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Vitamin C Deficiency

vitamin c gluten celiac disease symptomWhat Is Vitamin C?

[dropcap]V[/dropcap]itamin C, also called ascorbic acid or ascorbate, is an essential water soluble vitamin.

Fresh supplies of vitamin C are required every day to perform vital roles throughout the body among which are the production of connective tissue such as skin, blood vessels and bone, anti-inflammatory responses and anti-oxidant performance. See below for all roles.

Vitamin C fights for us! It has an anti-cancer effect stemming from its role as a potent anti-oxidant in blood plasma and within cells. It also protects nucleic acids (DNA) from oxidative damage and inhibits the formation of nitrosamines (carcinogenic compounds formed in the digestive tract).

Importantly, vitamin C can regenerate vitamin E from an oxidized state after vitamin E performs its own anti-oxidant role against free radicals and vitamin C works together with other anti-oxidants, such as beta-carotene and glutathione, to increase their overall anti-oxidant effect.

A study investigating the specific anti-inflammatory and anti-oxidant micronutrients that reduce oxidative stress found that in adolescents with metabolic syndrome (MetS) the lower the vitamin C level in blood the worse the MetS status and blood uric acid level.  MetS prevalence was estimated at 7% among boys and 3% among girls.1

Vitamin C reverses osteoporosis by reducing or preventing oxidative stress that destroys living bone tissue. Osteoporosis is a disorder of bone inflammation that results in thin, weak bones that may easily fracture. In normal bone structure, vitamin C is required to form collagen, which is living bone tissue.

In humans, vitamin C reduces the duration of common cold symptoms, even if its effect is not clear.2

Vitamin C must be obtained from food daily because our bodies, unlike monkeys and other animals, cannot produce it.

Urinary excretion of vitamin C cannot be detected when vitamin intake is below the required levels. On the other hand, when intake exceeds saturation in the body, the vitamin and/or its metabolites are actively excreted into urine to prevent excessive toxicity of the vitamins.3

What Is Vitamin C Deficiency In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. TGBeydoun MA, Canas JA, Beydoun HA, Chen X, Shroff MR, Zonderman AB. Serum antioxidant concentrations and metabolic syndrome are associated among U.S. adolescents in recent national surveys. J Nutr. 2012 Sep;142(9):1693-704. doi: 10.3945/jn.112.160416. []
  2. Shaik-Dasthagirisaheb YB, Varvara G, Murmura G, Saggini A, Caraffa A, Antinolfi P, Tete’ S, Tripodi D, Conti F, Cianchetti E, Toniato E, Rosati M, Speranza L,Pantalone A, Saggini R, Tei M, Speziali A, Conti P, Theoharides TC, Pandolfi F. Role of vitamins D, E and C in immunity and inflammation. J Biol Regul Homeost Agents. 2013 Apr-Jun;27(2):291-5. []
  3. Shibata K, Hirose J, Fukuwatari T. Relationship Between Urinary Concentrations of Nine Water-soluble Vitamins and their Vitamin Intakes in Japanese Adult Males. Nutr Metab Insights. 2014 Aug 5;7:61-75. doi: 10.4137/NMI.S17245. eCollection 2014. []

DHA (Docosahexaenoic Acid) Deficiency

Smoked Salmon...Brain Food that's Good for the Eyes!
Salmon…Brain Food That’s Good for Your Eyes, Heart, Blood Vessels, Blood Sugar, Liver, Muscles, and Fights Inflammation!

What Is DHA?

[dropcap]D[/dropcap]ocosahexaenoic acid (DHA) is an essential omega-3 fatty acid that is abundant in the brain, being crucial in brain structure. As such DHA is a key component of neuronal membranes together with arachidonic acid (a major opposing omega-6 fatty acid), making up 15-20% of the brain’s dry mass.

This polyunsaturated fatty acid is obtained from fish sources of food.

In healthy human volunteers, positron emission tomography (PET) has shown that the normal human brain consumes 4.6 mg/day of DHA.1

DHA is particularly concentrated in highly active membranes such as nerve synapses (junctions) and photoreceptors in the eye (retina).

Q: How much DHA is in the retina?

A: DHA makes up more than 30% of the retina.2

In other roles, DHA is an  important building material for the eicosanoids, a large group of highly bioactive hormone-like substances including prostaglandins, leukotrienes, and thromboxanes that are involved in blood clotting, inflammation, and vasoconstriction.

DHA has been shown to increase insulin sensitivity as opposed to the opposite problem of insulin resistance, to improve muscle mass, and protect against non-alcoholic fatty liver disease.3

Egert et al. in a study of people aged 19 to 43 years with normal cholesterol showed that DHA intake significantly increased serum HDL (good) cholesterol. Also, DHA significantly decreased fasting serum triglycerides.4

What Is DHA Deficiency In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Rapoport SI. Brain arachidonic and docosahexaenoic acid cascades are selectively altered by drugs, diet and disease. Prostaglandins Leukot Essent Fatty Acids. 2008 Sep-Nov;79(3-5):153-6. Epub 2008 Oct 29. []
  2. Richardson AJ. The importance of omega-3 fatty acids for behavior, cognition, and mood. Scandinavian Journal of Nutrition. 2003;47(2):92-8 []
  3. Espinosa A, Valenzuela R, González-Mañán D, D’Espessailles A, Guillermo Gormaz J, Barrera C, Tapia G. Prevention of liver steatosis through fish oil supplementation: correlation of oxidative stress with insulin resistance and liver fatty acid content. Arch Latinoam Nutr. 2013 Mar;63(1):29-36. []
  4. Egert S, Kannenberg F, Somoza V, et al. Dietary alpha-linolenic acid, EPA, and DHA have differential effects on LDL fatty acid composition but similar effects on serum lipid profiles in normolipidemic humans. J Nutr. 2009;139:861–868. doi: 10.3945/jn.108.103861 []

EPA (Eicosapentaenoic Acid) Deficiency

Macherel...
Macherel…EPA Rich!

What Is EPA?

[dropcap]E[/dropcap]PA (eicosapentaenoic acid) is an essential omega-3 fatty acid that is crucial for fetal brain and retina development and the child’s subsequent neurodevelopment among very many other activities in people of all ages.

Omega-3 fatty acids  are polyunsaturated long chain fatty acids which must be obtained from animal foods since they do not occur in plants.

In all ages, EPA is essential for normal brain function.

Q: Why is EPA essential to the way the brain works?

A: EPA helps nerve cells in the brain to communicate with each other.

In pregnancy, EPA may also play a role in determining the length of gestation and in preventing perinatal depression in the mother.1 and is essential for normal growth in children.

EPA is important building material for the eicosanoids, a large group of highly bioactive hormone-like substances including prostaglandins, leukotrienes, and thromboxanes that are involved in blood clotting, inflammation, and vasoconstriction. Its many important functions are described below.

What Is EPA Deficiency?

Sources:
  1. Coletta JM, Bell SJ, and Roman AS. Omega-3 Fatty Acids and Pregnancy. Rev Obstet Gynecol. 2010 Fall; 3(4): 163–171 []

Alpha-Linolenic Acid Deficiency

Flaxseed Crispbread is Loaded with Alpha-Linolenic Acid.
Flaxseed Crispbread…Loads of Alpha-Linolenic Acid.

What Is Alpha-Linolenic Acid?

[dropcap]A[/dropcap]lpha-linolenic acid is an essential (need/can’t make) polyunsaturated omega-3 fatty acid that must be obtained in the diet. Alpha-linolenic acid is found in plant sources only.

Alpha-linolenic acid is required for normal brain function and nervous system health. It is an important building material for the eicosanoids.

Q: What are eicosanoids?

A: Eicosanoids are a large group of highly bioactive hormone-like substances including prostaglandins, leukotrienes, and thromboxanes that are involved in blood clotting, inflammation, and vasoconstriction (constriction of blood vessels).

Alpha-linolenic acid is a “parent” fatty acid because if sufficient amounts are present in the body, it can be used to produce both eicosapentanoic acid (EPA) and docosahexaenoic acid (DHA), two other critical omega-3 fatty acids.1 However, this conversion is limited. In healthy individuals, the conversion rate of ALA to EPA is less than 5 to 10% and ALA to DHA is only 2 to 5%.

Additionally, a deficient level of the mineral selenium can interfere with the conversion of alpha-linolenic acid into EPA and DHA. Also, folic acid supplement has been shown to increase omega-3 status and, conversely, to decrease omega-3 when folic acid is in deficient in animal models.

What Is Alpha-Linolenic Acid Deficiency?

Sources:
  1. Richardson AJ. The importance of omega-3 fatty acids for behavior, cognition, and mood. Scandinavian Journal of Nutrition. 2003; 47(2):92-8 []

Calcium Deficiency

active-milk-quality-picture-material_38-4418What Is Calcium?

[dropcap]C[/dropcap]alcium is the most abundant mineral in the body, with 99% residing in teeth and bones where it constitutes 40% of skeletal bone weight along with 45% phosphorus.

As a component of hard tissues, calcium fulfills a structural role to maintain body size and acts as attachments for musculoskeletal tissues.

Q: What does the non-skeleton calcium do in the body?

A: The remaining 1% of calcium is present in blood and soft tissues. Calcium levels in the blood are maintained within very strict limits by dietary intake, hormonal regulation and a rapidly exchangeable pool in bone tissue. The many important functions are described below.

What Is Calcium Deficiency In Celiac Disease and/or Gluten Sensitivity?

Vitamin E Deficiency

Almonds for Vitamin E!
Almonds for Vitamin E!

What Is Vitamin E?

[dropcap]V[/dropcap]itamin E is not a single vitamin but naturally occurs as a fat-soluble vitamin family that consists of at least 8 distinct molecules.

These molecules include 4 tocopherols (alpha, beta, gamma, and delta) and 4 tocotrienols (alpha, beta, gamma, and delta).

Generally, tocotrienols are more active against chronic disease while tocopherols are more protective of the nervous system.

Vitamin E (for short) is a powerful antioxidant that protects cell membranes and other fat-soluble compounds from oxidative damage by free radicals (molecules that damage cells).

Q: How does vitamin E protect cells from oxidative damage by free radicals?

A: As an example, the oxidative damage to low density cholesterol (LDL – bad type) appears to lead to the deposition of cholesterol in the arterial wall (plaque formation) leading to atherosclerotic disease, commonly called hardening of the arteries.

Regarding inflammation, mast cells are activated by oxidized LDL which results in increased expression of inflammatory cytokines. This finding suggests that vitamin E antioxidant activity in reducing oxidation of LDL lipoprotein may also reduce mast cell activation. Mast cells reside near small blood vessels and, when activated, release potent mediators involved in allergy and inflammation.1

In neutralizing free radicals, vitamin E itself is oxidized (changed) to a free radical. Importantly, conversion of vitamin E back to the original form occurs by reaction with vitamin C. These two vital anti-oxidants go hand in hand.

Vitamin E is essential for normal cerebellar brain function (lower brain), peripheral nerve health and healthy skin.

What Is Vitamin E Deficiency In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Shaik-Dasthagirisaheb YB, Varvara G, Murmura G, Saggini A, Caraffa A, Antinolfi P, Tete’ S, Tripodi D, Conti F, Cianchetti E, Toniato E, Rosati M, Speranza L,Pantalone A, Saggini R, Tei M, Speziali A, Conti P, Theoharides TC, Pandolfi F. Role of vitamins D, E and C in immunity and inflammation. J Biol Regul Homeost Agents. 2013 Apr-Jun;27(2):291-5. []

Amino Acid Deficiency (Essential)

phWhat Are Essential Amino Acids?

[dropcap]A[/dropcap]mino acids are small molecules, or subunits, that link together in various combinations to make up big, complicated proteins. As such, amino acids are commonly referred to as “the building blocks” of proteins.

Q: How many amino acids are used in our body?

A: There are 20 amino acids that are used within our body to synthesize or produce our unique human proteins.  Of these amino acids,  9 are termed essential, meaning our bodies require them to live but cannot make them. Therefore, the essential amino acids must come from the food we eat, whether from plant or animal sources.

The essential amino acids include histidine, isoleucine, leucine, lysine, methionine, phenylalanine, threonine, tryptophan, and valine.

What Is Deficiency Of Essential Amino Acids In Celiac Disease and/or Gluten Sensitivity?

Vitamin B1 (Thiamin) Deficiency

thiamin deficiency What Is Thiamin?

[dropcap]T[/dropcap]hiamin, also called vitamin B1, is an essential vitamin that is required to convert foodstuffs into energy and for the health and proper functioning of the nervous, muscular and cardiovascular systems.

In the bloodstream, 90% of active thiamin (TPP) is carried by red blood cells while 10% is transported in the bloodstream as free thiamin and thiamin monophosphate bound mostly to the protein albumin.

In the diet, animal food sources provide active thiamin while plant food sources provide free thiamin.1

Urinary excretion of thiamin cannot be detected when vitamin intake is below the required levels. On the other hand, when intake exceeds saturation in the body, thiamin and/or its metabolites are actively excreted into urine to prevent excessive toxicity of the vitamins.2

In patients who have thiamin deficiency, the most common conditions that bring them to a clinician include neuropathies, depression, myalgia, cardiomyopathies or takes diuretics and/or eat a high carbohydrate diet.3

What Is Thiamin Deficiency In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Kathleen Mahan and Sylvia Escott-Stump, ed. Krause’s Food, Nutrition & Diet Therapy, 10th Edition. Philadelphia, PA. USA: W.B. Saunders Company, 2000. []
  2. Shibata K, Hirose J, Fukuwatari T. Relationship Between Urinary Concentrations of Nine Water-soluble Vitamins and their Vitamin Intakes in Japanese Adult Males. Nutr Metab Insights. 2014 Aug 5;7:61-75. doi: 10.4137/NMI.S17245. []
  3. Spectracell Labs, Inc. []

Vitamin D Deficiency

Sunshine Delivers Free Vitamin D To Everyone.
Sunshine Delivers Free Vitamin D To Everyone.

What Is Vitamin D?

[dropcap]V[/dropcap]itamin D is the principle regulator of calcium homeostasis (balance) in the body.  This “vitamin” is really a prohormone, meaning it acts like a hormone but is not. Vitamin D does, however, contain cholesterol in its molecular structure like steroid hormones.

The physiological importance of vitamin D encompasses much more than the regulation of bone metabolism although this is a mighty function.

Q: How does vitamin D regulate bone metabolism?

A: In regulation of bone metabolism, vitamin D works in three ways: 1) enables active absorption of calcium from the small intestine, 2) enhances reabsortion of calcium by the kidneys that would otherwise be excreted in urine, and 3) plays an active role in skeletal development and bone mineralization. Mineralization gives strength to living bone tissue.

Vitamin D interacts with receptors within cells to effect transcriptional changes in many cell types including those in gut, bone, breast, prostate, brain, skeletal muscle, and the immune system.1

In regards to the essential role of vitamin D in muscle tissue, it has been recently shown that vitamin D regulates both muscle function and structure of primary myofibers.2

Vitamin D is converted in the body to a molecule that is biologically active. The active form is 1,25-dihydroxyvitamin D, usually referred to as vitamin D3. About 80% comes from sun exposure and the remaining from food.

Vitamin D3 is synthesized in the skin from 7-dehydrocholesterol via photochemical reactions requiring UV light (sunlight). That is, light that contains energy from the sun is incorporated into molecules of  7-dehydrocholesterol in the underlying dermis of skin to make this vitamin. This is why inadequate exposure to sunlight contributes to vitamin D deficiency.

Blood concentration of 25(OH)D is the best indicator of vitamin D status. It reflects vitamin D produced in the skin and that obtained from food and supplements and has a fairly long circulating half-life of 15 days.3

What Is Vitamin D Deficiency In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. McCarty DE, Chesson AL Jr, Jain SK, Marino AA. The link between vitamin D metabolism and sleep medicine. Sleep Med Rev. 2014 Aug;18(4):311-9. doi: 10.1016/j.smrv.2013.07.001. []
  2. Girgis CM, Mokbel N, Cha KM, Houweling PJ, Abboud M, Fraser DR, Mason RS, Clifton-Bligh RJ, Gunton JE. The vitamin D receptor (VDR) is expressed in skeletal muscle of male mice and modulates 25-hydroxyvitamin D (25OHD) uptake in myofibers. Endocrinology. 2014 Sep;155(9):3227-37 []
  3. http://ods.od.nih.gov/factsheets/VitaminD-HealthProfessional/ []

Chromium Deficiency

Broccoli is a Good Source of Natural Chromium.
Broccoli is a Good Source of Natural Chromium.

What Is Chromium?

[dropcap]C[/dropcap]hromium is a mineral that the body absolutely requires in trace amounts for normal metabolism, meaning the physical and chemical processes by which energy is produced and used.

Chromium is especially involved in the use of glucose sugar and lipids such as cholesterol and the effectiveness of insulin hormone.

Q: How is chromium involved in the use of glucose?

A: Very small amounts of chromium are required to enable insulin to move glucose from the bloodstream into cells for use as energy.

Insulin is a hormone that controls the use and storage of glucose in two ways: 1) lowers a rise of glucose in blood after meals by moving it out of the bloodstream into body cells, especially muscle cells and 2) limits the release of glucose from the liver between meals. Insulin is produced by beta cells on the surface of the pancreas.

To date, the molecular mechanism by which chromium affects glucose and lipid metabolism is still unclear.1

What Is Chromium Deficiency In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Lewicki S, Zdanowski R, Krzyżowska M, Lewicka A, Dębski B, Niemcewicz M, Goniewicz M. The role of Chromium III in the organism and its possible use in diabetes and obesity treatment. Ann Agric Environ Med. 2014 Jun 10;21(2):331-335. []