single-walled carbon nanotubes are completely safe
and nontoxic. Researchers from the University of London, UK, Institute of Molecular and Cellular Biology/CNRS,
France, and University of Trieste, Italy conducted research using lab mice to determine whether single-walled
carbon nanotubes were safe for use in drug delivery. Kostas Kostarelos, a researcher from the University Of London
School Of Pharmacy stated that "Functionalized carbon nanotubes were shown to be cleared from blood circulation
and into the urine quite fast as intact nanotubes, in the absence of any appreciable tissue accumulation or organ
Scientific Review
66
function complication” [5]. All of these properties allow SWCNTs to be the perfect candidates for chemotherapy
drug delivery vehicles [6]. Scientists at Stanford University have been conducting research on using SWCNTs as
drug delivery systems. The scientists at Stanford used the size of their single-walled carbon nanotubes to prevent the
chemotherapy drug from reaching healthy cells. The holes in the walls of blood cells within tumors are larger than
those within normal cells; therefore the scientists adjusted the size of the carbon nanotubes so that they would fit
through the cancerous cells, but were too large to pass through the healthy ones, thus preventing the drugs from
damaging normal cells. Also, the scientists did not place the chemotherapy drug within the SWCNT but on the
outside. They did this by coating the single-walled carbon nanotubes with polyethylene glycol or PEG. The structure
of the PEG compound is that of a trunk with three little branches. The scientists placed the trunk within the SWCNT
but allowed the branches to still stick out. The researchers then attached the chemotherapy drugs onto the branches
of the nanotubes. After conducting their research, the scientists have received very exciting results. They have noted
that the nanotubes allow them to insert up to “10 times as much medication into the tumor cells” [4]. Moreover, the
scientists stated that after twenty-two days, the tumors of the mice treated with the single-walled carbon nanotubes
drug delivery system were “on average, less than half the size of the mice that were treated traditionally”
5. Other Cancer Treatment Applications
SWCNTs do not only aid in chemotherapy treatment, but in several other innovative cancer treatments as well
Ajima, et al. [7]. Presently, carbon nanotubes are not only being used as drug delivery systems, but as a means of
directly killing malignant cells within the body. Scientists at Stanford University have found one possible way to do
this. The scientists first coat carbon nanotubes with folate molecules and then insert them into the cancer patient’s
body. The CNTs are coated with folate molecules because cancerous cells, unlike healthy ones, contain receptors for
the vitamin folate [8]. Thus the carbon nanotubes will only enter the malignant cells and not the healthy ones. The
CNTs are then hit with a near-infrared laser, whose beams pass safely through normal cells. The near-infrared light
waves heat up the CNTs, within the malignant cells, “to about 158°F in two minutes” [9]. Thus killing the cancerous
cells from the inside out. Because of the folate molecules, this process targets and kills only the cancerous cells
within the body, leaving the healthy ones untouched and undamaged [9]. Another way in which scientists are killing
cancerous cells is very similiar to the one discussed in the previous paragraph. In this case, scientist Balaji
Panchapakesan, from the University of Delaware, patented a process in which he uses exploding carbon nanotubes to
kill cancerous cells. Panchapakesan wishes to fill carbon nanotubes with water before adding them to the body. Once
the water-filled nanotubes enter the tumors (Panchapakesan plans on labelling the nanotubes with an antibody
specific to the cancer cell receptors of the tumors, such as folic molecules), they are hit with a laser. The water
within the CNTs begins to boil and the resulting rise in pressure causes the CNTs to explode killing the nearby cells
[9, 10]. Both of these processes bring about a new way to directly kill cancer cells.
6. Other Medical Benefits
Carbon nanotubes have made an impact on the entire medical field, not just in cancer research. On top of being
excellent delivery systems for chemotherapy drugs, SWCNTs may also function as a means of delivering gene
therapies and vaccines. Moreover, the CNTs usefulness as a sensor can be utilized in creating things such as heart
pacemakers. Lastly, there is a possibility that in the future CNTs may be embedded on tools used in surgery to “aid
surgeons by providing specific properties of tissue to be cut and provide information about performance of their
instruments during surgery”[11]. All of these applications of CNTs would lead to great advances in medicine in the
future undergoing treatment.
7. Sustaining Life
Sustainability is a major issue that is impacting the world today. When most people think of the word
sustainability, the first thing that usually comes to mind is environmental issues; however the term sustainability also
applies to many other things which are equally important, such as the improvement of humanity. As stated
previously within the paper, the most promising applications concerning carbon nanotubes are those pertaining to
advancements within the field of medicine. These advancements which are implemented by the use of carbon
nanotubes in medical treatments, directly impact the quality of life of patients. The impact of the quality of life of
people in society is one form of sustainability, because medical advances prolong life.
One way in which carbon nanotubes sustain life is by utilizing them as drug-delivery systems within the body
[10, 12, 13]. The discomfort that chemotherapy patients experience while is a direct result of the drugs not only
killing cancerous cells but healthy blood cells as well. The carbon nanotubes ability to directly deliver chemotherapy
drugs to cancerous cells would leave all healthy cells unharmed by the drugs. The fact that carbon nanotubes can be
utilized as a way to target only malignant cells would greatly diminish the side effects of chemotherapy drugs.
Reducing these side effects would in turn improve the health of the cancer patients as well as letting them undergo
their treatment more comfortably than ever before. Not only would this application of carbon nanotubes in medicine
alleviate the truly awful side effects of chemotherapy drugs that patients currently must endure, but it would also
improve their effectiveness. The increase of the effectiveness of the drug would sustain the lives of many cancer
patients. If this technology is fully harnessed, chemotherapy patients would experience a vast improvement in their
quality of life while undergoing treatment. Another way, in which carbon nanotubes sustain the life of cancer
patients, is by using them as direct tools in killing cancerous cells, as explained in one of the preceding sections
titled, “Other Cancer Treatment Applications”. If either of the two methods where heated carbon nanotubes are used
Scientific Review
67
to either roast or blow up tumors can be developed for use in humans, the quality of life of cancer patients would
greatly improve. Both of these processes were designed to alleviate the side effects that chemotherapy and other
cancer treatments cause. These awful side effects such as loss of hair and low white blood cell count (which can lead
to infections), as previously stated, are a result of other treatments killing both cancerous cells and healthy cells.
However with these recent advancements, doctors in the future may be able to only treat and kill the malignant cells,
leaving the healthy ones untouched. If this is so, cancer patients will no longer have to endure as much discomfort as
they have had to in the past. Moreover these methods of killing the cancer cells would be more effective than any
other treatment before [14, 15]. These possible uses of carbon nanotubes in cancer treatments may lead to vast
progression in sustainability relating to the improvement of human life [16] Both of these applications not only hold
the ability to improve the quality of life of the patients, but also to prolong their lives.
8. Future Scopes
Researchers, who have been heavily studying cancer for years, might have found the cure they have been
waiting for in carbon nanotubes. Single-walled carbon nanotubes have been proven safe and stable to use in inserting
and transporting drugs into the body. Though very small, their properties allow them to make a huge impact on the
field of science. If advances continue, Single-walled carbon nanotubes may just be the answer to a brighter future for
cancer and chemotherapy treatment.
References
[1] Martin, B., 2006. "practical applications of carbon nanotubes in medicine." MMG 445 Basic Biotechnology
Journal, Available: https://www.scribd.com/document/264994699/Practical-Applications-of-Carbon-
Nanotubes-in-Medicine
[2] Sinha, N., John, T., and Yeow, W., 2005. "Carbon nanotubes for biomedical applications." IEEE
Transactions on NanoBioscience, vol. 4, pp. 180-195.
[3] What are the possible side effects of chemotherapy?, 2008. "American Cancer Society." Available:
http://www.cancer.org/docroot/ETO/content/ETO_1_4X_What_Are_The_Side_Effects_of_Chemotherapy.
asp?sitearea=ETO
[4] Gaudin, S., 2008. "Researchers use nanotech to target chemo cancer treatment." Computerworld IDG,
Available: https://www.computerworld.com/article/2534637/app-development/-smart-bomb--nanoparticles-
stop-cancer-s-spread.html
[5] Kalaugher, L., 2006. "Carbon nanotubes pass through body fast Nanotechweb.org." Available:
http://nanotechweb.org/cws/article/tech/24223
[6] Feazell, R., Ratchford, N., Dai, H., and Lippard, S., 2007. "Soluble single-walled carbon nanotubes as
longboatdelivery systems for platinum(IV) Anticancer drug design." J. Am. Chem. Soc., vol. 129, pp. 8438-
8439.
[7] Ajima, K., Yudasaka, M., Murakami, T., Maigne, A., Shiba, K., and Iijima, S., 2005. "Carbon nanohorns as
anticancer drug carriers." Molecular Pharmaceutics, vol. 2, pp. 475-480.
[8] Dhar, S., Liu, Z., Thomale, J., Dai, H., and Lippard, S., 2008. "Targeted single-wall carbon nanotube-
mediated Pt(IV) Prodrug delivery using folate as a homing device." J. Am. Chem. Soc., vol. 130, pp. 11467-
11476.
[9] Vaibhav, R., 2014. "Carbon nanotubes: An emerging drug carrier for targeting cancer cells." Journal of
Drug Delivery, vol. 2014, p. 23.
[10] Alberto, B. and Kostas, K., 2005. "Maurizio prato, Applications of carbon nanotubes in drug delivery."
Current Opinion in Chemical Biology, vol. 9, pp. 674-679.
[11] Schönenberger, 2000. "Christian multiwall carbon nanotubes Physicsworld.com." Available:
http://physicsworld.com/cws/article/print/606
[12] Hong, X., Long, L., Guohong, F., and Xiangfeng, C., 2018. "DFT study of nanotubes as the drug delivery
vehicles of Efavirenz." Computational and Theoretical Chemistry, vol. 1131, pp. 57-68.
[13] Bhirde, A. A., Patel, V., and Gavard, J., 2009. "Targeted killing of cancer cells In vivo and In vitro with
EGF-directed carbon nanotube-based drug delivery." ACS Nano, vol. 3, pp. 307-316.
[14] Singh, R., Pantarotto, D., McCarthy, D., Chaloin, O., Hoebeke, J., Partidos, C., Briand, J., Prato, M.,
Bianco, A., et al., 2005. "Binding and condensation of plasmid DNA onto functionalized carbon nanotubes,
Toward the construction of nanotube-based gene delivery vectors." J. Am. Chem. Soc., vol. 127, pp. 4388-
4396.
[15] Moghimi, S. M., Hunter, A. C., and Murray, J. C., 2001. "Long-circulating and target-specific
nanoparticles, theory to practice." Pharmacol Rev., vol. 53, pp. 283-318.
[16] Dai, H., 2002. "Carbon nanotubes, synthesis, integration and properties." Acc. Chem. Res., vol. 35, pp.
1035-1044.

More Related Content

What's hot

Nanotechnology Drug delivery systems for antibacterial treatments
Nanotechnology Drug delivery systems for antibacterial treatmentsNanotechnology Drug delivery systems for antibacterial treatments
Nanotechnology Drug delivery systems for antibacterial treatmentsUniversity of ruhuna Srilanka
 
14th International Conference and Exhibition on Nanomedicine and Pharmaceutic...
14th International Conference and Exhibition on Nanomedicine and Pharmaceutic...14th International Conference and Exhibition on Nanomedicine and Pharmaceutic...
14th International Conference and Exhibition on Nanomedicine and Pharmaceutic...Evelyn Smith
 
Use of Nanotechnology in Diagnosis and Treatment of Cancer
Use of Nanotechnology in Diagnosis and Treatment of CancerUse of Nanotechnology in Diagnosis and Treatment of Cancer
Use of Nanotechnology in Diagnosis and Treatment of CancerAnas Indabawa
 
credit seminar application of nanotechnology in veterinary science
credit seminar application of nanotechnology in veterinary science credit seminar application of nanotechnology in veterinary science
credit seminar application of nanotechnology in veterinary science mamta meena
 
Applications of nanobiotechnology in medicine
Applications of nanobiotechnology in medicineApplications of nanobiotechnology in medicine
Applications of nanobiotechnology in medicineRameshPandi4
 
Nanoparticle Gold in therapy and cosmetology
 Nanoparticle Gold in therapy and cosmetology Nanoparticle Gold in therapy and cosmetology
Nanoparticle Gold in therapy and cosmetologyguest49edce
 
DIAGNOSTICS - Diagnosis of TB - A Nanodiagnostic Approach.pdf
DIAGNOSTICS - Diagnosis of TB - A Nanodiagnostic Approach.pdfDIAGNOSTICS - Diagnosis of TB - A Nanodiagnostic Approach.pdf
DIAGNOSTICS - Diagnosis of TB - A Nanodiagnostic Approach.pdfsudeepbhattacharyya
 
Nanotechnology in medicine
Nanotechnology in medicineNanotechnology in medicine
Nanotechnology in medicineHidayah Ismawi
 
Nanotechnology for Cancer therapy: Recent developments
Nanotechnology for Cancer therapy: Recent developmentsNanotechnology for Cancer therapy: Recent developments
Nanotechnology for Cancer therapy: Recent developmentsroshan telrandhe
 
Silver nanoparticles are broad spectrum bactericidal and virucidal compounds
Silver nanoparticles are broad spectrum bactericidal and virucidal compoundsSilver nanoparticles are broad spectrum bactericidal and virucidal compounds
Silver nanoparticles are broad spectrum bactericidal and virucidal compoundsJillFischer4
 
NANOTECHNOLOGY IN TREATMENT OF CANCER
NANOTECHNOLOGY IN TREATMENT OF CANCERNANOTECHNOLOGY IN TREATMENT OF CANCER
NANOTECHNOLOGY IN TREATMENT OF CANCERpurnimatunuguntla
 
Nano technology for medicine
Nano technology for medicineNano technology for medicine
Nano technology for medicineSachini Madushika
 
cancer treatment using nanotechnology
cancer treatment using nanotechnologycancer treatment using nanotechnology
cancer treatment using nanotechnologyAsha Jain
 
Dubina Michael biomedical technologies at Skolkovo
Dubina Michael biomedical technologies at SkolkovoDubina Michael biomedical technologies at Skolkovo
Dubina Michael biomedical technologies at Skolkovoigorod
 
Toxicological Screening and Quantitation Using Liquid Chromatography/Time-of-...
Toxicological Screening and Quantitation Using Liquid Chromatography/Time-of-...Toxicological Screening and Quantitation Using Liquid Chromatography/Time-of-...
Toxicological Screening and Quantitation Using Liquid Chromatography/Time-of-...Annex Publishers
 
DIAGNOSTICS - Application of nanodiagnostics in point-of-care tests for infec...
DIAGNOSTICS - Application of nanodiagnostics in point-of-care tests for infec...DIAGNOSTICS - Application of nanodiagnostics in point-of-care tests for infec...
DIAGNOSTICS - Application of nanodiagnostics in point-of-care tests for infec...sudeepbhattacharyya
 

What's hot (20)

Nanotechnology Drug delivery systems for antibacterial treatments
Nanotechnology Drug delivery systems for antibacterial treatmentsNanotechnology Drug delivery systems for antibacterial treatments
Nanotechnology Drug delivery systems for antibacterial treatments
 
Nano tech
Nano techNano tech
Nano tech
 
INNOVATIVE TRENDS AND ASPECT OF GREEN NANO-TECHNOLOGY DEVELOPMENT CHALLENGES...
INNOVATIVE TRENDS AND ASPECT OF GREEN NANO-TECHNOLOGY DEVELOPMENT  CHALLENGES...INNOVATIVE TRENDS AND ASPECT OF GREEN NANO-TECHNOLOGY DEVELOPMENT  CHALLENGES...
INNOVATIVE TRENDS AND ASPECT OF GREEN NANO-TECHNOLOGY DEVELOPMENT CHALLENGES...
 
14th International Conference and Exhibition on Nanomedicine and Pharmaceutic...
14th International Conference and Exhibition on Nanomedicine and Pharmaceutic...14th International Conference and Exhibition on Nanomedicine and Pharmaceutic...
14th International Conference and Exhibition on Nanomedicine and Pharmaceutic...
 
Use of Nanotechnology in Diagnosis and Treatment of Cancer
Use of Nanotechnology in Diagnosis and Treatment of CancerUse of Nanotechnology in Diagnosis and Treatment of Cancer
Use of Nanotechnology in Diagnosis and Treatment of Cancer
 
credit seminar application of nanotechnology in veterinary science
credit seminar application of nanotechnology in veterinary science credit seminar application of nanotechnology in veterinary science
credit seminar application of nanotechnology in veterinary science
 
Applications of nanobiotechnology in medicine
Applications of nanobiotechnology in medicineApplications of nanobiotechnology in medicine
Applications of nanobiotechnology in medicine
 
Nanoparticle Gold in therapy and cosmetology
 Nanoparticle Gold in therapy and cosmetology Nanoparticle Gold in therapy and cosmetology
Nanoparticle Gold in therapy and cosmetology
 
DIAGNOSTICS - Diagnosis of TB - A Nanodiagnostic Approach.pdf
DIAGNOSTICS - Diagnosis of TB - A Nanodiagnostic Approach.pdfDIAGNOSTICS - Diagnosis of TB - A Nanodiagnostic Approach.pdf
DIAGNOSTICS - Diagnosis of TB - A Nanodiagnostic Approach.pdf
 
NANO TECHNOLOGY
NANO TECHNOLOGYNANO TECHNOLOGY
NANO TECHNOLOGY
 
Nanotechnology in medicine
Nanotechnology in medicineNanotechnology in medicine
Nanotechnology in medicine
 
Nanotechnology for Cancer therapy: Recent developments
Nanotechnology for Cancer therapy: Recent developmentsNanotechnology for Cancer therapy: Recent developments
Nanotechnology for Cancer therapy: Recent developments
 
Silver nanoparticles are broad spectrum bactericidal and virucidal compounds
Silver nanoparticles are broad spectrum bactericidal and virucidal compoundsSilver nanoparticles are broad spectrum bactericidal and virucidal compounds
Silver nanoparticles are broad spectrum bactericidal and virucidal compounds
 
NANOTECHNOLOGY IN TREATMENT OF CANCER
NANOTECHNOLOGY IN TREATMENT OF CANCERNANOTECHNOLOGY IN TREATMENT OF CANCER
NANOTECHNOLOGY IN TREATMENT OF CANCER
 
Nano technology for medicine
Nano technology for medicineNano technology for medicine
Nano technology for medicine
 
Nano Enabled Drug Delivery (NEDD)
Nano Enabled Drug Delivery (NEDD)Nano Enabled Drug Delivery (NEDD)
Nano Enabled Drug Delivery (NEDD)
 
cancer treatment using nanotechnology
cancer treatment using nanotechnologycancer treatment using nanotechnology
cancer treatment using nanotechnology
 
Dubina Michael biomedical technologies at Skolkovo
Dubina Michael biomedical technologies at SkolkovoDubina Michael biomedical technologies at Skolkovo
Dubina Michael biomedical technologies at Skolkovo
 
Toxicological Screening and Quantitation Using Liquid Chromatography/Time-of-...
Toxicological Screening and Quantitation Using Liquid Chromatography/Time-of-...Toxicological Screening and Quantitation Using Liquid Chromatography/Time-of-...
Toxicological Screening and Quantitation Using Liquid Chromatography/Time-of-...
 
DIAGNOSTICS - Application of nanodiagnostics in point-of-care tests for infec...
DIAGNOSTICS - Application of nanodiagnostics in point-of-care tests for infec...DIAGNOSTICS - Application of nanodiagnostics in point-of-care tests for infec...
DIAGNOSTICS - Application of nanodiagnostics in point-of-care tests for infec...
 

Similar to Cancer and Carbon Nano Tubes: A Promising Hope of Future

Nanoparticle research article
Nanoparticle research articleNanoparticle research article
Nanoparticle research articleTaylor Bogan
 
applicationsofnanobiotechnologyinmedicine-200421050140.pdf
applicationsofnanobiotechnologyinmedicine-200421050140.pdfapplicationsofnanobiotechnologyinmedicine-200421050140.pdf
applicationsofnanobiotechnologyinmedicine-200421050140.pdfFreedomTshabuse
 
Fight with cancer using nanorobots
Fight with cancer using nanorobotsFight with cancer using nanorobots
Fight with cancer using nanorobotsAbhijeet kapse
 
Nanotechnology for cancer therapy recent developments
Nanotechnology for cancer therapy recent developmentsNanotechnology for cancer therapy recent developments
Nanotechnology for cancer therapy recent developmentsroshan telrandhe
 
Nanotechnology and potential in Cancer therapy and treatment
Nanotechnology and potential in Cancer therapy and treatmentNanotechnology and potential in Cancer therapy and treatment
Nanotechnology and potential in Cancer therapy and treatmentladen12
 
Presentation on Nanoparticles Smart Drug Delivery System For Cancer
Presentation on Nanoparticles Smart Drug Delivery System For Cancer Presentation on Nanoparticles Smart Drug Delivery System For Cancer
Presentation on Nanoparticles Smart Drug Delivery System For Cancer no company
 
Nanorobotics is the emerging technology field of creating machines or robots ...
Nanorobotics is the emerging technology field of creating machines or robots ...Nanorobotics is the emerging technology field of creating machines or robots ...
Nanorobotics is the emerging technology field of creating machines or robots ...Amit Srivastav
 
Various Approach for the Treatment of Cancer - using Nano-Technology
Various Approach for the Treatment of Cancer - using Nano-TechnologyVarious Approach for the Treatment of Cancer - using Nano-Technology
Various Approach for the Treatment of Cancer - using Nano-Technologyijsrd.com
 
Clinical applications of bionanotechnology
Clinical applications of bionanotechnologyClinical applications of bionanotechnology
Clinical applications of bionanotechnologyHari kesavan
 
apl-uw_biennial_2013 ARTICLE camilo perez
apl-uw_biennial_2013 ARTICLE camilo perezapl-uw_biennial_2013 ARTICLE camilo perez
apl-uw_biennial_2013 ARTICLE camilo perezCamilo Perez
 
Improvisation of Conventional Techniques: The Future of Oncology Research
Improvisation of Conventional Techniques: The Future of Oncology ResearchImprovisation of Conventional Techniques: The Future of Oncology Research
Improvisation of Conventional Techniques: The Future of Oncology Researchasclepiuspdfs
 
Nanoparticle Based Targeting Approaches for Lung Cancer: A Mini Review
Nanoparticle Based Targeting Approaches for Lung Cancer: A Mini ReviewNanoparticle Based Targeting Approaches for Lung Cancer: A Mini Review
Nanoparticle Based Targeting Approaches for Lung Cancer: A Mini ReviewAI Publications
 
Case Study for ARI - Monochromatic X-Rays
Case Study for ARI - Monochromatic X-RaysCase Study for ARI - Monochromatic X-Rays
Case Study for ARI - Monochromatic X-RaysAleksey Dubrovensky
 
cancer treatment using nanotechnology by RAMYA G
cancer treatment using nanotechnology by RAMYA Gcancer treatment using nanotechnology by RAMYA G
cancer treatment using nanotechnology by RAMYA Gramya ramyasekar95
 
NANOTECHNOLOGY FOR CANCER THERAPY RECENT DEVELOPMENTS
NANOTECHNOLOGY FOR CANCER THERAPY RECENT DEVELOPMENTSNANOTECHNOLOGY FOR CANCER THERAPY RECENT DEVELOPMENTS
NANOTECHNOLOGY FOR CANCER THERAPY RECENT DEVELOPMENTSroshan telrandhe
 
carbon nano tubes for delivery of anticancer drugs
carbon nano tubes for delivery of anticancer drugscarbon nano tubes for delivery of anticancer drugs
carbon nano tubes for delivery of anticancer drugsRameshwar Madharia
 

Similar to Cancer and Carbon Nano Tubes: A Promising Hope of Future (20)

Nanoparticle research article
Nanoparticle research articleNanoparticle research article
Nanoparticle research article
 
Nanomedicine
Nanomedicine Nanomedicine
Nanomedicine
 
applicationsofnanobiotechnologyinmedicine-200421050140.pdf
applicationsofnanobiotechnologyinmedicine-200421050140.pdfapplicationsofnanobiotechnologyinmedicine-200421050140.pdf
applicationsofnanobiotechnologyinmedicine-200421050140.pdf
 
Fight with cancer using nanorobots
Fight with cancer using nanorobotsFight with cancer using nanorobots
Fight with cancer using nanorobots
 
Report[1]
Report[1]Report[1]
Report[1]
 
Nanotechnology for cancer therapy recent developments
Nanotechnology for cancer therapy recent developmentsNanotechnology for cancer therapy recent developments
Nanotechnology for cancer therapy recent developments
 
Nanotechnology and potential in Cancer therapy and treatment
Nanotechnology and potential in Cancer therapy and treatmentNanotechnology and potential in Cancer therapy and treatment
Nanotechnology and potential in Cancer therapy and treatment
 
Presentation on Nanoparticles Smart Drug Delivery System For Cancer
Presentation on Nanoparticles Smart Drug Delivery System For Cancer Presentation on Nanoparticles Smart Drug Delivery System For Cancer
Presentation on Nanoparticles Smart Drug Delivery System For Cancer
 
Nanorobotics is the emerging technology field of creating machines or robots ...
Nanorobotics is the emerging technology field of creating machines or robots ...Nanorobotics is the emerging technology field of creating machines or robots ...
Nanorobotics is the emerging technology field of creating machines or robots ...
 
Various Approach for the Treatment of Cancer - using Nano-Technology
Various Approach for the Treatment of Cancer - using Nano-TechnologyVarious Approach for the Treatment of Cancer - using Nano-Technology
Various Approach for the Treatment of Cancer - using Nano-Technology
 
Clinical applications of bionanotechnology
Clinical applications of bionanotechnologyClinical applications of bionanotechnology
Clinical applications of bionanotechnology
 
apl-uw_biennial_2013 ARTICLE camilo perez
apl-uw_biennial_2013 ARTICLE camilo perezapl-uw_biennial_2013 ARTICLE camilo perez
apl-uw_biennial_2013 ARTICLE camilo perez
 
Improvisation of Conventional Techniques: The Future of Oncology Research
Improvisation of Conventional Techniques: The Future of Oncology ResearchImprovisation of Conventional Techniques: The Future of Oncology Research
Improvisation of Conventional Techniques: The Future of Oncology Research
 
Application of chemistry
Application of chemistryApplication of chemistry
Application of chemistry
 
Nanoparticle Based Targeting Approaches for Lung Cancer: A Mini Review
Nanoparticle Based Targeting Approaches for Lung Cancer: A Mini ReviewNanoparticle Based Targeting Approaches for Lung Cancer: A Mini Review
Nanoparticle Based Targeting Approaches for Lung Cancer: A Mini Review
 
Case Study for ARI - Monochromatic X-Rays
Case Study for ARI - Monochromatic X-RaysCase Study for ARI - Monochromatic X-Rays
Case Study for ARI - Monochromatic X-Rays
 
cancer treatment using nanotechnology by RAMYA G
cancer treatment using nanotechnology by RAMYA Gcancer treatment using nanotechnology by RAMYA G
cancer treatment using nanotechnology by RAMYA G
 
NANOTECHNOLOGY FOR CANCER THERAPY RECENT DEVELOPMENTS
NANOTECHNOLOGY FOR CANCER THERAPY RECENT DEVELOPMENTSNANOTECHNOLOGY FOR CANCER THERAPY RECENT DEVELOPMENTS
NANOTECHNOLOGY FOR CANCER THERAPY RECENT DEVELOPMENTS
 
Gold nanoparticles against cancer
Gold nanoparticles  against cancerGold nanoparticles  against cancer
Gold nanoparticles against cancer
 
carbon nano tubes for delivery of anticancer drugs
carbon nano tubes for delivery of anticancer drugscarbon nano tubes for delivery of anticancer drugs
carbon nano tubes for delivery of anticancer drugs
 

More from Scientific Review SR

Scientific Management of Equipment in Medical Innovation Laboratory
Scientific Management of Equipment in Medical Innovation LaboratoryScientific Management of Equipment in Medical Innovation Laboratory
Scientific Management of Equipment in Medical Innovation LaboratoryScientific Review SR
 
Internationalization and Sustainable Operations: A Broad Investigation of Chi...
Internationalization and Sustainable Operations: A Broad Investigation of Chi...Internationalization and Sustainable Operations: A Broad Investigation of Chi...
Internationalization and Sustainable Operations: A Broad Investigation of Chi...Scientific Review SR
 
Mechanical Engineering in Ancient Egypt, Part 92: Tomb Inscription During the...
Mechanical Engineering in Ancient Egypt, Part 92: Tomb Inscription During the...Mechanical Engineering in Ancient Egypt, Part 92: Tomb Inscription During the...
Mechanical Engineering in Ancient Egypt, Part 92: Tomb Inscription During the...Scientific Review SR
 
Usability Engineering, Human Computer Interaction and Allied Sciences: With R...
Usability Engineering, Human Computer Interaction and Allied Sciences: With R...Usability Engineering, Human Computer Interaction and Allied Sciences: With R...
Usability Engineering, Human Computer Interaction and Allied Sciences: With R...Scientific Review SR
 
Concentration Distribution and Ecological Risk Assessment of Polycyclic Aroma...
Concentration Distribution and Ecological Risk Assessment of Polycyclic Aroma...Concentration Distribution and Ecological Risk Assessment of Polycyclic Aroma...
Concentration Distribution and Ecological Risk Assessment of Polycyclic Aroma...Scientific Review SR
 
Volume Fractions of Tantalum Carbides Deduced from the Ta Contents in the Mat...
Volume Fractions of Tantalum Carbides Deduced from the Ta Contents in the Mat...Volume Fractions of Tantalum Carbides Deduced from the Ta Contents in the Mat...
Volume Fractions of Tantalum Carbides Deduced from the Ta Contents in the Mat...Scientific Review SR
 
Assessment of the Coliform Bacterial Load of Some Drinking Water Sources in D...
Assessment of the Coliform Bacterial Load of Some Drinking Water Sources in D...Assessment of the Coliform Bacterial Load of Some Drinking Water Sources in D...
Assessment of the Coliform Bacterial Load of Some Drinking Water Sources in D...Scientific Review SR
 
Bio Inspired Self-Curing Composite: A Leap into Augmented Enactment
Bio Inspired Self-Curing Composite: A Leap into Augmented EnactmentBio Inspired Self-Curing Composite: A Leap into Augmented Enactment
Bio Inspired Self-Curing Composite: A Leap into Augmented EnactmentScientific Review SR
 
Influence of Information and Communication Technology (ICT) in Tourism Sector...
Influence of Information and Communication Technology (ICT) in Tourism Sector...Influence of Information and Communication Technology (ICT) in Tourism Sector...
Influence of Information and Communication Technology (ICT) in Tourism Sector...Scientific Review SR
 
Reinforcement of Bakelite Moulding Powder in Acrylonitrile Butadiene Rubber (...
Reinforcement of Bakelite Moulding Powder in Acrylonitrile Butadiene Rubber (...Reinforcement of Bakelite Moulding Powder in Acrylonitrile Butadiene Rubber (...
Reinforcement of Bakelite Moulding Powder in Acrylonitrile Butadiene Rubber (...Scientific Review SR
 
Toxic Effect of Glyphosate-Pesticide on Lipid Peroxidation Superoxide Dismuta...
Toxic Effect of Glyphosate-Pesticide on Lipid Peroxidation Superoxide Dismuta...Toxic Effect of Glyphosate-Pesticide on Lipid Peroxidation Superoxide Dismuta...
Toxic Effect of Glyphosate-Pesticide on Lipid Peroxidation Superoxide Dismuta...Scientific Review SR
 
Design of Quad-Wheeled Robot for Multi-Terrain Navigation
Design of Quad-Wheeled Robot for Multi-Terrain NavigationDesign of Quad-Wheeled Robot for Multi-Terrain Navigation
Design of Quad-Wheeled Robot for Multi-Terrain NavigationScientific Review SR
 
Geometrical Analysis and Design of Tension-Actuated Ackermann Steering System...
Geometrical Analysis and Design of Tension-Actuated Ackermann Steering System...Geometrical Analysis and Design of Tension-Actuated Ackermann Steering System...
Geometrical Analysis and Design of Tension-Actuated Ackermann Steering System...Scientific Review SR
 
A Study of Propensity Score on Influencing Factors of Length of Stay in Hospi...
A Study of Propensity Score on Influencing Factors of Length of Stay in Hospi...A Study of Propensity Score on Influencing Factors of Length of Stay in Hospi...
A Study of Propensity Score on Influencing Factors of Length of Stay in Hospi...Scientific Review SR
 
Effects of Carbonation on the Properties of Concrete
Effects of Carbonation on the Properties of ConcreteEffects of Carbonation on the Properties of Concrete
Effects of Carbonation on the Properties of ConcreteScientific Review SR
 
Biogas Synthesis as Means of Solid Waste Management in Kampala, Uganda
Biogas Synthesis as Means of Solid Waste Management in Kampala, UgandaBiogas Synthesis as Means of Solid Waste Management in Kampala, Uganda
Biogas Synthesis as Means of Solid Waste Management in Kampala, UgandaScientific Review SR
 
The Influence of Partial Replacement of Some Selected Pozzolans on the Drying...
The Influence of Partial Replacement of Some Selected Pozzolans on the Drying...The Influence of Partial Replacement of Some Selected Pozzolans on the Drying...
The Influence of Partial Replacement of Some Selected Pozzolans on the Drying...Scientific Review SR
 
Study on the Granulation of FLY Ash from Thermal Power Station
Study on the Granulation of FLY Ash from Thermal Power StationStudy on the Granulation of FLY Ash from Thermal Power Station
Study on the Granulation of FLY Ash from Thermal Power StationScientific Review SR
 
Machining Versus Molding Tolerances in Manufacturing Automotive Sealing Systems
Machining Versus Molding Tolerances in Manufacturing Automotive Sealing SystemsMachining Versus Molding Tolerances in Manufacturing Automotive Sealing Systems
Machining Versus Molding Tolerances in Manufacturing Automotive Sealing SystemsScientific Review SR
 
Sinthesis and Properties of Marble-Like Glass-Ceramics Using of Ash from Ther...
Sinthesis and Properties of Marble-Like Glass-Ceramics Using of Ash from Ther...Sinthesis and Properties of Marble-Like Glass-Ceramics Using of Ash from Ther...
Sinthesis and Properties of Marble-Like Glass-Ceramics Using of Ash from Ther...Scientific Review SR
 

More from Scientific Review SR (20)

Scientific Management of Equipment in Medical Innovation Laboratory
Scientific Management of Equipment in Medical Innovation LaboratoryScientific Management of Equipment in Medical Innovation Laboratory
Scientific Management of Equipment in Medical Innovation Laboratory
 
Internationalization and Sustainable Operations: A Broad Investigation of Chi...
Internationalization and Sustainable Operations: A Broad Investigation of Chi...Internationalization and Sustainable Operations: A Broad Investigation of Chi...
Internationalization and Sustainable Operations: A Broad Investigation of Chi...
 
Mechanical Engineering in Ancient Egypt, Part 92: Tomb Inscription During the...
Mechanical Engineering in Ancient Egypt, Part 92: Tomb Inscription During the...Mechanical Engineering in Ancient Egypt, Part 92: Tomb Inscription During the...
Mechanical Engineering in Ancient Egypt, Part 92: Tomb Inscription During the...
 
Usability Engineering, Human Computer Interaction and Allied Sciences: With R...
Usability Engineering, Human Computer Interaction and Allied Sciences: With R...Usability Engineering, Human Computer Interaction and Allied Sciences: With R...
Usability Engineering, Human Computer Interaction and Allied Sciences: With R...
 
Concentration Distribution and Ecological Risk Assessment of Polycyclic Aroma...
Concentration Distribution and Ecological Risk Assessment of Polycyclic Aroma...Concentration Distribution and Ecological Risk Assessment of Polycyclic Aroma...
Concentration Distribution and Ecological Risk Assessment of Polycyclic Aroma...
 
Volume Fractions of Tantalum Carbides Deduced from the Ta Contents in the Mat...
Volume Fractions of Tantalum Carbides Deduced from the Ta Contents in the Mat...Volume Fractions of Tantalum Carbides Deduced from the Ta Contents in the Mat...
Volume Fractions of Tantalum Carbides Deduced from the Ta Contents in the Mat...
 
Assessment of the Coliform Bacterial Load of Some Drinking Water Sources in D...
Assessment of the Coliform Bacterial Load of Some Drinking Water Sources in D...Assessment of the Coliform Bacterial Load of Some Drinking Water Sources in D...
Assessment of the Coliform Bacterial Load of Some Drinking Water Sources in D...
 
Bio Inspired Self-Curing Composite: A Leap into Augmented Enactment
Bio Inspired Self-Curing Composite: A Leap into Augmented EnactmentBio Inspired Self-Curing Composite: A Leap into Augmented Enactment
Bio Inspired Self-Curing Composite: A Leap into Augmented Enactment
 
Influence of Information and Communication Technology (ICT) in Tourism Sector...
Influence of Information and Communication Technology (ICT) in Tourism Sector...Influence of Information and Communication Technology (ICT) in Tourism Sector...
Influence of Information and Communication Technology (ICT) in Tourism Sector...
 
Reinforcement of Bakelite Moulding Powder in Acrylonitrile Butadiene Rubber (...
Reinforcement of Bakelite Moulding Powder in Acrylonitrile Butadiene Rubber (...Reinforcement of Bakelite Moulding Powder in Acrylonitrile Butadiene Rubber (...
Reinforcement of Bakelite Moulding Powder in Acrylonitrile Butadiene Rubber (...
 
Toxic Effect of Glyphosate-Pesticide on Lipid Peroxidation Superoxide Dismuta...
Toxic Effect of Glyphosate-Pesticide on Lipid Peroxidation Superoxide Dismuta...Toxic Effect of Glyphosate-Pesticide on Lipid Peroxidation Superoxide Dismuta...
Toxic Effect of Glyphosate-Pesticide on Lipid Peroxidation Superoxide Dismuta...
 
Design of Quad-Wheeled Robot for Multi-Terrain Navigation
Design of Quad-Wheeled Robot for Multi-Terrain NavigationDesign of Quad-Wheeled Robot for Multi-Terrain Navigation
Design of Quad-Wheeled Robot for Multi-Terrain Navigation
 
Geometrical Analysis and Design of Tension-Actuated Ackermann Steering System...
Geometrical Analysis and Design of Tension-Actuated Ackermann Steering System...Geometrical Analysis and Design of Tension-Actuated Ackermann Steering System...
Geometrical Analysis and Design of Tension-Actuated Ackermann Steering System...
 
A Study of Propensity Score on Influencing Factors of Length of Stay in Hospi...
A Study of Propensity Score on Influencing Factors of Length of Stay in Hospi...A Study of Propensity Score on Influencing Factors of Length of Stay in Hospi...
A Study of Propensity Score on Influencing Factors of Length of Stay in Hospi...
 
Effects of Carbonation on the Properties of Concrete
Effects of Carbonation on the Properties of ConcreteEffects of Carbonation on the Properties of Concrete
Effects of Carbonation on the Properties of Concrete
 
Biogas Synthesis as Means of Solid Waste Management in Kampala, Uganda
Biogas Synthesis as Means of Solid Waste Management in Kampala, UgandaBiogas Synthesis as Means of Solid Waste Management in Kampala, Uganda
Biogas Synthesis as Means of Solid Waste Management in Kampala, Uganda
 
The Influence of Partial Replacement of Some Selected Pozzolans on the Drying...
The Influence of Partial Replacement of Some Selected Pozzolans on the Drying...The Influence of Partial Replacement of Some Selected Pozzolans on the Drying...
The Influence of Partial Replacement of Some Selected Pozzolans on the Drying...
 
Study on the Granulation of FLY Ash from Thermal Power Station
Study on the Granulation of FLY Ash from Thermal Power StationStudy on the Granulation of FLY Ash from Thermal Power Station
Study on the Granulation of FLY Ash from Thermal Power Station
 
Machining Versus Molding Tolerances in Manufacturing Automotive Sealing Systems
Machining Versus Molding Tolerances in Manufacturing Automotive Sealing SystemsMachining Versus Molding Tolerances in Manufacturing Automotive Sealing Systems
Machining Versus Molding Tolerances in Manufacturing Automotive Sealing Systems
 
Sinthesis and Properties of Marble-Like Glass-Ceramics Using of Ash from Ther...
Sinthesis and Properties of Marble-Like Glass-Ceramics Using of Ash from Ther...Sinthesis and Properties of Marble-Like Glass-Ceramics Using of Ash from Ther...
Sinthesis and Properties of Marble-Like Glass-Ceramics Using of Ash from Ther...
 

Recently uploaded

Call Girls Colaba Mumbai ❤️ 9920874524 👈 Cash on Delivery
Call Girls Colaba Mumbai ❤️ 9920874524 👈 Cash on DeliveryCall Girls Colaba Mumbai ❤️ 9920874524 👈 Cash on Delivery
Call Girls Colaba Mumbai ❤️ 9920874524 👈 Cash on Deliverynehamumbai
 
VIP Call Girls Indore Kirti 💚😋 9256729539 🚀 Indore Escorts
VIP Call Girls Indore Kirti 💚😋  9256729539 🚀 Indore EscortsVIP Call Girls Indore Kirti 💚😋  9256729539 🚀 Indore Escorts
VIP Call Girls Indore Kirti 💚😋 9256729539 🚀 Indore Escortsaditipandeya
 
CALL ON ➥9907093804 🔝 Call Girls Hadapsar ( Pune) Girls Service
CALL ON ➥9907093804 🔝 Call Girls Hadapsar ( Pune)  Girls ServiceCALL ON ➥9907093804 🔝 Call Girls Hadapsar ( Pune)  Girls Service
CALL ON ➥9907093804 🔝 Call Girls Hadapsar ( Pune) Girls ServiceMiss joya
 
Call Girls Service Bellary Road Just Call 7001305949 Enjoy College Girls Service
Call Girls Service Bellary Road Just Call 7001305949 Enjoy College Girls ServiceCall Girls Service Bellary Road Just Call 7001305949 Enjoy College Girls Service
Call Girls Service Bellary Road Just Call 7001305949 Enjoy College Girls Servicenarwatsonia7
 
Russian Call Girls in Bangalore Manisha 7001305949 Independent Escort Service...
Russian Call Girls in Bangalore Manisha 7001305949 Independent Escort Service...Russian Call Girls in Bangalore Manisha 7001305949 Independent Escort Service...
Russian Call Girls in Bangalore Manisha 7001305949 Independent Escort Service...narwatsonia7
 
VIP Call Girls Tirunelveli Aaradhya 8250192130 Independent Escort Service Tir...
VIP Call Girls Tirunelveli Aaradhya 8250192130 Independent Escort Service Tir...VIP Call Girls Tirunelveli Aaradhya 8250192130 Independent Escort Service Tir...
VIP Call Girls Tirunelveli Aaradhya 8250192130 Independent Escort Service Tir...narwatsonia7
 
Call Girl Number in Panvel Mumbai📲 9833363713 💞 Full Night Enjoy
Call Girl Number in Panvel Mumbai📲 9833363713 💞 Full Night EnjoyCall Girl Number in Panvel Mumbai📲 9833363713 💞 Full Night Enjoy
Call Girl Number in Panvel Mumbai📲 9833363713 💞 Full Night Enjoybabeytanya
 
VIP Call Girls Pune Sanjana 9907093804 Short 1500 Night 6000 Best call girls ...
VIP Call Girls Pune Sanjana 9907093804 Short 1500 Night 6000 Best call girls ...VIP Call Girls Pune Sanjana 9907093804 Short 1500 Night 6000 Best call girls ...
VIP Call Girls Pune Sanjana 9907093804 Short 1500 Night 6000 Best call girls ...Miss joya
 
Call Girl Bangalore Nandini 7001305949 Independent Escort Service Bangalore
Call Girl Bangalore Nandini 7001305949 Independent Escort Service BangaloreCall Girl Bangalore Nandini 7001305949 Independent Escort Service Bangalore
Call Girl Bangalore Nandini 7001305949 Independent Escort Service Bangalorenarwatsonia7
 
Call Girls Service Surat Samaira ❤️🍑 8250192130 👄 Independent Escort Service ...
Call Girls Service Surat Samaira ❤️🍑 8250192130 👄 Independent Escort Service ...Call Girls Service Surat Samaira ❤️🍑 8250192130 👄 Independent Escort Service ...
Call Girls Service Surat Samaira ❤️🍑 8250192130 👄 Independent Escort Service ...CALL GIRLS
 
Call Girl Number in Vashi Mumbai📲 9833363713 💞 Full Night Enjoy
Call Girl Number in Vashi Mumbai📲 9833363713 💞 Full Night EnjoyCall Girl Number in Vashi Mumbai📲 9833363713 💞 Full Night Enjoy
Call Girl Number in Vashi Mumbai📲 9833363713 💞 Full Night Enjoybabeytanya
 
Best Rate (Hyderabad) Call Girls Jahanuma ⟟ 8250192130 ⟟ High Class Call Girl...
Best Rate (Hyderabad) Call Girls Jahanuma ⟟ 8250192130 ⟟ High Class Call Girl...Best Rate (Hyderabad) Call Girls Jahanuma ⟟ 8250192130 ⟟ High Class Call Girl...
Best Rate (Hyderabad) Call Girls Jahanuma ⟟ 8250192130 ⟟ High Class Call Girl...astropune
 
High Profile Call Girls Coimbatore Saanvi☎️ 8250192130 Independent Escort Se...
High Profile Call Girls Coimbatore Saanvi☎️  8250192130 Independent Escort Se...High Profile Call Girls Coimbatore Saanvi☎️  8250192130 Independent Escort Se...
High Profile Call Girls Coimbatore Saanvi☎️ 8250192130 Independent Escort Se...narwatsonia7
 
Call Girls Service Jaipur Grishma WhatsApp ❤8445551418 VIP Call Girls Jaipur
Call Girls Service Jaipur Grishma WhatsApp ❤8445551418 VIP Call Girls JaipurCall Girls Service Jaipur Grishma WhatsApp ❤8445551418 VIP Call Girls Jaipur
Call Girls Service Jaipur Grishma WhatsApp ❤8445551418 VIP Call Girls Jaipurparulsinha
 
Russian Escorts Girls Nehru Place ZINATHI 🔝9711199012 ☪ 24/7 Call Girls Delhi
Russian Escorts Girls  Nehru Place ZINATHI 🔝9711199012 ☪ 24/7 Call Girls DelhiRussian Escorts Girls  Nehru Place ZINATHI 🔝9711199012 ☪ 24/7 Call Girls Delhi
Russian Escorts Girls Nehru Place ZINATHI 🔝9711199012 ☪ 24/7 Call Girls DelhiAlinaDevecerski
 
VIP Call Girls Pune Vani 9907093804 Short 1500 Night 6000 Best call girls Ser...
VIP Call Girls Pune Vani 9907093804 Short 1500 Night 6000 Best call girls Ser...VIP Call Girls Pune Vani 9907093804 Short 1500 Night 6000 Best call girls Ser...
VIP Call Girls Pune Vani 9907093804 Short 1500 Night 6000 Best call girls Ser...Miss joya
 
Bangalore Call Girls Nelamangala Number 7001035870 Meetin With Bangalore Esc...
Bangalore Call Girls Nelamangala Number 7001035870  Meetin With Bangalore Esc...Bangalore Call Girls Nelamangala Number 7001035870  Meetin With Bangalore Esc...
Bangalore Call Girls Nelamangala Number 7001035870 Meetin With Bangalore Esc...narwatsonia7
 
Premium Call Girls Cottonpet Whatsapp 7001035870 Independent Escort Service
Premium Call Girls Cottonpet Whatsapp 7001035870 Independent Escort ServicePremium Call Girls Cottonpet Whatsapp 7001035870 Independent Escort Service
Premium Call Girls Cottonpet Whatsapp 7001035870 Independent Escort Servicevidya singh
 
Call Girl Coimbatore Prisha☎️ 8250192130 Independent Escort Service Coimbatore
Call Girl Coimbatore Prisha☎️  8250192130 Independent Escort Service CoimbatoreCall Girl Coimbatore Prisha☎️  8250192130 Independent Escort Service Coimbatore
Call Girl Coimbatore Prisha☎️ 8250192130 Independent Escort Service Coimbatorenarwatsonia7
 

Recently uploaded (20)

Call Girls Colaba Mumbai ❤️ 9920874524 👈 Cash on Delivery
Call Girls Colaba Mumbai ❤️ 9920874524 👈 Cash on DeliveryCall Girls Colaba Mumbai ❤️ 9920874524 👈 Cash on Delivery
Call Girls Colaba Mumbai ❤️ 9920874524 👈 Cash on Delivery
 
VIP Call Girls Indore Kirti 💚😋 9256729539 🚀 Indore Escorts
VIP Call Girls Indore Kirti 💚😋  9256729539 🚀 Indore EscortsVIP Call Girls Indore Kirti 💚😋  9256729539 🚀 Indore Escorts
VIP Call Girls Indore Kirti 💚😋 9256729539 🚀 Indore Escorts
 
CALL ON ➥9907093804 🔝 Call Girls Hadapsar ( Pune) Girls Service
CALL ON ➥9907093804 🔝 Call Girls Hadapsar ( Pune)  Girls ServiceCALL ON ➥9907093804 🔝 Call Girls Hadapsar ( Pune)  Girls Service
CALL ON ➥9907093804 🔝 Call Girls Hadapsar ( Pune) Girls Service
 
Call Girls Service Bellary Road Just Call 7001305949 Enjoy College Girls Service
Call Girls Service Bellary Road Just Call 7001305949 Enjoy College Girls ServiceCall Girls Service Bellary Road Just Call 7001305949 Enjoy College Girls Service
Call Girls Service Bellary Road Just Call 7001305949 Enjoy College Girls Service
 
Russian Call Girls in Bangalore Manisha 7001305949 Independent Escort Service...
Russian Call Girls in Bangalore Manisha 7001305949 Independent Escort Service...Russian Call Girls in Bangalore Manisha 7001305949 Independent Escort Service...
Russian Call Girls in Bangalore Manisha 7001305949 Independent Escort Service...
 
VIP Call Girls Tirunelveli Aaradhya 8250192130 Independent Escort Service Tir...
VIP Call Girls Tirunelveli Aaradhya 8250192130 Independent Escort Service Tir...VIP Call Girls Tirunelveli Aaradhya 8250192130 Independent Escort Service Tir...
VIP Call Girls Tirunelveli Aaradhya 8250192130 Independent Escort Service Tir...
 
Call Girl Number in Panvel Mumbai📲 9833363713 💞 Full Night Enjoy
Call Girl Number in Panvel Mumbai📲 9833363713 💞 Full Night EnjoyCall Girl Number in Panvel Mumbai📲 9833363713 💞 Full Night Enjoy
Call Girl Number in Panvel Mumbai📲 9833363713 💞 Full Night Enjoy
 
VIP Call Girls Pune Sanjana 9907093804 Short 1500 Night 6000 Best call girls ...
VIP Call Girls Pune Sanjana 9907093804 Short 1500 Night 6000 Best call girls ...VIP Call Girls Pune Sanjana 9907093804 Short 1500 Night 6000 Best call girls ...
VIP Call Girls Pune Sanjana 9907093804 Short 1500 Night 6000 Best call girls ...
 
Call Girl Bangalore Nandini 7001305949 Independent Escort Service Bangalore
Call Girl Bangalore Nandini 7001305949 Independent Escort Service BangaloreCall Girl Bangalore Nandini 7001305949 Independent Escort Service Bangalore
Call Girl Bangalore Nandini 7001305949 Independent Escort Service Bangalore
 
Call Girls Service Surat Samaira ❤️🍑 8250192130 👄 Independent Escort Service ...
Call Girls Service Surat Samaira ❤️🍑 8250192130 👄 Independent Escort Service ...Call Girls Service Surat Samaira ❤️🍑 8250192130 👄 Independent Escort Service ...
Call Girls Service Surat Samaira ❤️🍑 8250192130 👄 Independent Escort Service ...
 
Call Girl Number in Vashi Mumbai📲 9833363713 💞 Full Night Enjoy
Call Girl Number in Vashi Mumbai📲 9833363713 💞 Full Night EnjoyCall Girl Number in Vashi Mumbai📲 9833363713 💞 Full Night Enjoy
Call Girl Number in Vashi Mumbai📲 9833363713 💞 Full Night Enjoy
 
Best Rate (Hyderabad) Call Girls Jahanuma ⟟ 8250192130 ⟟ High Class Call Girl...
Best Rate (Hyderabad) Call Girls Jahanuma ⟟ 8250192130 ⟟ High Class Call Girl...Best Rate (Hyderabad) Call Girls Jahanuma ⟟ 8250192130 ⟟ High Class Call Girl...
Best Rate (Hyderabad) Call Girls Jahanuma ⟟ 8250192130 ⟟ High Class Call Girl...
 
High Profile Call Girls Coimbatore Saanvi☎️ 8250192130 Independent Escort Se...
High Profile Call Girls Coimbatore Saanvi☎️  8250192130 Independent Escort Se...High Profile Call Girls Coimbatore Saanvi☎️  8250192130 Independent Escort Se...
High Profile Call Girls Coimbatore Saanvi☎️ 8250192130 Independent Escort Se...
 
Call Girls Service Jaipur Grishma WhatsApp ❤8445551418 VIP Call Girls Jaipur
Call Girls Service Jaipur Grishma WhatsApp ❤8445551418 VIP Call Girls JaipurCall Girls Service Jaipur Grishma WhatsApp ❤8445551418 VIP Call Girls Jaipur
Call Girls Service Jaipur Grishma WhatsApp ❤8445551418 VIP Call Girls Jaipur
 
Russian Escorts Girls Nehru Place ZINATHI 🔝9711199012 ☪ 24/7 Call Girls Delhi
Russian Escorts Girls  Nehru Place ZINATHI 🔝9711199012 ☪ 24/7 Call Girls DelhiRussian Escorts Girls  Nehru Place ZINATHI 🔝9711199012 ☪ 24/7 Call Girls Delhi
Russian Escorts Girls Nehru Place ZINATHI 🔝9711199012 ☪ 24/7 Call Girls Delhi
 
VIP Call Girls Pune Vani 9907093804 Short 1500 Night 6000 Best call girls Ser...
VIP Call Girls Pune Vani 9907093804 Short 1500 Night 6000 Best call girls Ser...VIP Call Girls Pune Vani 9907093804 Short 1500 Night 6000 Best call girls Ser...
VIP Call Girls Pune Vani 9907093804 Short 1500 Night 6000 Best call girls Ser...
 
Bangalore Call Girls Nelamangala Number 7001035870 Meetin With Bangalore Esc...
Bangalore Call Girls Nelamangala Number 7001035870  Meetin With Bangalore Esc...Bangalore Call Girls Nelamangala Number 7001035870  Meetin With Bangalore Esc...
Bangalore Call Girls Nelamangala Number 7001035870 Meetin With Bangalore Esc...
 
sauth delhi call girls in Bhajanpura 🔝 9953056974 🔝 escort Service
sauth delhi call girls in Bhajanpura 🔝 9953056974 🔝 escort Servicesauth delhi call girls in Bhajanpura 🔝 9953056974 🔝 escort Service
sauth delhi call girls in Bhajanpura 🔝 9953056974 🔝 escort Service
 
Premium Call Girls Cottonpet Whatsapp 7001035870 Independent Escort Service
Premium Call Girls Cottonpet Whatsapp 7001035870 Independent Escort ServicePremium Call Girls Cottonpet Whatsapp 7001035870 Independent Escort Service
Premium Call Girls Cottonpet Whatsapp 7001035870 Independent Escort Service
 
Call Girl Coimbatore Prisha☎️ 8250192130 Independent Escort Service Coimbatore
Call Girl Coimbatore Prisha☎️  8250192130 Independent Escort Service CoimbatoreCall Girl Coimbatore Prisha☎️  8250192130 Independent Escort Service Coimbatore
Call Girl Coimbatore Prisha☎️ 8250192130 Independent Escort Service Coimbatore
 

Cancer and Carbon Nano Tubes: A Promising Hope of Future

  • 1. Scientific Review ISSN(e): 2412-2599, ISSN(p): 2413-8835 Vol. 4, Issue. 7, pp: 64-67, 2018 URL: https://arpgweb.com/journal/journal/10 DOI: https://doi.org/10.32861/sr.47.64.67 Academic Research Publishing Group 64 Original Research Open Access Cancer and Carbon Nano Tubes: A Promising Hope of Future Satish Kumar Samal Department of Nanotechnology, Swarnandhra College of Engineering and technology, Narasapur, Andhra Pradesh-534280, India Abstract One way to alleviate the terrible side effects of chemotherapy is to find a way to better control what cells are needed to be targeted by the drugs in cancer patients. By being able to target only the cancerous cells within the body, less chemotherapy drugs would need to be injected into the patient for cancer treatment, thus reducing, if not completely wiping away, the side effects of the chemotherapy drugs. Cancer researchers have figured out a method that better delivers drugs, such as chemotherapy drugs, to cancer cells without damaging surrounding healthy ones, by discovering a way to use single-walled carbon nanotubes (SWCNTs) as targeted medicinal delivery mediums. For how small they are, their inner volumes are relatively large, leaving enough space to carry drugs into the body. Both the inner and outer surfaces of SWCNTs can be easily modified for “functionalization”. Their small size nature allows them to enter the nuclei of cells freely. Most importantly, single-walled carbon nanotubes are completely safe and nontoxic and proven to be stable to use in inserting and transporting drugs into the body. Presently, carbon nanotubes are not only being used as drug delivery systems, but as a means of directly killing malignant cells within the body. All of these applications of CNTs makes it promising and would lead to great advances in medicine in the future. Keywords: Chemotherapy; Cancer; Single walled carbon nanotubes (SWCNTs); Functionalization; Malignant cells. CC BY: Creative Commons Attribution License 4.0 1. Carbon Nanotubes: Amazing Structures The discovery of carbon nanotubes has led to huge breakthroughs in the biomedical field. Their chemical and structural properties allow them to be used for a variety of scientific practices on a molecular level. These carbon nanotubes allow research to be conducted on a nano scale. Researchers are currently conducting studies where they use carbon nanotubes (CNTs) as sensors that can locate harmful toxins that damage DNA, as a drug delivery system, and as a tool to destroy cancerous. 2. Discovery The first carbon nanotube was discovered in 1991 by scientist Sumio Iijima. Iijima had discovered multi-walled carbon nanotubes which are cylindrical structures comprised of sheets of rolled up benzene ring carbons that are usually capped on at least one end Martin [1]. They were described as several carbon tubes, nested like “Russian dolls” [2]. A few years later in 1993, single walled carbon nanotubes (SWCNT) were discovered by Iijima’s group at NEC and Donald Bethune's group at IBM's Almaden Research Center in California [2]. Single walled carbon nanotubes are also long cylindrical structures, but they are made up of only one layer of rolled up benzene ring carbons. CNTs are very small, but also very strong. In fact, carbon nanotubes are stronger than steel. Also, carbon nanotubes can act as either conductors or semiconductors [1]. Fig-1. Single Walled CNT Double walled CNT Multi Walled CNT The discovery of these impressive structures and their interesting properties ignited much research within the scientific community. Through this research, it was discovered that carbon nanotubes have many different scientific applications. However, it is the carbon nanotubes impact on the medical field which proves to be the most beneficial to society.
  • 2. Scientific Review 65 2. Bio Medical Applications Over the past few years, breakthroughs have been made pertaining to the use of carbon nanotubes in the medical field. Many of these advances have been specifically focusing on the use of carbon nanotubes in cancer research. Scientists have been trying to find ways to utilize the amazing properties of carbon nanotubes to fight cancer and to alleviate some of the side effects associated with other cancer treatments, such as chemotherapy To understand why it is so important to find new cancer treatments and to improve already existing ones like chemotherapy, one must understand the side effects that cancer patients must endure every day. Patients treated with chemotherapy are injected with large doses of medicine to ensure that enough will hopefully reach many of the cancerous cells in the body. Chemotherapy drugs damage any quickly dividing cell. When chemotherapy drugs are simply injected into the body, the drugs cannot distinguish between malignant cells and healthy cells which are also dividing quickly, therefore the drugs, in addition to killing the cancerous cells may damage normal cells as well. Common healthy cells which are damaged during chemotherapy include: the cells of hair follicles, the cells lining the digestive tract, the cells of the skin and mouth, and bone marrow and blood cells. The damaging of these cells is what causes the many awful side effects that chemotherapy patients must experience while undergoing treatment. The damaging of the hair follicles is what causes hair loss. Nausea and vomiting are caused by the damage of the cells lining the digestive tract. The damage of the cells in the skin and mouth causes dryness and sores in the patient’s mouth and also dry skin. All of these side effects are awful; however the damage of the bone marrow and blood cells is dangerous [3]. During chemotherapy, bone marrow, which is the liquid inside a person’s bones that makes blood cells, may not be able to produce enough cells to allow the body to function properly. Not having enough red blood cells is known as anemia, which causes fatigue and the feeling of being short of breath. White blood cells are what fight off infection within the body; therefore the lowering of the white blood cell count makes a patient more susceptible to disease. Lastly, chemotherapy lowers the platelet count in the body. Platelets are the small specimens that form the blood clots that stop bleeding from cuts or bruises; therefore if there are not enough of them within the body, the cancer patients may bleed too much even from the most miniscule wound. Although chemotherapy is a wonderful tool for the fight against cancer, its side effects are alarming. Fortunately, CNTs may be utilized to help diminish the awful side effects of chemotherapy. 3. Chemotherapy Sensors Carbon nanotubes have many uses, one of which being the ability to be used as sensors. SWCNTs can act as highly specific electronic sensors for detecting clinically important bio molecules [1]. The sensors can detect chemotherapy drugs as well as toxins and free radicals in the body. These sensors are created by wrapping carbon nanotubes in DNA so they can be injected safely into living tissue. Scientists from MIT have been working on this project and have developed nanotechnology that can be placed inside living cells to determine whether chemotherapy drugs are reaching their targets or attacking healthy cells. The sensors would work by giving off a fluorescent light whenever the nanotubes would come in contact with different agents within the body. The different drugs or agents would change the intensity or wavelength of the light given off by the nanotubes. This would allow doctors to determine exactly what the sensors have come in contact with. This discovery could allow doctors to monitor chemotherapy treatment in patients and to know exactly where the drugs are, and whether or not the drugs are attacking their intended targets [4]. Although knowing whether or not the chemotherapy drugs are reaching the right cells is important, an even bigger step has been made. Researchers at several universities believe that carbon nanotubes may be used not only as sensors, but as drug delivery systems in the future. 4. Chemotherapy Drug Delivery One way to alleviate the terrible side effects that chemotherapy has on cancer patients is to find a way to better control what cells the drugs attack. By being able to target only the cancerous cells within the body, less chemotherapy drugs would need to be injected into the patient for cancer treatment, thus reducing, if not completely wiping away, the side effects of the chemotherapy drugs. Cancer researchers have figured out a method that better delivers drugs, such as chemotherapy drugs, to cancer cells without damaging surrounding healthy ones, by discovering a way to use single-walled carbon nanotubes as targeted medicinal delivery mediums [4]. It is the single-walled carbon nanotubes’ amazing properties which allow it to be such a useful delivery tool. Firstly, their small nature allows them to enter the nuclei of cells freely. For how small they are, their inner volumes are relatively large, leaving enough space to carry drugs into the body. Drugs, however, can also be attached to the tips and walls of the single-walled carbon nanotubes. Moreover, both the inner and outer surfaces of SWCNTs can be easily modified for “functionalization” [2]. This means that the surfaces can be manipulated to function in a specific way for different drugs. Thus single-walled carbon nanotubes can be modified to bind with whatever drug (in this case chemotherapy drugs) they are delivering, while at the same time not changing the properties of the drug. In addition, it is also possible to make their surface compatible with the cancerous areas which they are targeting so that other areas will remain unaffected [2]. Most importantly, single-walled carbon nanotubes are completely safe and nontoxic. Researchers from the University of London, UK, Institute of Molecular and Cellular Biology/CNRS, France, and University of Trieste, Italy conducted research using lab mice to determine whether single-walled carbon nanotubes were safe for use in drug delivery. Kostas Kostarelos, a researcher from the University Of London School Of Pharmacy stated that "Functionalized carbon nanotubes were shown to be cleared from blood circulation and into the urine quite fast as intact nanotubes, in the absence of any appreciable tissue accumulation or organ
  • 3. Scientific Review 66 function complication” [5]. All of these properties allow SWCNTs to be the perfect candidates for chemotherapy drug delivery vehicles [6]. Scientists at Stanford University have been conducting research on using SWCNTs as drug delivery systems. The scientists at Stanford used the size of their single-walled carbon nanotubes to prevent the chemotherapy drug from reaching healthy cells. The holes in the walls of blood cells within tumors are larger than those within normal cells; therefore the scientists adjusted the size of the carbon nanotubes so that they would fit through the cancerous cells, but were too large to pass through the healthy ones, thus preventing the drugs from damaging normal cells. Also, the scientists did not place the chemotherapy drug within the SWCNT but on the outside. They did this by coating the single-walled carbon nanotubes with polyethylene glycol or PEG. The structure of the PEG compound is that of a trunk with three little branches. The scientists placed the trunk within the SWCNT but allowed the branches to still stick out. The researchers then attached the chemotherapy drugs onto the branches of the nanotubes. After conducting their research, the scientists have received very exciting results. They have noted that the nanotubes allow them to insert up to “10 times as much medication into the tumor cells” [4]. Moreover, the scientists stated that after twenty-two days, the tumors of the mice treated with the single-walled carbon nanotubes drug delivery system were “on average, less than half the size of the mice that were treated traditionally” 5. Other Cancer Treatment Applications SWCNTs do not only aid in chemotherapy treatment, but in several other innovative cancer treatments as well Ajima, et al. [7]. Presently, carbon nanotubes are not only being used as drug delivery systems, but as a means of directly killing malignant cells within the body. Scientists at Stanford University have found one possible way to do this. The scientists first coat carbon nanotubes with folate molecules and then insert them into the cancer patient’s body. The CNTs are coated with folate molecules because cancerous cells, unlike healthy ones, contain receptors for the vitamin folate [8]. Thus the carbon nanotubes will only enter the malignant cells and not the healthy ones. The CNTs are then hit with a near-infrared laser, whose beams pass safely through normal cells. The near-infrared light waves heat up the CNTs, within the malignant cells, “to about 158°F in two minutes” [9]. Thus killing the cancerous cells from the inside out. Because of the folate molecules, this process targets and kills only the cancerous cells within the body, leaving the healthy ones untouched and undamaged [9]. Another way in which scientists are killing cancerous cells is very similiar to the one discussed in the previous paragraph. In this case, scientist Balaji Panchapakesan, from the University of Delaware, patented a process in which he uses exploding carbon nanotubes to kill cancerous cells. Panchapakesan wishes to fill carbon nanotubes with water before adding them to the body. Once the water-filled nanotubes enter the tumors (Panchapakesan plans on labelling the nanotubes with an antibody specific to the cancer cell receptors of the tumors, such as folic molecules), they are hit with a laser. The water within the CNTs begins to boil and the resulting rise in pressure causes the CNTs to explode killing the nearby cells [9, 10]. Both of these processes bring about a new way to directly kill cancer cells. 6. Other Medical Benefits Carbon nanotubes have made an impact on the entire medical field, not just in cancer research. On top of being excellent delivery systems for chemotherapy drugs, SWCNTs may also function as a means of delivering gene therapies and vaccines. Moreover, the CNTs usefulness as a sensor can be utilized in creating things such as heart pacemakers. Lastly, there is a possibility that in the future CNTs may be embedded on tools used in surgery to “aid surgeons by providing specific properties of tissue to be cut and provide information about performance of their instruments during surgery”[11]. All of these applications of CNTs would lead to great advances in medicine in the future undergoing treatment. 7. Sustaining Life Sustainability is a major issue that is impacting the world today. When most people think of the word sustainability, the first thing that usually comes to mind is environmental issues; however the term sustainability also applies to many other things which are equally important, such as the improvement of humanity. As stated previously within the paper, the most promising applications concerning carbon nanotubes are those pertaining to advancements within the field of medicine. These advancements which are implemented by the use of carbon nanotubes in medical treatments, directly impact the quality of life of patients. The impact of the quality of life of people in society is one form of sustainability, because medical advances prolong life. One way in which carbon nanotubes sustain life is by utilizing them as drug-delivery systems within the body [10, 12, 13]. The discomfort that chemotherapy patients experience while is a direct result of the drugs not only killing cancerous cells but healthy blood cells as well. The carbon nanotubes ability to directly deliver chemotherapy drugs to cancerous cells would leave all healthy cells unharmed by the drugs. The fact that carbon nanotubes can be utilized as a way to target only malignant cells would greatly diminish the side effects of chemotherapy drugs. Reducing these side effects would in turn improve the health of the cancer patients as well as letting them undergo their treatment more comfortably than ever before. Not only would this application of carbon nanotubes in medicine alleviate the truly awful side effects of chemotherapy drugs that patients currently must endure, but it would also improve their effectiveness. The increase of the effectiveness of the drug would sustain the lives of many cancer patients. If this technology is fully harnessed, chemotherapy patients would experience a vast improvement in their quality of life while undergoing treatment. Another way, in which carbon nanotubes sustain the life of cancer patients, is by using them as direct tools in killing cancerous cells, as explained in one of the preceding sections titled, “Other Cancer Treatment Applications”. If either of the two methods where heated carbon nanotubes are used
  • 4. Scientific Review 67 to either roast or blow up tumors can be developed for use in humans, the quality of life of cancer patients would greatly improve. Both of these processes were designed to alleviate the side effects that chemotherapy and other cancer treatments cause. These awful side effects such as loss of hair and low white blood cell count (which can lead to infections), as previously stated, are a result of other treatments killing both cancerous cells and healthy cells. However with these recent advancements, doctors in the future may be able to only treat and kill the malignant cells, leaving the healthy ones untouched. If this is so, cancer patients will no longer have to endure as much discomfort as they have had to in the past. Moreover these methods of killing the cancer cells would be more effective than any other treatment before [14, 15]. These possible uses of carbon nanotubes in cancer treatments may lead to vast progression in sustainability relating to the improvement of human life [16] Both of these applications not only hold the ability to improve the quality of life of the patients, but also to prolong their lives. 8. Future Scopes Researchers, who have been heavily studying cancer for years, might have found the cure they have been waiting for in carbon nanotubes. Single-walled carbon nanotubes have been proven safe and stable to use in inserting and transporting drugs into the body. Though very small, their properties allow them to make a huge impact on the field of science. If advances continue, Single-walled carbon nanotubes may just be the answer to a brighter future for cancer and chemotherapy treatment. References [1] Martin, B., 2006. "practical applications of carbon nanotubes in medicine." MMG 445 Basic Biotechnology Journal, Available: https://www.scribd.com/document/264994699/Practical-Applications-of-Carbon- Nanotubes-in-Medicine [2] Sinha, N., John, T., and Yeow, W., 2005. "Carbon nanotubes for biomedical applications." IEEE Transactions on NanoBioscience, vol. 4, pp. 180-195. [3] What are the possible side effects of chemotherapy?, 2008. "American Cancer Society." Available: http://www.cancer.org/docroot/ETO/content/ETO_1_4X_What_Are_The_Side_Effects_of_Chemotherapy. asp?sitearea=ETO [4] Gaudin, S., 2008. "Researchers use nanotech to target chemo cancer treatment." Computerworld IDG, Available: https://www.computerworld.com/article/2534637/app-development/-smart-bomb--nanoparticles- stop-cancer-s-spread.html [5] Kalaugher, L., 2006. "Carbon nanotubes pass through body fast Nanotechweb.org." Available: http://nanotechweb.org/cws/article/tech/24223 [6] Feazell, R., Ratchford, N., Dai, H., and Lippard, S., 2007. "Soluble single-walled carbon nanotubes as longboatdelivery systems for platinum(IV) Anticancer drug design." J. Am. Chem. Soc., vol. 129, pp. 8438- 8439. [7] Ajima, K., Yudasaka, M., Murakami, T., Maigne, A., Shiba, K., and Iijima, S., 2005. "Carbon nanohorns as anticancer drug carriers." Molecular Pharmaceutics, vol. 2, pp. 475-480. [8] Dhar, S., Liu, Z., Thomale, J., Dai, H., and Lippard, S., 2008. "Targeted single-wall carbon nanotube- mediated Pt(IV) Prodrug delivery using folate as a homing device." J. Am. Chem. Soc., vol. 130, pp. 11467- 11476. [9] Vaibhav, R., 2014. "Carbon nanotubes: An emerging drug carrier for targeting cancer cells." Journal of Drug Delivery, vol. 2014, p. 23. [10] Alberto, B. and Kostas, K., 2005. "Maurizio prato, Applications of carbon nanotubes in drug delivery." Current Opinion in Chemical Biology, vol. 9, pp. 674-679. [11] Schönenberger, 2000. "Christian multiwall carbon nanotubes Physicsworld.com." Available: http://physicsworld.com/cws/article/print/606 [12] Hong, X., Long, L., Guohong, F., and Xiangfeng, C., 2018. "DFT study of nanotubes as the drug delivery vehicles of Efavirenz." Computational and Theoretical Chemistry, vol. 1131, pp. 57-68. [13] Bhirde, A. A., Patel, V., and Gavard, J., 2009. "Targeted killing of cancer cells In vivo and In vitro with EGF-directed carbon nanotube-based drug delivery." ACS Nano, vol. 3, pp. 307-316. [14] Singh, R., Pantarotto, D., McCarthy, D., Chaloin, O., Hoebeke, J., Partidos, C., Briand, J., Prato, M., Bianco, A., et al., 2005. "Binding and condensation of plasmid DNA onto functionalized carbon nanotubes, Toward the construction of nanotube-based gene delivery vectors." J. Am. Chem. Soc., vol. 127, pp. 4388- 4396. [15] Moghimi, S. M., Hunter, A. C., and Murray, J. C., 2001. "Long-circulating and target-specific nanoparticles, theory to practice." Pharmacol Rev., vol. 53, pp. 283-318. [16] Dai, H., 2002. "Carbon nanotubes, synthesis, integration and properties." Acc. Chem. Res., vol. 35, pp. 1035-1044.