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Vitamin:
Introduction: Vitamins are organic compounds
required by the body in small amounts for
metabolism, to protect health and for proper
growth in children. Vitamins also assist in the
formation of hormones, blood cells, nervous-system
chemicals and genetic material. They generally act
as catalysts, combining with proteins to create
metabolically active enzymes that in turn produce
hundreds of important chemical reactions
throughout the body. Without vitamins, many of
these reactions would slow down or cease.
Definition: vitamins are organic nutrients that
are required in small quantities for a variety of
biochemical functions and which generally
cannot be synthesized by the body and must,
therefore, be supplied by the diet.
Classification of vitamins: Vitamins are classified
according to their ability to be absorbed in fat or water.
Hence, they are grouped into two categories as follows:
1. Fat Soluble Vitamins: These are oily and hydrophobic
compounds. These are stored in the liver and are not
excreted out of the body. Bile salts and fats are required
for their absorption. Vitamin A, D, E and K are fat soluble
vitamins. Because these vitamins can be stored, their
excessive intake may have toxic effect and can result in
hypervitaminosis
2. Water Soluble Vitamins: Vitamin B complex and vitamin
C are water soluble. They are compounds of carbon,
hydrogen, oxygen and nitrogen. They are not stored in
the body therefore they are required daily in small
amount.
Fat soluble vitamins:
1. Vitamin A:
Vitamin A is a pale yellow primary alcohol derived
from carotene. It includes Retinol (alcoholic form),
Retinal (Aldehyde form) and Retinoic acid (acidic
form)
• Source:
In animal form, vitamin A is found in milk, butter,
cheese, egg yolk, liver and fish-liver oil
In plant source it is obtained from vegetables as
carrots, broccoli, squash, spinach, kale and sweet
potatoes
• Physiological Significance:
1. All three forms of vitamin A are necessary for proper
growth, reproduction, vision, differentiation and
maintenance of epithelial cells
2. Vitamin A accelerates normal formation of bone and teeth
3. Retinoic acid is needed for glycoprotein synthesis
• Deficiency of Vitamin A:
1. An early deficiency symptom is night blindness (difficulty in
adapting to darkness)
2. Excessive skin dryness
3. Lack of mucous membrane secretion, causing weakness to
resist bacterial attack
4. Dryness of the eyes due to a malfunctioning of the tear
glands
• Hypervitaminosis of Vitamin A: Excess
vitamin A can interfere with growth, stop
menstruation, damage red blood corpuscles
and cause skin rashes, headaches, nausea,
and jaundice
2. Vitamin D:
• Source:
1. Vitamin D is obtained from egg yolk, cod liver oil and liver
oil from other fishes
2. It is also manufactured in the body when sterols, which
are commonly found in many foods, migrate to the skin
and become irradiated.
• Physiological Significance:
1. This vitamin is necessary for normal bone formation and
for retention of calcium and phosphorus in the body
2. It also protects the teeth and bones against the effects of
low calcium intake by making more effective use of
calcium and phosphorus
3. It decreases pH in the lower intestine
• Deficiency:
1. Vitamin D deficiency produces rickets in children
and Osteomalacia in adult
2. Rickets is characterized by abnormities of the rib
cage and skull and by bowlegs, due to failure of
the body to absorb calcium and phosphorus
3. Osteomalacia is characterized by softness of pelvic
girdle, ribs and femoral bones.
• Hypervitaminosis of Vitamin D:
Because vitamin D is fat-soluble and stored in the
body, excessive consumption can cause vitamin
poisoning, kidney damage, lethargy, and loss of
appetite
3. Vitamin E:
• Source:
1. It is found in vegetable oils, wheat germ, liver, and leafy green
vegetables
2. They are also present in little amount in meat, milk and eggs.
• Physiological Significance:
1. Vitamin E acts as antioxidants. They play some role in forming red
blood cells and muscle and other tissues and in preventing the
oxidation of vitamin A and fats
2. It is also associated with cell maturation and differentiation.
• Deficiency:
1. Deficiency of vitamin E causes sterility in both male and females
2. It causes muscular dystrophy
3. In children it causes hemolysis, creatinuria
4. Vitamin K:
• Source:
1. The richest sources of vitamin K are alfalfa, fish livers,
leafy green vegetables, egg yolks, soybean oil, and liver
2. It is also produced by bacteria in human intestine
therefore no dietary supplement is needed
• Physiological Significance:
1. This vitamin is necessary mainly for the coagulation of
blood
2. It aids in forming prothrombin, an enzyme needed to
produce fibrin for blood clotting
3. Acts as an inducer for the synthesis of RNA
4. It is also required for the absorption of fat
• Deficiency:
Digestive disturbances may lead to defective
absorption of vitamin K and hence to mild
disorders in blood clotting
• Hypervitaminosis of Vitamin K:
Administration of large doses of vitamin K
produces hemolytic anemia and jaundice in
infants because of breakdown of RBCs
Water soluble vitamin:
Known also as vitamin B complex, these are
fragile, water-soluble substances, several of which
are particularly important to carbohydrate
metabolism
They include:
VitaminB1 (Thiamine)
Vitamin B2 (Riboflavin)
Vitamin B3 (Niacin or Nicotinic Acid)
Vitamin B5(Pantothenic acid)
Vitamin B6 (Pyridoxine)
Vitamin B7(Biotin)
Vitamin B9(Folic acid)
Vitamin B12 (Cobalamin) &
Vitamin C (Ascorbic acid)
Vitamin B1 (Thiamine):
Thiamine or vitamin B1 is a colorless, crystalline
substance. It is readily soluble in water and slightly in
ethyl alcohol
Source:
• Vitamin B1 is abundantly found in germinating seeds,
un-milled cereals, beans, orange juice, tomato, egg,
meat, fish, organ meats (liver, heart, and kidney),
leafy green vegetables, nuts and legumes
Physiological Significance:
• Acts as a catalyst in carbohydrate metabolism,
enabling pyruvic acid to be absorbed and
carbohydrates to release their energy.
• Its co-enzymatic form is Thymine pyrophosphate
(TPP)
• Thiamine also plays a role in the synthesis of
nerve-regulating substances.
Deficiency:
• Deficiency of thiamine causes beriberi, which is
characterized by muscular weakness, swelling of
the heart, and leg cramps
Vitamin B2 (Riboflavin):
Source:
• The best sources of riboflavin are liver, milk, meat, dark
green vegetables, whole grain and enriched cereals, pasta,
bread, and mushrooms.
Physiological Significance:
• It is essential for carbohydrate metabolism. Enzyme
containing riboflavin is called Flavoproteins.
• It acts as coenzyme for enzyme catalyzing oxidation-
reduction reaction
Deficiency:
• Its deficiency causes Glossitis (inflammation of tongue).
• Lack of thiamine causes skin lesions, especially around the
nose and lips, and sensitivity to light
Vitamin B3 (Niacin or Nicotinic acid):
Source:
• The best sources of niacin are liver, poultry, meat, canned
tuna and salmon, whole grain and enriched cereals, dried
beans and peas, and nuts.
• The body also makes niacin from the amino acid
tryptophan
Physiological Significance:
• Nicotinic acid is essential for the normal functioning of
skin, intestinal tract and the nervous system.
• Vitamin B3 works as a coenzyme in the release of energy
from nutrients
• Its co-enzymatic form is: nicotinamide or nicotinimide
Deficiency:
• A deficiency of niacin causes pellagra, the first
symptom of which is a sunburn like eruption that
breaks out where the skin is exposed to sunlight.
• Later symptoms are a red and swollen tongue,
diarrhea, mental confusion, irritability, and, when
the central nervous system is affected, depression
and mental disturbances
• The symptoms of pellagra are commonly refered
to as three Ds: Dermatitis, Diarrhoea, Dementia
Vitamin B5 (Pantothenic acid):
Source:
• Its main sources are liver, milk, meat, eggs, wheat germ,
wheat bran, potatoes, sweet potatoes, tomatoes, cabbage,
cauliflower and broccoli. Fruit and other vegetables also have
pantothenic acid
Physiological Significance:
• Pantothenic acid is essential for growth of infants and children
• It plays a major role in the metabolism of proteins,
carbohydrates, and fats
• Metabolic role is as coenzyme A
Deficiency:
• Its deficiency causes nausea, vomiting, gastrointestinal
disorders, improper growth and fatty liver
• Burning feet syndrome
Vitamin B6 (Pyridoxine):
Source
• The best sources of pyridoxine are whole (but not enriched) grains,
cereals, bread, liver, avocadoes, spinach, green beans, and
bananas.
• It is also found in milk, eggs, fish, chicken, beef, pork and liver.
Physiological Significance:
• Pyridoxine, or vitamin B6 , is necessary for the absorption and
metabolism of amino acids.
• It also plays roles in the use of fats in the body and in the formation
of red blood cells
• Co-enzymatic form: Pyridoxal phosphate (PLP)
Deficiency:
• Pyridoxine deficiency is characterized by skin disorders, cracks at
the mouth corners, smooth tongue, convulsions, dizziness, nausea,
anemia, and kidney stones
Vitamin B7 (Biotin):
Biotin is also known as “anti-egg white injury factor” or
as H-factor
Source:
• Biotin occurs in combined state as biocytin. It is
found in yeast, liver, kidney, milk and molasses.
Physiological Significance:
• Biotin serves as prosthetic group for many enzymes
which catalyze fixation of CO2 into organic molecules
• It helps in synthesis of fatty acids
Deficiency:
• Its deficiency caused the destruction of intestinal
bacteria.
• It leads to nausea and muscular pain
Vitamin B9 (Folic acid):
Source:
• Folic acid is found in yeast, liver and kidney.
• Fish meat and green leafy vegetables, milk and fruits also
provide folic acid
Physiological Significance:
• Folic acid acts as a coenzyme and help in synthesis of purines
and thymine during DNA synthesis.
• It helps in formation and maturation of red blood cells.
• Co-enzymatic form: Tetrahydrofolate
Deficiency:
• Folic acid deficiency gives rise to megaloblastic anemia.
• The patient suffers from retarded growth, weakness, infertility,
inadequate lactation in females and gastrointestinal disorders.
Vitamin B12 (Cyanocobalamine):
Vitamin B12 or Cobalamin, or Anti-Pernicious Anemic
Factor (APA) is one of the most recently isolated
vitamins
Source:
• Cobalamin is obtained only from animal sources—
liver, kidneys, meat, fish, eggs, and milk. Vegetarians
are advised to take vitamin B12 supplements.
Physiological Significance:
• It is necessary in minute amounts for the formation
of nucleoproteins, proteins and red blood cells.
• It is necessary for the functioning of the nervous
system
• It stimulates the appetite of the subject
• Co-enzymatic form: methylcobalamin
Deficiency:
• Deficiency of cobalamin causes anemia,
ineffective production of red blood cells, faulty
myelin (nerve sheath) synthesis, nervous
system disorder and loss of epithelium
(membrane lining) of the intestinal tract
Vitamin C (Ascorbic acid):
Source:
• Sources of vitamin C include citrus fruits, fresh
strawberries, cantaloupe, pineapple, and guava.
• Good vegetable sources are Broccoli, Brussels sprouts,
Tomatoes, Spinach, Kale, Green Peppers, Cabbage, and
Turnips.
Physiological Significance:
• Vitamin C is important in the formation and maintenance
of collagen, the protein that supports many body
structures and plays a major role in the formation of bones
and teeth.
• It also enhances the absorption of iron from foods of
vegetable origin.
• The connective tissue fibrils and collagen are synthesized
with the help of vitamin C.
• It play important role in wound repair.
• It protects body against stress.
Deficiency:
• Deficiency of vitamin C causes scurvy. Its
symptoms are loss of the cementing action of
collagen and include hemorrhages which lead
to loosening of teeth and cellular changes in
the long bones of children

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Vitamin

  • 1. Vitamin: Introduction: Vitamins are organic compounds required by the body in small amounts for metabolism, to protect health and for proper growth in children. Vitamins also assist in the formation of hormones, blood cells, nervous-system chemicals and genetic material. They generally act as catalysts, combining with proteins to create metabolically active enzymes that in turn produce hundreds of important chemical reactions throughout the body. Without vitamins, many of these reactions would slow down or cease.
  • 2. Definition: vitamins are organic nutrients that are required in small quantities for a variety of biochemical functions and which generally cannot be synthesized by the body and must, therefore, be supplied by the diet.
  • 3. Classification of vitamins: Vitamins are classified according to their ability to be absorbed in fat or water. Hence, they are grouped into two categories as follows: 1. Fat Soluble Vitamins: These are oily and hydrophobic compounds. These are stored in the liver and are not excreted out of the body. Bile salts and fats are required for their absorption. Vitamin A, D, E and K are fat soluble vitamins. Because these vitamins can be stored, their excessive intake may have toxic effect and can result in hypervitaminosis 2. Water Soluble Vitamins: Vitamin B complex and vitamin C are water soluble. They are compounds of carbon, hydrogen, oxygen and nitrogen. They are not stored in the body therefore they are required daily in small amount.
  • 4. Fat soluble vitamins: 1. Vitamin A: Vitamin A is a pale yellow primary alcohol derived from carotene. It includes Retinol (alcoholic form), Retinal (Aldehyde form) and Retinoic acid (acidic form) • Source: In animal form, vitamin A is found in milk, butter, cheese, egg yolk, liver and fish-liver oil In plant source it is obtained from vegetables as carrots, broccoli, squash, spinach, kale and sweet potatoes
  • 5. • Physiological Significance: 1. All three forms of vitamin A are necessary for proper growth, reproduction, vision, differentiation and maintenance of epithelial cells 2. Vitamin A accelerates normal formation of bone and teeth 3. Retinoic acid is needed for glycoprotein synthesis • Deficiency of Vitamin A: 1. An early deficiency symptom is night blindness (difficulty in adapting to darkness) 2. Excessive skin dryness 3. Lack of mucous membrane secretion, causing weakness to resist bacterial attack 4. Dryness of the eyes due to a malfunctioning of the tear glands
  • 6. • Hypervitaminosis of Vitamin A: Excess vitamin A can interfere with growth, stop menstruation, damage red blood corpuscles and cause skin rashes, headaches, nausea, and jaundice
  • 7. 2. Vitamin D: • Source: 1. Vitamin D is obtained from egg yolk, cod liver oil and liver oil from other fishes 2. It is also manufactured in the body when sterols, which are commonly found in many foods, migrate to the skin and become irradiated. • Physiological Significance: 1. This vitamin is necessary for normal bone formation and for retention of calcium and phosphorus in the body 2. It also protects the teeth and bones against the effects of low calcium intake by making more effective use of calcium and phosphorus 3. It decreases pH in the lower intestine
  • 8. • Deficiency: 1. Vitamin D deficiency produces rickets in children and Osteomalacia in adult 2. Rickets is characterized by abnormities of the rib cage and skull and by bowlegs, due to failure of the body to absorb calcium and phosphorus 3. Osteomalacia is characterized by softness of pelvic girdle, ribs and femoral bones. • Hypervitaminosis of Vitamin D: Because vitamin D is fat-soluble and stored in the body, excessive consumption can cause vitamin poisoning, kidney damage, lethargy, and loss of appetite
  • 9. 3. Vitamin E: • Source: 1. It is found in vegetable oils, wheat germ, liver, and leafy green vegetables 2. They are also present in little amount in meat, milk and eggs. • Physiological Significance: 1. Vitamin E acts as antioxidants. They play some role in forming red blood cells and muscle and other tissues and in preventing the oxidation of vitamin A and fats 2. It is also associated with cell maturation and differentiation. • Deficiency: 1. Deficiency of vitamin E causes sterility in both male and females 2. It causes muscular dystrophy 3. In children it causes hemolysis, creatinuria
  • 10. 4. Vitamin K: • Source: 1. The richest sources of vitamin K are alfalfa, fish livers, leafy green vegetables, egg yolks, soybean oil, and liver 2. It is also produced by bacteria in human intestine therefore no dietary supplement is needed • Physiological Significance: 1. This vitamin is necessary mainly for the coagulation of blood 2. It aids in forming prothrombin, an enzyme needed to produce fibrin for blood clotting 3. Acts as an inducer for the synthesis of RNA 4. It is also required for the absorption of fat
  • 11. • Deficiency: Digestive disturbances may lead to defective absorption of vitamin K and hence to mild disorders in blood clotting • Hypervitaminosis of Vitamin K: Administration of large doses of vitamin K produces hemolytic anemia and jaundice in infants because of breakdown of RBCs
  • 12. Water soluble vitamin: Known also as vitamin B complex, these are fragile, water-soluble substances, several of which are particularly important to carbohydrate metabolism They include: VitaminB1 (Thiamine) Vitamin B2 (Riboflavin) Vitamin B3 (Niacin or Nicotinic Acid) Vitamin B5(Pantothenic acid) Vitamin B6 (Pyridoxine) Vitamin B7(Biotin) Vitamin B9(Folic acid) Vitamin B12 (Cobalamin) & Vitamin C (Ascorbic acid)
  • 13. Vitamin B1 (Thiamine): Thiamine or vitamin B1 is a colorless, crystalline substance. It is readily soluble in water and slightly in ethyl alcohol Source: • Vitamin B1 is abundantly found in germinating seeds, un-milled cereals, beans, orange juice, tomato, egg, meat, fish, organ meats (liver, heart, and kidney), leafy green vegetables, nuts and legumes
  • 14. Physiological Significance: • Acts as a catalyst in carbohydrate metabolism, enabling pyruvic acid to be absorbed and carbohydrates to release their energy. • Its co-enzymatic form is Thymine pyrophosphate (TPP) • Thiamine also plays a role in the synthesis of nerve-regulating substances. Deficiency: • Deficiency of thiamine causes beriberi, which is characterized by muscular weakness, swelling of the heart, and leg cramps
  • 15. Vitamin B2 (Riboflavin): Source: • The best sources of riboflavin are liver, milk, meat, dark green vegetables, whole grain and enriched cereals, pasta, bread, and mushrooms. Physiological Significance: • It is essential for carbohydrate metabolism. Enzyme containing riboflavin is called Flavoproteins. • It acts as coenzyme for enzyme catalyzing oxidation- reduction reaction Deficiency: • Its deficiency causes Glossitis (inflammation of tongue). • Lack of thiamine causes skin lesions, especially around the nose and lips, and sensitivity to light
  • 16. Vitamin B3 (Niacin or Nicotinic acid): Source: • The best sources of niacin are liver, poultry, meat, canned tuna and salmon, whole grain and enriched cereals, dried beans and peas, and nuts. • The body also makes niacin from the amino acid tryptophan Physiological Significance: • Nicotinic acid is essential for the normal functioning of skin, intestinal tract and the nervous system. • Vitamin B3 works as a coenzyme in the release of energy from nutrients • Its co-enzymatic form is: nicotinamide or nicotinimide
  • 17. Deficiency: • A deficiency of niacin causes pellagra, the first symptom of which is a sunburn like eruption that breaks out where the skin is exposed to sunlight. • Later symptoms are a red and swollen tongue, diarrhea, mental confusion, irritability, and, when the central nervous system is affected, depression and mental disturbances • The symptoms of pellagra are commonly refered to as three Ds: Dermatitis, Diarrhoea, Dementia
  • 18. Vitamin B5 (Pantothenic acid): Source: • Its main sources are liver, milk, meat, eggs, wheat germ, wheat bran, potatoes, sweet potatoes, tomatoes, cabbage, cauliflower and broccoli. Fruit and other vegetables also have pantothenic acid Physiological Significance: • Pantothenic acid is essential for growth of infants and children • It plays a major role in the metabolism of proteins, carbohydrates, and fats • Metabolic role is as coenzyme A Deficiency: • Its deficiency causes nausea, vomiting, gastrointestinal disorders, improper growth and fatty liver • Burning feet syndrome
  • 19. Vitamin B6 (Pyridoxine): Source • The best sources of pyridoxine are whole (but not enriched) grains, cereals, bread, liver, avocadoes, spinach, green beans, and bananas. • It is also found in milk, eggs, fish, chicken, beef, pork and liver. Physiological Significance: • Pyridoxine, or vitamin B6 , is necessary for the absorption and metabolism of amino acids. • It also plays roles in the use of fats in the body and in the formation of red blood cells • Co-enzymatic form: Pyridoxal phosphate (PLP) Deficiency: • Pyridoxine deficiency is characterized by skin disorders, cracks at the mouth corners, smooth tongue, convulsions, dizziness, nausea, anemia, and kidney stones
  • 20. Vitamin B7 (Biotin): Biotin is also known as “anti-egg white injury factor” or as H-factor Source: • Biotin occurs in combined state as biocytin. It is found in yeast, liver, kidney, milk and molasses. Physiological Significance: • Biotin serves as prosthetic group for many enzymes which catalyze fixation of CO2 into organic molecules • It helps in synthesis of fatty acids Deficiency: • Its deficiency caused the destruction of intestinal bacteria. • It leads to nausea and muscular pain
  • 21. Vitamin B9 (Folic acid): Source: • Folic acid is found in yeast, liver and kidney. • Fish meat and green leafy vegetables, milk and fruits also provide folic acid Physiological Significance: • Folic acid acts as a coenzyme and help in synthesis of purines and thymine during DNA synthesis. • It helps in formation and maturation of red blood cells. • Co-enzymatic form: Tetrahydrofolate Deficiency: • Folic acid deficiency gives rise to megaloblastic anemia. • The patient suffers from retarded growth, weakness, infertility, inadequate lactation in females and gastrointestinal disorders.
  • 22. Vitamin B12 (Cyanocobalamine): Vitamin B12 or Cobalamin, or Anti-Pernicious Anemic Factor (APA) is one of the most recently isolated vitamins Source: • Cobalamin is obtained only from animal sources— liver, kidneys, meat, fish, eggs, and milk. Vegetarians are advised to take vitamin B12 supplements. Physiological Significance: • It is necessary in minute amounts for the formation of nucleoproteins, proteins and red blood cells. • It is necessary for the functioning of the nervous system • It stimulates the appetite of the subject • Co-enzymatic form: methylcobalamin
  • 23. Deficiency: • Deficiency of cobalamin causes anemia, ineffective production of red blood cells, faulty myelin (nerve sheath) synthesis, nervous system disorder and loss of epithelium (membrane lining) of the intestinal tract
  • 24. Vitamin C (Ascorbic acid): Source: • Sources of vitamin C include citrus fruits, fresh strawberries, cantaloupe, pineapple, and guava. • Good vegetable sources are Broccoli, Brussels sprouts, Tomatoes, Spinach, Kale, Green Peppers, Cabbage, and Turnips. Physiological Significance: • Vitamin C is important in the formation and maintenance of collagen, the protein that supports many body structures and plays a major role in the formation of bones and teeth. • It also enhances the absorption of iron from foods of vegetable origin. • The connective tissue fibrils and collagen are synthesized with the help of vitamin C. • It play important role in wound repair. • It protects body against stress.
  • 25. Deficiency: • Deficiency of vitamin C causes scurvy. Its symptoms are loss of the cementing action of collagen and include hemorrhages which lead to loosening of teeth and cellular changes in the long bones of children