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Peripheral Neuropathy 

Microscopic Slide of Lymphocytic Colitis. Courtesy Quizlet.com
Microscopic  Slide of Biopsy Sample Showing Lymphocytic Colitis. Courtesy Quizlet.com

What Is Lymphocytic Colitis?

L ymphocytic colitis is a microscopic inflammation of the large intestinal mucosa with infiltration of lymphocytes (IELs)  that is characterized by non-bloody secretory diarrhea.

Secretory diarrhea describes bowel movements that consist of a large volume of liquid stool.

Q: What are IELs?

A: IELs is an abbreviation for intraepithelial lymphocytes, which are white blood cells that infiltrate within epithelial cells or between them. Epithelial cells form the surface mucosa of the large intestine also called the colon.

The histopathological criteria (biopsy) for lymphocytic colitis are a density of at least 20 IELs per 100 surface epithelial cells; chronic inflammatory infiltrate of mononuclear cells in the lamina propria; epithelial damage; and a subepithelial collagen layer of less than 10 µm. The increased collagen band consists basically of collagen type I and III, which are the subtypes produced by repair functions, indicating a reactive origin.1That is, the mucosa is reacting to some irritative substance.

Up to 10% of adults undergoing colonoscopy for investigation of chronic diarrhea and having visibily normal appearing mucosa may have lymphocytic colitis.2

Bile acid malabsorption has been shown to coexist in 60% of patients with lymphocytic colitis.1

Lymphocytic colitis (LC) is categorized as primary or secondary.  Primary LC is a clinical and histopathological disease of unknown cause. Secondary LC may develop as the result of iritating factors acting on the colon such as smoking or many medications.  In one study, the most common drug treatments as a percentage of the study group were corticosteroids (32.1%), proton pump inhibitors (26.0%), antidepressant drugs, specifically selective serotonin reuptake inhibitors (21.4%), angiotensin-converting enzyme inhibitors or angiotensin II receptor antagonists (18.3%), statins (17.6%), thyroid hormones (17.6%), and beta-blockers (16.0%).3

Secondary lymphocytic colitis is associated with several concomitant diseases including celiac disease. This is why lymphocytic changes must be interpreted with caution before considering them as a separate entity of autoimmune origin, instead of secondary reactions to ischemia and toxic stimulants. Efforts must be made to better classify and diagnose patients with real, primary lymphocytic colitis to avoid over-prescription of corticosteroids for treatment.3

What Is Lymphocytic Colitis In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Ohlsson B. New insights and challenges in microscopic colitis. Therap Adv Gastroenterol. 2015 Jan;8(1):37-47. doi: 10.1177/1756283X14550134. [] []
  2. Abdo AA, Urbanski SJ, Beck PL. Lymphotcytic and collagenous colitis: the emerging entity of microscopic colitis. An update on pathophysiology, diagnosis and management. Canadian Journal of Gastroenterology. Jul 2003;17(7):425-32. []
  3. Roth B, Manjer J, Ohlsson B. Drug Target Insights. 2013 Aug 11;7:19-25. doi: 10.4137/DTI.S12109. [] []

Multiple Sclerosis

canstockphoto17997339What Is Gluten Sensitive Enteropathy?

Gluten sensitive enteropathy is active celiac disease characterized by inflammation of the small intestinal mucosa that results from an inherited immunologic intolerance to ingested gluten.

Q: What does the inflammation do to the mucosa in the small intestine?

A: Inflammation is a cell level immune response to gluten that has these effects on the mucosa:

  • Damages the barely visible villi (multitudinous finger-like structures) by causing atrophy or loss.
  • Likely affects the structural support and microcirculation of the villus, leading to collapse of the villus.
  • Elongates the crypts between villi. The thickening of the crypt is not so much a response to loss of surface enterocytes but represents inflammation of the mucosa.1
  • Increases round cells in the lamina propria and surface epithelial cells leaving few, irregular microvilli (brush border) on the surface of villi.
  • Damage is most intense in the duodenum and decreases toward the large intestine.
  • The extent of the damage to the intestine determines the malabsorptive consequences of the disease. Both gastric and small intestinal permeability are disrupted in patients with celiac disease.2
  • Relationship between active celiac disease and intestinal permeability: There is a clear association between degree of mucosal damage and the intestinal-permeability ratio, and a normal ratio generally implies near-normal small intestinal structure. A raised intestinal permeability of the mucosal lining (leaky gut) could predispose to a high absorption of gluten and exacerbate an existing lesion and hence convert a latent to an overt enteropathy.3
  • Relationship between active celiac disease and tight junction proteins: A study of intestinal permeability showed that the expression of all junction proteins of the small intestinal lining (occludin, claudin 3, zonula occludens 1, and E-cadherin) was already decreased in early stage celiac disease when compared with non-celiac controls, showing leaky gut and confirming the above earlier study by Johnston et al. Junction protein expression correlated positively with mucosal villus structure and negatively with the number of intraepithelial lymphocytes (IELs), the intensity of small-intestinal autoantibody deposits, and serum autoantibodies. The expression of claudin 3 showed a negative correlation with diarrheal score.4
  • Relationship between active celiac disease and inflammation. In celiac disease there is an over production of inflammatory interleukin-15 (IL-15) which inhibits the correct removal of damaged intraepithelial lymphocytes caused by the reaction to gluten. Serum levels of IL-15 are directly correlated with the seriousness of tissue damage.5
  • Relationship between active celiac disease and gut microbiota. Results of a study investigating intestinal microbiota (normal bacterial residents) in patients with celiac disease suggest that with lower levels of the genus bifidobacteria, celiac patients have an imbalance in the intestinal microbiota even while on a gluten-free diet. This fact could favor the pathological process of the disorder. The concentration of bifidobacteria per gram of feces was significantly higher in healthy subjects (2.5 ± 1.5 x107 CFU/g) when compared to celiac patients (1.5 ± 0.63 x108 CFU/g).6

  • Relationship between active celiac disease and endoscopy technique. The most severe degree of villous atrophy was detected when distal duodenal biopsy specimens were taken in addition to a duodenal bulb biopsy specimen from either the 9- or 12-o’clock position (96.4% sensitivity; 95% CI, 79.7%-100%). The difference between the 12-o’clock position biopsy and the 3-o’clock position biopsy in detecting the most severe villous atrophy was 92% (24/26 patients) versus 65% (17/26 patients).7
  • Relationship between active celiac disease and diet adherence. Patients with consistent gluten free diet adherence experience symptomatic responses to dietary gluten (SRDG) faster and more severe in comparison to their prior gluten exposure possibly demonstrating an adept immunological response. Anxiety and depression also enhance the speed of symptom onset and co-existing visceral hypersensitivity is a risk factor for severe reactions to dietary gluten.8
  • Relationship between active celiac disease and atrial fibrillation: Patients with celiac disease, verified by intestinal biopsy, are at increased risk of atrial fibrillation. This observation is consistent with previous findings that elevation of inflammatory markers predicts atrial fibrillation.9

How Prevalent Is Gluten Sensitive Enteropathy?

Sources:
  1. Murray JA, the widening spectrum of celiac disease. American Journal of Clinical Nutrition. Mar 1999; 69(3):354-365. []
  2. Murray JA, the widening spectrum of celiac disease. American Journal of Clinical Nutrition. Mar 1999; 69(3):354-365. []
  3. Johnston SD, Smye M, Watson RGP. Intestinal permeability and morphometric recovery in coeliac disease. Lancet. Jul 28, 2001;358(9278):259, 2p. []
  4. Rauhavirta T, Lindfors K, Koskinen O, Laurila K, Kurppa K, Saavalainen P, Mäki M, Collin P, Kaukinen K. Impaired epithelial integrity in the duodenal mucosa in early stages of celiac disease. Transl Res. 2014 Sep;164(3):223-31. doi: 10.1016/j.trsl.2014.02.006 []
  5. Stazi AV, Trinti B. Selenium status and over-expression of interleukin-15 in celiac disease and autoimmune thyroid diseases. Ann Ist Super Sanita. 2010;46(4):389-99.DOI: 10.4415/ANN_10_04_06. []
  6. Golfetto L, de Senna FD, Hermes J, Beserra BT, França Fda S, Martinello F. Lower bifidobacteria counts in adult patients with celiac disease on a gluten-free diet. Arq Gastroenterol. 2014 Apr-Jun;51(2):139-43. []
  7. Kurien M, Evans KE, Hopper AD, Hale MF, Cross SS, Sanders DS. Duodenal bulb biopsies for diagnosing adult celiac disease: is there an optimal biopsy site? Gastrointest Endosc. 2012 Jun;75(6):1190-6. doi: 10.1016/j.gie.2012.02.025. []
  8. Barratt SM, Leeds JS, Sanders DS. Factors influencing the type, timing and severity of symptomatic responses to dietary gluten in patients with biopsy-proven coeliac disease. J Gastrointestin Liver Dis. 2013 Dec;22(4):391-6. []
  9. Emilsson L, Smith JG, West J, Melander O, Ludvigsson JF. Increased risk of atrial fibrillation in patients with coeliac disease: a nationwide cohort study. Eur Heart J. 2011 Oct;32(19):2430-7. doi: 10.1093/eurheartj/ehr167. []

Anemia, Folic Acid Deficiency  

Folic acid deficiency anemia gluten celiac disease symptom
Red Blood Cells.

What Is Folic Acid Or Folate Deficiency Anemia?

Folic acid deficiency anemia, also called folate deficiency anemia, is a macrocytic anemia characterized by defective DNA synthesis of red blood cells that results from a lack of folate in the body.

Q: How does folate deficiency cause anemia?

A: Folates are a family of B vitamins and folic acid is an active form.

Folate is required for the formation of both red and white blood cells in the bone marrow and for their maturation.

Also, folate serves as a carrier in the formation of heme, which contains iron, and is the non-protein part of the hemoglobin molecule.1

Red blood cells provide oxygen to body tissues. When there are not enough red blood cells or when they cannot properly carry oxygen, the condition is called anemia. In folic acid deficiency anemia, the red blood cells are abnormally large. Such cells are called macrocytes (macro size cells). They are also called megaloblasts (mega size cells) as seen in the bone marrow where they are produced. This is why this macrocytic anemia is also called megaloblastic anemia.2

Tests that may be done to determine folate adequacy are complete blood count (CBC), red blood cell folate level, methylmalonic acid level, and homocysteine level. Folic acid deficiency anemia shows a decrease in red blood cell folate and/or serum folate levels and normal plasma methylmalonic acid level with elevated homocysteine blood level. These levels distinguish folic acid deficiency anemia from vitamin B12 deficiency anemia.3

What Is Folate Deficiency Anemia 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. http://www.ncbi.nlm.nih.gov/pubmedhealth/PMH0001578/ []
  3. Mark Beers and Robert Berkow. The Merck Manual, 17th Edition. Whitehouse Station, N.J. USA: Merck Research Laboratories, 1999. []

Weight Loss, Unexpected/ Inability To Gain Weight

unexpected weight loss celiac disease symptomWhat Is Unexpected Weight Loss?

Unexpected weight loss is unintentional loss of body mass composition or inability to gain weight marked by decreased serum proteins and increased stool fat.1

What Is Unexpected Weight Loss In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Krause’s Food, Nutrition, & Diet Therapy. 10th Edition. Kathleen Mahan, Sylvia Escott-Stump. 2000. W.B. Saunders Company. []

Polymyositis

What Is Helicobacter Pylori (H. Pylori) Infection? H elicobacter pylori infection is a potentially deadly stomach disease characterized by chronic superficial inflammation and ulcerations in 100% of infected patients. This infection disrupts normal defense and… 

Cachexia

Cachexia with Wasted Muscles, Weakness, and That Developed over 3 Years Time.
Cachexia with Wasted Muscles, Weakness, Weight Loss, Anemia, Skin Hemorrhages, Anorexia. GFW

What Is Cachexia?

Cachexia is a state of ill health involving deteriorating body composition that is characterized by general malnutrition and loss of lean tissue such as muscle.

Q: What are typical findings in cachexia?

A: Arm muscle triceps (the muscles at the back of the upper arm), skin folds, subscapular skin folds, fat area index, and bone mineral content are significantly lower than normal.

Cachexia may develop in protein-losing enteropathy such as celiac disease, chronic or severe infection such as pneumonia, tuberculosis, malaria, or many chronic diseases such as heart failure and cancer.

Cachexia can develop in persons of any age.

What Is Cachexia In Celiac Disease and/or Gluten Sensitivity?

Macrocytosis

Comparison of normoblast and megaloblastWhat Is Macrocytosis?

Macrocytosis is a blood cell disorder characterized by altered blood cell formation that results in abnormally large erythrocytes (red blood cells) circulating in the bloodstream.

The mean corpuscular volume (MCV), which is a measure of the size of red blood cells in the bloodstream, is greater than 100 fL as shown in a complete blood count (CBC) laboratory analysis report.

Macrocytosis produces macrocytic anemias that are classified as megaloblastic or non-megaloblastic:

  1. Megaloblastic anemias result from disorders of DNA synthesis of red blood cell precursors (megaloblasts) in bone marrow due to B vitamin deficiency demonstrated by macro-ovalocytes and hypersegmented neutrophils.1
  2. Non-megaloblastic anemias are or those caused primarily by alcoholism, liver disease and hypothyroidism.2

What Is Macrocytosis In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Kaferle J, Strzoda CE.Evaluation of macrocytosis. Am Fam Physician. 2009 Feb 1;79(3):203-8. []
  2. Davenport J. Macrocytic anemia. Am Fam Physician. 1996 Jan;53(1):155-62. []

Geographic Tongue

Geographic Tongue Due to Riboflavin Deficiency.
Geographic Tongue Due to Riboflavin Deficiency.

 What Is Geographic Tongue?

Geographic tongue is a painful alteration in tongue tissue that is characteristic of riboflavin (vitamin B2) deficiency.1

Q: How does the tongue surface appear?

A: Areas of inflamed tissue with flattened papillae develop among areas of normal tissue, giving a map-like appearance to the tongue surface. There are often swollen papillae that hurt or sting, such as is seen in the photo to the left.

A diet that does not provide adequate amounts of riboflavin and any condition that 1) interferes with riboflavin absorption from the gut, 2) depletes the vitamin from the body, 3) overuses the vitamin in the body, or 4) adversely affects its use in the body will result in riboflavin deficiency causing geographic tongue.

Riboflavin is essential for converting foodstuffs into energy, maintaining the normal lifespan of red blood cells and maintaining healthy skin, eyes, hair, and nervous system. Riboflavin is converted into its active forms, flavin adenine dinucleotide (FAD) and flavin mononucleotide (FMN). These enzymes are primarily involved as co-factors in oxidation reduction reactions that are essential for cellular energy production and respiration.

Riboflavin is required for the conversion of pyridoxine (vitamin B6) to its functional form and the production of niacin (vitamin B3) from the amino acid tryptophan. Riboflavin has a role in antioxidant status by activating glutathione reductase, which regenerates used glutathione, a powerful antioxidant.

Respiratory infection, exercise, certain diseases, drugs and hormones can adversely influence riboflavin status.2 Stress is a major depleter of riboflavin.

What Is Geographic Tongue In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Krause’s Food, Nutrition, & Diet Therapy. 10th Edition. Kathleen Mahan, Sylvia Escott-Stump. 2000. W.B. Saunders Company. []
  2. Lakshmi AV. Riboflavin metabolism–relevance to human nutrition. Indian J Med Res. 1998 Nov;108:182-90. []

Hypocupremia (Low Blood Copper Level)

hypocupremia low copper and celiac disease gluten symptom
Paleness and Tendon Problem: Symptoms of Hypocupremia.

What Is Hypocupremia?

Hypocupremia, or low plasma copper, means the level of copper is too low to meet metabolic needs of the body for copper and is characterized by these many features:

  1. Impaired energy production causing weakness.
  2. Impaired ability as part of an enzyme to oxidize vitamin C which is required to breakdown histamine.
  3. Faulty blood cell formation and instability of blood cell membranes causing anemia, shortened life span of neutrophils causing susceptibility to infection, faulty platelet formation causing impaired blood clotting.
  4. Faulty elastin formation causing weak blood vessels.
  5. Poor collagen and connective tissue strength causing joint and tendon problems and weak bones causing deformities, faulty bone mineralization causing fragile bones.
  6. Loss of proprioception causing ataxia.
  7. Loss of pigmentation of hair and skin.
  8. Impaired thyroid function.
  9. Impaired adrenalin production.

Untreated, copper deficiency can advance to brain degeneration. Failure to make normal blood cells can result in death.

What Is Hypocupremia In Celiac Disease and/or Gluten Sensitivity?

Hemochromatosis (Iron Overload Disease)

Hemochromatosis
Microscopic View of Hemochromatosis Stained Blue. Courtesy Wikimedia

What Is Hemochromatosis?

Hemochromatosis, also called iron overload liver disease, is a common inherited disease in the Caucasian population that is characterized by increased iron deposition within the tissues (overload) associated with injury to them.

Hemochromatosis is an autosomal recessive disease, meaning a pair of abnormal genes are inherited from each parent. Parents are unaffected because they carry only one gene.

Q: Where is iron deposited?

A: In hemochromatosis, more iron is absorbed from the small intestine than is needed by the body. Subsequently, because the body has no satisfactory means to release iron overload, excess iron is deposited in various organs such as the liver causing cirrhosis, joints causing arthritis, and the pancreas causing diabetes mellitus.1

Consumption of alcoholic drinks with food should be avoided because alcohol increases leaky gut and greatly increases the absorption of iron. On the flip side, eggs and foods containing calcium such as milk and cheese are beneficial for hemochromatosis because they impair the absorption of iron. Another iron inhibitor is food that contains phytic acid which includes the bran and outer layer of grains, seeds, nuts, peas, beans, and lentils.

Iron overloading, as measured by a random (non-fasting) elevated transferrin saturation value, is estimated to occur in 1 to 6 people per 100 in the United States according to the CDC (Center for Disease Control and Prevention). Too much iron increases the risk for metabolic syndrome, type 2 diabetes mellitus, cancer, liver disease, and osteoporosis.

Medical treatment to remove excess iron from the body uses phlebotomy that draws blood through a vein and/or certain injectable drugs (deferoxamine and deferairox) that bind to iron.

What Is Hemochromatosis In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. www.irondisorders.org []