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Role of Nutraceuticals in
Cardiovascular Diseases
Ravindra V. Kale
Ph.D Fellow
College of Food Technology, Parbhani
Content
๏‚— What is cardiovascular diseases ?
๏‚— Causes of CVD
๏‚— CVD Markers
๏‚— What are Nutraceutical?
๏‚— Nutraceutical Triple Play
๏‚— Various Nutraceutical and their role in CVD
๏‚— Conclusion
๏‚— References
Cardiovascular Disease ???
๏‚— Heart and blood vessel disease โ€” also called heart
disease โ€” includes numerous problems, many of
which are related to a process called atherosclerosis.
๏‚— Atherosclerosis occurs as the artery walls are
damaged from oxidized low-density lipoproteins (LDL),
initiating an inflammatory response.
โ€ข Intestinal cholesterol comes from our diet and from
liver synthesis, which is sent with bile into the
intestines. Here it is absorbed into the blood through
the intestinal wall and transported via lipoproteins.
๏‚— The subsequent inflammation pile-up of plasmin,
fibrin and adhesion proteins such as ICAM and
VCAM combine to harden the artery wall, narrowing
and restricting blood flow and elasticity.
๏‚— Atherosclerosis is a condition that develops when a
substance called plaque builds up in the walls of the
arteries.
๏ถPlaque consist of calcium, fat, cholesterol, cellular
waste, and fibrin, a material involved in blood
clotting. Unstable plaques are rich in macrophages
and foam cells and the extracellular matrix
๏ƒผFoam cells are formed when the body sends
macrophages to the location of a fatty deposit on
the blood vessel walls.
๏ƒผThe macrophage surrounds the fatty material in
an attempt to destroy it. The cell becomes filled
with lipids (fats).
๏ƒผThe lipids surrounded by the macrophage give it
a โ€œfoamyโ€ appearance.
๏ƒผThis buildup narrows the arteries, making it
harder for blood to flow through. If a blood clot
forms, it can stop the blood flow. This can cause a
heart attack or stroke.
๏ถ Foam cells are fat-laden macrophages
seen in atherosclerosis.
Various CVDโ€™S
๏‚— Arrhythmia (problems with the heartbeat,
irregular heartbeat)
๏‚— Angina (chest pain, discomfort, or tightness)
๏‚— Coronary artery disease (CAD) narrowing of the
blood vessels (coronary arteries) that supply oxygen and blood to
the heart.
๏‚— Heart attack
๏‚— Heart failure
๏‚— Peripheral artery (arterial) disease
๏‚— Stroke
๏‚— Blood clotting disorders
๏‚— Atherosclerosis
What are the risk factor for cardiovascular
disease?
According to the National Health Service (NHS) UK,
๏ถ Hypertension (high blood pressure): If hypertension is poorly
controlled, the artery walls may become damaged, raising the risk of
developing a blood clot.
๏ถ Smoking - regular smoking can narrow the blood vessels, especially
the coronary arteries.
๏ถ Hyperlipidemia (high blood cholesterol) - there is a higher chance of
narrowing of the blood vessels and blood clots
๏ถ Unhealthy eating: Diets which lack adequate amounts of fruit,
vegetables, fiber, whole grains and essential nutrients are not good
for cardiovascular health..
๏ถ Stress - hormones associated with (mental) stress, such as
cortisone, raise blood sugar levels. Stress is also linked to higher
blood pressure
Health burden of cardiovascular
disease worldwide
๏‚— CVDs are the leading cause of deaths globally - more
people die from CVDs than anything else
๏‚— The majority (80%) of CVD deaths occur in low and
middle-income countries.
๏‚— CVDs occur equally in men and women
๏‚— Twenty-five million people will die from CVDs annually
by 2030 - most of the deaths being due to stroke and
heart disease
๏‚— The majority of CVDs are preventable if people
addressed their risk factors.
๏‚— Hypertension (raised blood pressure) is responsible
for 7.5 million deaths each year
Prominent vascular disease markers
๏‚— Cholesterol and triglyceride titers
๏‚— Emerging markers include arterial
complianceโ€”the measurement of artery
stiffness measured by pulse wave
velocity and ischemia-modified albumin
(IMA).
๏‚— IMA is a combined diagnostic
measurement now associated with
abnormal lipids, microvascular damage,
inflammation, hypertension and
What are Nutraceuticals ??
๏‚— A food (or part of food) that provides health or
medical benefits including prevention and/or
treatment of disease.
๏‚— The term "nutraceutical" was coined from
"nutrition" and "pharmaceutical" in 1989 by
Stephen DeFelice, MD, founder and chairman of
the Foundation for Innovation in Medicine (FIM)
The Nutraceutical Triple-Play in CVD
Averting vascular disease is now a central calling for the
Nutraceutical industry. This is because the mechanisms
of vascular damage have increasingly indicated a major
culprit: a lack of nutrition hygiene.
There are three strategies Nutraceutical can offer to
prevent and reverse vascular disease.
1. The first is to reduce circulating levels of LDL-
cholesterol
by forming micelle with bile salts as it contains
cholesterol.
2. The second strategy is to reduce the possibility of
oxidation by neutralizing radicals with antioxidants.
3. The third is to reduce artery plaque through
fibrinolytic activity. A fibrin clot, is broken down a product
of coagulation. Enzyme plasmin cuts the fibrin mesh at
various places leading to production of fragments that
are cleared by kidney and liver.
NUTRACEUTICALS PLAYS ROLE IN VASCULAR DISEASES
๏ฑ Sterols, Stanols, Phenols & Flavones
๏ƒ˜ Plant-derived sterols and stanols compete with cholesterol to
form micelles with bile salts. This reduces cholesterolโ€™s
absorption into the bloodstream.
๏ƒ˜ All plants contain sterols such as stimasterol, beta-sitosterol and
campesterol. Significant amounts appear in vegetables, nuts and
seeds.
๏ƒ˜ Significant stanol content is found in avocados, pumpkin seeds,
cashews, rice bran, and others. Plants favored for sterol and
stanol extraction include corn, soybeans and wheat.
๏ƒ˜ A unique commercial form of sterols is Microphyte.
๏ƒ˜ Phenols have been shown to reduce cholesterol levels and LDL
oxidation. Polyphenolic cathechin which is present in Green tea
(Camellia sinensis) reduces the CVD by enhancing antioxidant
activity by improving endothelial dysfunction, preventing cardiac
hypertrophy and protects mitochondria.
๏ƒ˜ Oxyphyte is now a days available products of polyphenolic extracts of
green tea, apple, pomegranate and red grape.
Tea & its
Cathechin
Suppressing
ROS &
Stimulate
eNOS
Improving
cardiac
Hypertrophy
Protecting
Mitochondria
from damage
Suppressing
Hyperglycemia
Improving
Endothelial
dysfunction
Decreasing
Angiotensin by
inhibiting ACE
Suppressing
Hypertension
AngII: Angiotension Stimulate Hypertrophy. ACE: Angiotensing Converting Enzyme
ROS: Reactive Oxygen Species. eNOS: nitric Oxide Synthase
Chemical composition of various Tea
(mg/g)
Component Green Tea Black Tea
Total Cathechin 150-200 40-60
Caffeine 20-60 20-60
Theanine 8-20 5-10
Theaflavins -- 5-20
Thearubigins -- 60-180
๏ฑ Super Fibers
๏ƒ˜ Dietary fiber found in plant foods (fruits,vegetables and whole
grains) and is essential to maintain healthy digestive system.
๏ƒ˜ Two types of fiber i.e. soluble fiber (gums & pectins) which can
dissolve in water which helps to lower blood fat and maintain
blood sugar. E.g. beans, fruit such as strawberry & banana and
oat products, barley, and
๏ƒ˜ Insoluble fibers cant dissolve in water, so directly passes through
the digestive tract and helps to trap cholesterol, toxins etc. that
are then expelled through feces. E.g. cellulose, hemicelluloses in
bran, leafy vegetables.
๏ฑ Fats for Vascular Health
๏ƒ˜ The cardiovascular benefits of omega 3 oils are no secret.
๏ƒ˜ Sources : Marine plants, algal sources such as
๏ƒ˜ Alpha linolenic acid (ALA), Eicosapentaenoic acid (EPA) and
Docosahexaenoic acid (DHA)
๏ƒ˜ Vegetable oil such as soyabean, sunflower and nut like
Peanuts and Almonds
๏ƒ˜ Omega 3 consumption appears to reduce the risk of LDL-c
oxidation by reducing diacylglycerol acyltransferase (DGAT)
activity in the liver.
๏ƒ˜ Diets high in saturated fats, trans-fats and fried foods tend to
increase VLDL-c and LDL-c levels. This is not necessarily
applicable to dairy, however. Dairy is high in conjugated linoleic
acid (CLA). As it significantly lowered VLDL-c and triglycerides.
๏ƒ˜ Furthermore, dairy tripeptides such as valine-prolyl-proline (VPP)
and isoleucine-proline-proline (IPP) from cultured dairy products
have been shown to be vascular-healthy.
(Irregular Heart Beats)
(widening of blood vessels)
๏ฑ Tocotrienols
๏ƒ˜ Tocotrienols are members of a subgroup of the vitamin
E family, which includes tocopherols. Both tocotrienols
and tocopherols are antioxidants, but only tocotrienols
have been shown to reduce cholesterol, inhibit certain
cancers and manage diabetes.
๏ƒ˜ The positive effects of tocotrienols on cholesterol
levels result from their ability to down-regulate a liver
enzyme involved in cholesterol synthesis i.e. 3-
hydroxy-3methyl-glutaryl-CoA (HMG-CoA
reductase). This down-regulation results in a
suppression of the activity of the enzyme.
๏ƒ˜ Sources: Annatto, Palm oil, cereal grain and rice
bran.
๏‚— The annatto bush, an oily plant is the only natural
compound in the world that offers pure Tocotrienols
without the accompanying Tocopherols. Furthermore,
annatto Tocotrienol has the highest Tocotrienol
concentrations with 150 โ€“ 300 times fewer Tocopherols
than rice and palm sources.
๏ฑ Vitamin D (Calciferol)
๏‚— Vitamin D acts as a hormone, regulating more than 200 genes
throughout the body. It does an impressive amount of work.
For example, vitamin D:
๏‚— Keeps abnormal cells from multiplying in breast and colon
tissues
๏‚— Helps regulate blood pressure in the kidney
๏‚— Helps regulate blood sugar levels in the pancreas
๏ƒ˜ Its direct effects on the arterial wall may protect against
atherosclerosis through the inhibition of macrophage
cholesterol uptake as and foam cell formation, reduced
vascular smooth muscle cell proliferation, and reduced
expression of adhesion molecules in endothelial cells.
๏ฑ Sources : sunlight, Fish oils, Egg yolk, Butter, Liver and in
fortified foods
๏ฑ Pantethine
๏ƒ˜ It is a dimeric form of pantothenic acid (vitamin B5)
๏ƒ˜ The biologically active co-enzyme similar to vitamin B5 is the
precursor for coenzyme A.
๏ƒ˜ Pantethine further reduces cardiovascular risk by inhibiting
platelet clumping and the production of the inflammation-
producing chemical, thromboxane A2 (CVR).
๏ƒ˜ Pantethine (300 mg 3 times daily) reduced serum
triglycerides 32%, total cholesterol 19%, and LDL cholesterol
21%; HDL cholesterol levels increased 23% (Arsenio et al.
1986, Murray 1996b).
๏ƒ˜ Sources: Milk, Egg, Peas, Starchy vegetables and Cereals.
๏ฑ Positive Claims of Pantethine
1. Boosts energy and athletic ability.
2. Lowers Cholesterol and protects against
Cardiovascular Disease.
3. Speeds Wound Healing.
4. Detoxifies Alcohol.
5. Stimulates Immunity.
6. Prevents Hair Loss and Graying of Hair
7. Retards Aging
๏ฑ Lycopene
๏‚ง It is a bright red carotene and carotenoid pigment
and phytochemical
๏‚— Sources : Abundant in tomato, papaya, watermelon, carrot,
pink guava and pink grapefruit. Also concentrated tomato
products such as tomato paste, canned pizza sauce as cooked
tomato products provide better lycopene than raw tomato
products.
๏‚— Lycopene neutralizing hazardous waste products such as
reactive oxygen species (ROS) that our bodies normally
produce during conversion of nutrients into energy.
๏‚— ROS are dangerous compounds that can damage DNA and
promote cancer formation. They also damage lipids that are
vital to keeping our hearts and blood vessels functioning
properly; such damage can lead to development of
hypertension.
๏‚— Lycopene-containing food products can reduce blood pressure
in hypertensive patients by reducing plaque development
Lycopene Content of Selected Foods
0 2000 4000 6000 8000 10000 12000
Guava Juice
Watermelon
Guava Raw
Tomato Fresh Raw
Tomato Fresh cooked
Tomato Sauce Canned
Tomato Paste Canned
Tomato Ketchup
Source: Robert E.C. Wildman Handbook of Nutraceuticals and Functional
Lycopene (ug/100g)
๏ฑ Proteins and Peptides:
๏‚— Proteins are long-chain polymers of amino acids while
peptides represent the shorter forms. They can act as health
promoters in 2 ways,
๏ƒ˜ Firstly, by acting as indigestible substances in our
digestive tract
e.g. Buckwheat and soybean proteins
๏ƒ˜Secondly, proteins can be converted into peptides during digestion
and are then absorbed into the blood circulatory system.
E.g. Soya protein (Lunasin is bioactive peptide from ), Milk-
based
products (ฮฑ- and รŸ-lactorphin)
Conclusion
๏ถ The beneficial effects of functional foods and Nutraceuticals can be
concluded that: Reduced risk of cardiovascular diseases, reduced risk of
cancer, weight: loss/management, reduced osteoporosis, improved
memory, improved fetal health and reduced risk of other many diseases.
๏ถ Functional Food and Nutraceuticals will be hopeful to good health in
the future; it has been convincingly demonstrated to be beneficial for
their intended purposes when consumed as part of a generally well-
balanced and healthful diet.
๏ถ Also, more information and evidences must be available assist
consumer for the correct choosing and using the introduction functional
foods and / or nutraceuticals to achieve the promised health benefits.
References
๏‚— Sohaimy El S.A. ,2012. Functional Food and Nutraceuticals โ€“Modern approach to
Food Scienc. World Applied Sciences Journal 20 (5);691-708.
๏‚— Wildman, R.E., 2001. Handbook of Nutraceuticals and Functional Foods (1 ed.).
CRC Series in Modern Nutrition.
๏‚— Hasler and M. Clare, 1998. Functional Foods: Their Role in Disease Prevention and
Health Promotion. Food Technology, 52: 63-70.
๏‚— Kalra, E.K., 2003. Nutraceuticals--definition and introduction. AAPS Pharm. Sci., 5:
E25.
๏‚— Peter Libby,2014. Inflammation and cardiovascular disease mechanisms. Am J Clin
Nutr 2006;83(suppl):456Sโ€“ 60S.
๏‚— Cinzia Zuchi, Giuseppe A,Thomas F. Luยจ scher & Ulf Landmesser,2010.
Cardiovascular Therapeutics 28 (2010) 187โ€“201.
๏‚— Sarin Rajat et.al,2012. Nutraceuticals: Review. International Research Journal of
Pharmacy 3(4);95-99.
๏‚— Jehangir N Din, David E Newby, Andrew D Flapan, 2004. Omega 3 fatty acids
and cardiovascular diseaseโ€”fishing for a natural treatment. BMJ VOLUME
328; 30-35.
๏‚— G. RICCIONI et.al,2008. Protective effect of lycopene in cardiovascular
disease. European Review for Medical and Pharmacological Sciences 12: 183-
190
Thank You

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Role of nutraceutical in cardiovascular diseases

  • 1. Role of Nutraceuticals in Cardiovascular Diseases Ravindra V. Kale Ph.D Fellow College of Food Technology, Parbhani
  • 2. Content ๏‚— What is cardiovascular diseases ? ๏‚— Causes of CVD ๏‚— CVD Markers ๏‚— What are Nutraceutical? ๏‚— Nutraceutical Triple Play ๏‚— Various Nutraceutical and their role in CVD ๏‚— Conclusion ๏‚— References
  • 3. Cardiovascular Disease ??? ๏‚— Heart and blood vessel disease โ€” also called heart disease โ€” includes numerous problems, many of which are related to a process called atherosclerosis. ๏‚— Atherosclerosis occurs as the artery walls are damaged from oxidized low-density lipoproteins (LDL), initiating an inflammatory response. โ€ข Intestinal cholesterol comes from our diet and from liver synthesis, which is sent with bile into the intestines. Here it is absorbed into the blood through the intestinal wall and transported via lipoproteins.
  • 4. ๏‚— The subsequent inflammation pile-up of plasmin, fibrin and adhesion proteins such as ICAM and VCAM combine to harden the artery wall, narrowing and restricting blood flow and elasticity. ๏‚— Atherosclerosis is a condition that develops when a substance called plaque builds up in the walls of the arteries. ๏ถPlaque consist of calcium, fat, cholesterol, cellular waste, and fibrin, a material involved in blood clotting. Unstable plaques are rich in macrophages and foam cells and the extracellular matrix
  • 5. ๏ƒผFoam cells are formed when the body sends macrophages to the location of a fatty deposit on the blood vessel walls. ๏ƒผThe macrophage surrounds the fatty material in an attempt to destroy it. The cell becomes filled with lipids (fats). ๏ƒผThe lipids surrounded by the macrophage give it a โ€œfoamyโ€ appearance. ๏ƒผThis buildup narrows the arteries, making it harder for blood to flow through. If a blood clot forms, it can stop the blood flow. This can cause a heart attack or stroke. ๏ถ Foam cells are fat-laden macrophages seen in atherosclerosis.
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  • 8. Various CVDโ€™S ๏‚— Arrhythmia (problems with the heartbeat, irregular heartbeat) ๏‚— Angina (chest pain, discomfort, or tightness) ๏‚— Coronary artery disease (CAD) narrowing of the blood vessels (coronary arteries) that supply oxygen and blood to the heart. ๏‚— Heart attack ๏‚— Heart failure ๏‚— Peripheral artery (arterial) disease ๏‚— Stroke ๏‚— Blood clotting disorders ๏‚— Atherosclerosis
  • 9. What are the risk factor for cardiovascular disease? According to the National Health Service (NHS) UK, ๏ถ Hypertension (high blood pressure): If hypertension is poorly controlled, the artery walls may become damaged, raising the risk of developing a blood clot. ๏ถ Smoking - regular smoking can narrow the blood vessels, especially the coronary arteries. ๏ถ Hyperlipidemia (high blood cholesterol) - there is a higher chance of narrowing of the blood vessels and blood clots ๏ถ Unhealthy eating: Diets which lack adequate amounts of fruit, vegetables, fiber, whole grains and essential nutrients are not good for cardiovascular health.. ๏ถ Stress - hormones associated with (mental) stress, such as cortisone, raise blood sugar levels. Stress is also linked to higher blood pressure
  • 10. Health burden of cardiovascular disease worldwide ๏‚— CVDs are the leading cause of deaths globally - more people die from CVDs than anything else ๏‚— The majority (80%) of CVD deaths occur in low and middle-income countries. ๏‚— CVDs occur equally in men and women ๏‚— Twenty-five million people will die from CVDs annually by 2030 - most of the deaths being due to stroke and heart disease ๏‚— The majority of CVDs are preventable if people addressed their risk factors. ๏‚— Hypertension (raised blood pressure) is responsible for 7.5 million deaths each year
  • 11. Prominent vascular disease markers ๏‚— Cholesterol and triglyceride titers ๏‚— Emerging markers include arterial complianceโ€”the measurement of artery stiffness measured by pulse wave velocity and ischemia-modified albumin (IMA). ๏‚— IMA is a combined diagnostic measurement now associated with abnormal lipids, microvascular damage, inflammation, hypertension and
  • 12. What are Nutraceuticals ?? ๏‚— A food (or part of food) that provides health or medical benefits including prevention and/or treatment of disease. ๏‚— The term "nutraceutical" was coined from "nutrition" and "pharmaceutical" in 1989 by Stephen DeFelice, MD, founder and chairman of the Foundation for Innovation in Medicine (FIM)
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  • 17. The Nutraceutical Triple-Play in CVD Averting vascular disease is now a central calling for the Nutraceutical industry. This is because the mechanisms of vascular damage have increasingly indicated a major culprit: a lack of nutrition hygiene. There are three strategies Nutraceutical can offer to prevent and reverse vascular disease. 1. The first is to reduce circulating levels of LDL- cholesterol by forming micelle with bile salts as it contains cholesterol.
  • 18. 2. The second strategy is to reduce the possibility of oxidation by neutralizing radicals with antioxidants. 3. The third is to reduce artery plaque through fibrinolytic activity. A fibrin clot, is broken down a product of coagulation. Enzyme plasmin cuts the fibrin mesh at various places leading to production of fragments that are cleared by kidney and liver.
  • 19. NUTRACEUTICALS PLAYS ROLE IN VASCULAR DISEASES ๏ฑ Sterols, Stanols, Phenols & Flavones ๏ƒ˜ Plant-derived sterols and stanols compete with cholesterol to form micelles with bile salts. This reduces cholesterolโ€™s absorption into the bloodstream. ๏ƒ˜ All plants contain sterols such as stimasterol, beta-sitosterol and campesterol. Significant amounts appear in vegetables, nuts and seeds. ๏ƒ˜ Significant stanol content is found in avocados, pumpkin seeds, cashews, rice bran, and others. Plants favored for sterol and stanol extraction include corn, soybeans and wheat. ๏ƒ˜ A unique commercial form of sterols is Microphyte.
  • 20. ๏ƒ˜ Phenols have been shown to reduce cholesterol levels and LDL oxidation. Polyphenolic cathechin which is present in Green tea (Camellia sinensis) reduces the CVD by enhancing antioxidant activity by improving endothelial dysfunction, preventing cardiac hypertrophy and protects mitochondria. ๏ƒ˜ Oxyphyte is now a days available products of polyphenolic extracts of green tea, apple, pomegranate and red grape.
  • 21. Tea & its Cathechin Suppressing ROS & Stimulate eNOS Improving cardiac Hypertrophy Protecting Mitochondria from damage Suppressing Hyperglycemia Improving Endothelial dysfunction Decreasing Angiotensin by inhibiting ACE Suppressing Hypertension AngII: Angiotension Stimulate Hypertrophy. ACE: Angiotensing Converting Enzyme ROS: Reactive Oxygen Species. eNOS: nitric Oxide Synthase
  • 22. Chemical composition of various Tea (mg/g) Component Green Tea Black Tea Total Cathechin 150-200 40-60 Caffeine 20-60 20-60 Theanine 8-20 5-10 Theaflavins -- 5-20 Thearubigins -- 60-180
  • 23. ๏ฑ Super Fibers ๏ƒ˜ Dietary fiber found in plant foods (fruits,vegetables and whole grains) and is essential to maintain healthy digestive system. ๏ƒ˜ Two types of fiber i.e. soluble fiber (gums & pectins) which can dissolve in water which helps to lower blood fat and maintain blood sugar. E.g. beans, fruit such as strawberry & banana and oat products, barley, and ๏ƒ˜ Insoluble fibers cant dissolve in water, so directly passes through the digestive tract and helps to trap cholesterol, toxins etc. that are then expelled through feces. E.g. cellulose, hemicelluloses in bran, leafy vegetables.
  • 24. ๏ฑ Fats for Vascular Health ๏ƒ˜ The cardiovascular benefits of omega 3 oils are no secret. ๏ƒ˜ Sources : Marine plants, algal sources such as ๏ƒ˜ Alpha linolenic acid (ALA), Eicosapentaenoic acid (EPA) and Docosahexaenoic acid (DHA) ๏ƒ˜ Vegetable oil such as soyabean, sunflower and nut like Peanuts and Almonds ๏ƒ˜ Omega 3 consumption appears to reduce the risk of LDL-c oxidation by reducing diacylglycerol acyltransferase (DGAT) activity in the liver. ๏ƒ˜ Diets high in saturated fats, trans-fats and fried foods tend to increase VLDL-c and LDL-c levels. This is not necessarily applicable to dairy, however. Dairy is high in conjugated linoleic acid (CLA). As it significantly lowered VLDL-c and triglycerides. ๏ƒ˜ Furthermore, dairy tripeptides such as valine-prolyl-proline (VPP) and isoleucine-proline-proline (IPP) from cultured dairy products have been shown to be vascular-healthy.
  • 26. ๏ฑ Tocotrienols ๏ƒ˜ Tocotrienols are members of a subgroup of the vitamin E family, which includes tocopherols. Both tocotrienols and tocopherols are antioxidants, but only tocotrienols have been shown to reduce cholesterol, inhibit certain cancers and manage diabetes. ๏ƒ˜ The positive effects of tocotrienols on cholesterol levels result from their ability to down-regulate a liver enzyme involved in cholesterol synthesis i.e. 3- hydroxy-3methyl-glutaryl-CoA (HMG-CoA reductase). This down-regulation results in a suppression of the activity of the enzyme. ๏ƒ˜ Sources: Annatto, Palm oil, cereal grain and rice bran.
  • 27. ๏‚— The annatto bush, an oily plant is the only natural compound in the world that offers pure Tocotrienols without the accompanying Tocopherols. Furthermore, annatto Tocotrienol has the highest Tocotrienol concentrations with 150 โ€“ 300 times fewer Tocopherols than rice and palm sources.
  • 28. ๏ฑ Vitamin D (Calciferol) ๏‚— Vitamin D acts as a hormone, regulating more than 200 genes throughout the body. It does an impressive amount of work. For example, vitamin D: ๏‚— Keeps abnormal cells from multiplying in breast and colon tissues ๏‚— Helps regulate blood pressure in the kidney ๏‚— Helps regulate blood sugar levels in the pancreas ๏ƒ˜ Its direct effects on the arterial wall may protect against atherosclerosis through the inhibition of macrophage cholesterol uptake as and foam cell formation, reduced vascular smooth muscle cell proliferation, and reduced expression of adhesion molecules in endothelial cells. ๏ฑ Sources : sunlight, Fish oils, Egg yolk, Butter, Liver and in fortified foods
  • 29. ๏ฑ Pantethine ๏ƒ˜ It is a dimeric form of pantothenic acid (vitamin B5) ๏ƒ˜ The biologically active co-enzyme similar to vitamin B5 is the precursor for coenzyme A. ๏ƒ˜ Pantethine further reduces cardiovascular risk by inhibiting platelet clumping and the production of the inflammation- producing chemical, thromboxane A2 (CVR). ๏ƒ˜ Pantethine (300 mg 3 times daily) reduced serum triglycerides 32%, total cholesterol 19%, and LDL cholesterol 21%; HDL cholesterol levels increased 23% (Arsenio et al. 1986, Murray 1996b). ๏ƒ˜ Sources: Milk, Egg, Peas, Starchy vegetables and Cereals.
  • 30. ๏ฑ Positive Claims of Pantethine 1. Boosts energy and athletic ability. 2. Lowers Cholesterol and protects against Cardiovascular Disease. 3. Speeds Wound Healing. 4. Detoxifies Alcohol. 5. Stimulates Immunity. 6. Prevents Hair Loss and Graying of Hair 7. Retards Aging
  • 31. ๏ฑ Lycopene ๏‚ง It is a bright red carotene and carotenoid pigment and phytochemical ๏‚— Sources : Abundant in tomato, papaya, watermelon, carrot, pink guava and pink grapefruit. Also concentrated tomato products such as tomato paste, canned pizza sauce as cooked tomato products provide better lycopene than raw tomato products. ๏‚— Lycopene neutralizing hazardous waste products such as reactive oxygen species (ROS) that our bodies normally produce during conversion of nutrients into energy. ๏‚— ROS are dangerous compounds that can damage DNA and promote cancer formation. They also damage lipids that are vital to keeping our hearts and blood vessels functioning properly; such damage can lead to development of hypertension. ๏‚— Lycopene-containing food products can reduce blood pressure in hypertensive patients by reducing plaque development
  • 32. Lycopene Content of Selected Foods 0 2000 4000 6000 8000 10000 12000 Guava Juice Watermelon Guava Raw Tomato Fresh Raw Tomato Fresh cooked Tomato Sauce Canned Tomato Paste Canned Tomato Ketchup Source: Robert E.C. Wildman Handbook of Nutraceuticals and Functional Lycopene (ug/100g)
  • 33. ๏ฑ Proteins and Peptides: ๏‚— Proteins are long-chain polymers of amino acids while peptides represent the shorter forms. They can act as health promoters in 2 ways, ๏ƒ˜ Firstly, by acting as indigestible substances in our digestive tract e.g. Buckwheat and soybean proteins ๏ƒ˜Secondly, proteins can be converted into peptides during digestion and are then absorbed into the blood circulatory system. E.g. Soya protein (Lunasin is bioactive peptide from ), Milk- based products (ฮฑ- and รŸ-lactorphin)
  • 34. Conclusion ๏ถ The beneficial effects of functional foods and Nutraceuticals can be concluded that: Reduced risk of cardiovascular diseases, reduced risk of cancer, weight: loss/management, reduced osteoporosis, improved memory, improved fetal health and reduced risk of other many diseases. ๏ถ Functional Food and Nutraceuticals will be hopeful to good health in the future; it has been convincingly demonstrated to be beneficial for their intended purposes when consumed as part of a generally well- balanced and healthful diet. ๏ถ Also, more information and evidences must be available assist consumer for the correct choosing and using the introduction functional foods and / or nutraceuticals to achieve the promised health benefits.
  • 35. References ๏‚— Sohaimy El S.A. ,2012. Functional Food and Nutraceuticals โ€“Modern approach to Food Scienc. World Applied Sciences Journal 20 (5);691-708. ๏‚— Wildman, R.E., 2001. Handbook of Nutraceuticals and Functional Foods (1 ed.). CRC Series in Modern Nutrition. ๏‚— Hasler and M. Clare, 1998. Functional Foods: Their Role in Disease Prevention and Health Promotion. Food Technology, 52: 63-70. ๏‚— Kalra, E.K., 2003. Nutraceuticals--definition and introduction. AAPS Pharm. Sci., 5: E25. ๏‚— Peter Libby,2014. Inflammation and cardiovascular disease mechanisms. Am J Clin Nutr 2006;83(suppl):456Sโ€“ 60S. ๏‚— Cinzia Zuchi, Giuseppe A,Thomas F. Luยจ scher & Ulf Landmesser,2010. Cardiovascular Therapeutics 28 (2010) 187โ€“201. ๏‚— Sarin Rajat et.al,2012. Nutraceuticals: Review. International Research Journal of Pharmacy 3(4);95-99. ๏‚— Jehangir N Din, David E Newby, Andrew D Flapan, 2004. Omega 3 fatty acids and cardiovascular diseaseโ€”fishing for a natural treatment. BMJ VOLUME 328; 30-35. ๏‚— G. RICCIONI et.al,2008. Protective effect of lycopene in cardiovascular disease. European Review for Medical and Pharmacological Sciences 12: 183- 190