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Common Variable Immunodeficiency 

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

What Is Folic Acid Or Folate Deficiency Anemia?

F olic 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. []

Autoimmune Hepatitis

 

Jaundice, or yellowing of the skin and sclera of eyes.
Jaundice, or yellowing of the skin and sclera of eyes, is a symptom of autoimmune hepatitis.

What Is Autoimmune Hepatitis?

Autoimmune hepatitis is an autoimmune attack against liver cells that is characterized by inflammation and results in chronic liver disease which includes low blood albumin and cirrhosis.

Autoimmune hepatitis is diagnosed by detection of autoantibodies in blood and liver biopsy.

Q: What is cirrhosis?

A: Cirrhosis is a degenerative process of the liver that can be fatal. Normal lobular liver structure is distorted and replaced with nodules of regenerating liver cells separated by bands of fibrous tissue that cannot properly carry out liver function and block the necessary flow of blood through the liver, ending in liver failure.

The liver is the largest organ within the body and lies mostly in the upper part of the abdomen on the right side just under the diaphragm. About 70% of liver tissue is made up of cube shaped cells called hepatocytes that do the main work of the liver. Other cells form structure and are arranged in single layers around blood vessels, sinusoids, and bile ducts.

Bile ducts carry bile, a greenish brown liquid made by the liver, to the gall bladder for storage until needed to aid in the digestion and absorption of fat from the small intestine. Bile emulsifies fat eaten in the diet so that the pancreatic enzyme called lipase can break it down into its fatty acid and glycerol components.

The liver is a very busy organ, carrying out over 500 metabolic processes! Nutritionally, it is the first to receive all the blood carrying nutrients freshly absorbed from the digestive tract. Hepatocytes then convert the nutrients to provide the body with energy, a host of amino acids as building blocks for numerous cell activities, and proteins such as albumin and fibrinogen. In fact, hepatocytes build the structural proteins for the liver itself. Imagine the array of nutrients the liver uses and keeps at its disposal for its metabolic functions. Included in liver storage are vital vitamins and minerals such as vitamin A and vitamin B12.

As a detoxifier, Kupffer cells located in the sinusoids act like amoebas to engulf and digest unwanted matter. As a blood cleanser, the liver removes waste products produced by normal metabolism and toxic substances and rids it by preparing these substances for elimination in urine, such as ammonia converted to urea, and/or excreting them in bile for eventual elimination in stool. Bile is continually made by the liver from phospholipids salt, cholesterol, aging blood cells it removes from circulation.

Autoimmune hepatitis is classified into several types. Type 1 autoimmune hepatitis is the most common form in North America. Type 1 can occur at any age; however, it most often starts in adolescence or young adulthood. People with type 1 autoimmune hepatitis commonly have other autoimmune disorders (see listed below).

Type 2 autoimmune hepatitis is less common and occurs more often in children than adults. People with type 2 can also have any of the autoimmune disorders (see listed below).

Both types of autoimmune hepatitis are treated with prednisone, a corticosteroid hormone to control inflammation and reduce the body’s immune activity against the liver.1

What Is Autoimmune Hepatitis In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. National Digestive Diseases Information Clearinghouse []

IgA Deficiency

Red Blood Cell Comparison. Courtesy medindia.com
Red Blood Cell Comparison. Courtesy medindia.com

What Is Iron Deficiency Anemia?

I ron deficiency anemia is a blood cell disorder that is characterized by formation of small, pale red blood cells, causing tissue hypoxia. Hypoxia is the inability to meet the demands of the body for oxygen.

Q: Why do small, pale red blood cells cause tissue hypoxia?

A: Small, pale red blood cells (erythrocytes) cause tissue hypoxia because they are not able, as do normal erythrocytes, to pick up adequate oxygen from the lungs and carry it to cells that use oxygen.

Red blood cell production and function are dependent on a sufficient level of iron in the body and also the ability to use available iron to make hemoglobin in red blood cells.

Hemoglobin is a protein that binds oxygen in red blood cells to be carried by the bloodstream to cells throughout the body. In iron deficiency anemia,  hemoglobin in females is below 12.5g/dl (normal range is 12.5 to 16g/dl) and in males it is below 13.5g/dl (normal range is 13.5 to 17.5g/dl).

Iron must be obtained from the diet, since the body cannot make it, but there are various factors that can interfere with absorption and use in the body, causing anemia. Iron absorption from the gut first requires ionization, or gaining a positive electrical charge, in the strongly acidic environment of stomach juice. Ionized iron, only, can be absorbed in the duodenum, which receives the acidic contents of the stomach before it is neutralized further along.

Dietary iron can be heme or non-heme depending on the food source. Heme iron obtained only from animal food sources is absorbed into the bloodstream by active transport across the brush border (microvilli) which cover the multitudinous villi of the small intestinal lining.

Non-heme iron obtained from plants must bind with apoprotein after entering the enterocyte (surface cell of small intestinal lining) to be ferried to the underlying basolateral membrane and exited by active transport into the bloodstream.

Frequently, chronic anemia due to iron deficiency is accompanied by increased platelets, and this thrombocytosis resolves with iron repletion (normal iron level). Conversely, in severe iron deficiency anemia, patients may have thrombocytopenia (low platelets), which also resolves with iron therapy.1

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

Sources:
  1. Koury M and Rhodes M. How to approach chronic anemia. Hematology Am Soc Hematol Educ Program. 2012;2012:183-90. doi: 10.1182/asheducation-2012.1.183. []

Liver or Hepatic Granulomatous Disease 

This is a model of Immunoglobulin-G Antibody (IgG)
This is a model of Immunoglobulin-G Antibody (IgG)

What Are Anti-Gliadin Antibodies?

A nti-gliadin antibodies (AGA) are produced by the body as an immune response against partially digested gliadin peptides (fragments) that have abnormally entered the body from the intestinal tract. Gliadin is a protein in wheat grain.

Anti-gliadin antibodies circulating in blood are measured by laboratory testing on blood that is drawn. The antibodies are both immunoglobulin A (IgA) and immunoglobulin G (IgG) types, which are termed AGA-IgA and AGA-IgG.

The presence of anti-gliadin antibodies in blood is an abnormal laboratory finding. That is, when the intestinal lining is healthy and able to keep out undigested matter from the body, there are no molecules of gliadin present to trigger the immune system for defense.

Q: Who produces anti-gliadin antibodies?

A: Persons, with or without celiac disease, can produce anti-gliadin antibodies if and when leaky gut (increased intestinal permeability) develops that then allow gliadin peptides to get into the bloodstream.

Gliadin itself causes leaky gut, but there are other causes such as various foods, intestinal infections, medications, and other diseases of the gastrointestinal tract. Whatever the cause of leaky gut, if poorly digested gliadin is present, it can slip through the leaky lining and enter the bloodstream where it can trigger an antibody response by anti-gliadin antibodies.

What Are Anti-Gliadin Antibodies In Celiac Disease and/or Gluten Sensitivity Or Non-Celiac Gluten Sensitivity?

Diabetes Mellitus, Type I

Image depicts tissue transglutaminase (tTg).
Image Depicts Tissue Transglutaminase (tTG).

What Are Anti-tissue Transglutaminase Antibodies?

A nti-tissue transglutaminase antibodies (anti-tTG) are connective tissue autoantibodies and can be detected in blood samples from affected persons who are reacting to gluten in the diet.

Autoantibodies are abnormal because they attack the body’s own tissue, which in the case of these antibodies is tissue transglutaminase 2 (TG2).

Q: What is tissue transglutaminase 2 (TG2)?

A: Tissue transglutaminase 2 (TG2) is an enzyme that appears in many cell locations and is particularly abundant in endothelial cells that line the small intestine. It has been implicated in a variety of cellular processes, such as differentiation, cell death, inflammation, cell migration and wound healing.

The cell appears to adapt the dynamics of this enzyme to meet specific sub-cellular needs or to respond to stress or other stimuli. Substantial evidence indicates that the location of TG2 within cells is critical for the regulation of its various biochemical activities, which subsequently trigger diverse downstream events,1

Although initially studied as an enzyme within cells, TG2 is now known to be secreted also into the extracellular space (between cells) or onto the cell surface.1

Abnormal activation of TG2 or deregulation of its function(s) is involved in a variety of human diseases, such as celiac disease, diabetes, neurodegenerative diseases, multiple sclerosis and rheumatoid arthritis. A role in inflammatory disorders and septic shock has also been shown. Moreover, multiple studies have revealed elevated TG2 expression in many types of cancer cells.1

What Are Anti-tissue Transglutaminase Antibodies In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Piacentini M, D’Eletto M, Farrace MG, Rodolfo C, Del Nonno F, Ippolito G, Falasca L. Characterization of distinct sub-cellular location of transglutaminase type II: changes in intracellular distribution in physiological and pathological states. Cell Tissue Res. 2014 Dec;358(3):793-805. doi: 10.1007/s00441-014-1990-x. [] [] []

Hypokalemic Rhabdomyolysis in Celiac Disease and Dermatitis Herpetiformis

mucosal web in plummer-vinson syndromeWhat Is Plummer-Vinson Syndrome Affecting the Esophagus?

P lummer-Vinson syndrome is a manifestation of severe, long-term, iron deficiency anemia that is characterized by post-cricoid esophageal webs and dysphagia.

Q: What are esophageal webs?

A: Esophageal webs are one or more thin horizontal membranes consisting of squamous epithelium (cells that line the surface of the esophagus) and submucosa. They usually protrude from the anterior (front) wall, extending laterally across the inside esophagus but not to the posterior (rear) wall, which means that they rarely encircle the lumen.1

Dysphagia, or difficulty swallowing, from these webs is commonly painless and intermittent or progressive and may cause obstruction.

Webs can be detected by barium swallow X-ray, but the best way for demonstration is videofluoroscopy and by upper gastrointestinal endoscopy. They appear smooth, thin, and gray with eccentric or central lumen space. The webs typically occur in the upper part of the esophagus and may be missed and accidentally ruptured unless the endoscope is introduced under direct visualization.1

Iron deficiency is believed to decrease the contraction amplitude or force of the esophageal muscle resulting in motility impairment. Slower transit times have been recorded at the proximal and middle parts of the esophagus of Plummer-Vinson syndrome patients compared to healthy volunteers.2 Transit time is how fast ingested food and fluids travel through the esophagus.

Gude et al, report that iron replacement does not necessarily reverse the dysphagia in all the cases of Plummer-Vinson syndrome and that close monitoring of the web is mandated to watch for malignant change.  In fact, 3 to 15 per cent of the patients with Plummer-Vinson syndrome, mostly women between 15 and 50 years of age, have been reported to develop esophageal or pharyngeal cancer.2

What Is Plummer-Vinson Syndrome Affecting the Esophagus In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Novacek G. Plummer-Vinson syndrome. Orphanet J Rare Dis. 2006; 1: 36. Published online 2006 September 15. doi:  10.1186/1750-1172-1-36. [] []
  2. Gude D, Bansal DP, and Malu A. Revisiting Plummer Vinson Syndrome. Annals of Medical and Health Sciences Research. 2013 Jan-Mar;3(1):119-121. [] []

Diabetic Instability 

Vertebrae. Courtesy FreePik.com
Vertebrae. Courtesy FreePik.com

What Is Elevated Bone Alkaline Phosphatase?

E levated bone alkaline phosphatase (BALP) is a laboratory result that indicates an abnormal blood level of this bone enzyme.

A bone alkaline phosphatase blood level is one of the most frequently used biochemical markers of bone formation.

Q: Why is the purpose of  bone alkaline phosphatase?

A: Bone alkaline phosphatase is produced by bone cells called osteoclasts in normal bone maintenance for the purpose of breaking down old or damaged bone so that other bone cells called osteoblasts can fill in the excavated areas with new bone. This process keeps bone stong and healthy.

Elevated bone alkaline phosphatase shows that more bone is being broken down than is being replaced. It can be caused by hyperparathyroidism, bone tumors from cancer, and malnutrition.

What Is Elevated Bone Alkaline Phosphatase (BALP) In Celiac Disease and/or Gluten Sensitivity?

Gastrointestinal Complications Of Type I Diabetes Mellitus

Model of cholesterol molecule.
Model of cholesterol molecule.

What Is Low Cholesterol?

L ow cholesterol found in blood indicates an abnormal blood level of this essential lipid (fat) that is characterized by decreased production of steroid hormones and bile.

Cholesterol is a soft, fat-like substance found in the bloodstream and is an essential structural component in all body cells. It is required for membrane fluidity and permeability of cells. Within the cell membrane, cholesterol also functions in intracellular transport, cell signaling and nerve conduction.

Cholesterol is required for these essential body processes:

  1. Cholesterol is converted to bile by the liver and stored in the gallbladder until needed for digestion of fats in the small intestine.  
  2. Cholesterol is used by the adrenal glands to produce the steroid hormones cortisol and aldosterone.
  3. Cholesterol is used by the sex glands to make progesterone, estrogen, and testosterone and their derivatives.
  4. Cholesterol is needed for the production of vitamin D.

Q: What makes cholesterol bad for you?

A: There are different forms of cholesterol that can be bad or good depending on the level. In blood vessels, low-density lipoprotein (LDL or ‘bad’) cholesterol can abnormally join with fats and other substances to build up in the inner walls of arteries. The arteries can become clogged and narrow, and blood flow is reduced. This is atherosclerosis which can lead to stroke, heart attack and thrombosis.

High-density lipoprotein (HDL or ‘good’) carries harmful cholesterol away from the arteries and helps protect from heart attack and stroke.1

What Is Low Cholesterol In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. http://watchlearnlive.heart.org/CVML_Player.php?moduleSelect=hdlldl []

Pancreatic Insufficiency

Model of coagulation factors found in blood.
Model of coagulation factors found in blood.

What Are Low Coagulation Factors?

C oagulation factors II, VII, IX, X found in blood are essential for normal blood clotting.  Low coagulation factors on blood assay indicate an altered secondary coagulation disorder that is characterized by impaired clot formation.

Each coagulation factor must be present in sufficient quantity in order for normal clotting to occur, but the level required is different for each factor. Results are frequently reported as a percentage with 100% being normal. For example, a factor VIII that is 30% would be considered abnormally low.1

The production of the coagulation factors II, VII, IX, and X requires vitamin K without which the factors will be low.

Q: What happens when coagulation factors II, VII, IX, and X are low?

A: When any of the blood clotting factors are lacking or not working properly, the blood tests prothrombin (PT) and partial thromboplastin time (PTT) will be abnormally prolonged. Prothrombin and partial thromboplastin time measure the time it takes for blood to clot.  When you bleed, the body launches a series of activities that help the blood clot. This is called the coagulation cascade. There are three pathways to this event. These tests looks at coagulation factors, found in two of these pathways.2

What Are Low Coagulation Factors In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. http://labtestsonline.org/understanding/analytes/coagulation-factors/tab/test []
  2. http://www.nlm.nih.gov/medlineplus/ency/article/003653.htm []

Ataxia, Gait

Normal Liver Lobule. Courtesy almostadoctor.com
Figure 1: Normal Liver Lobule. Courtesy almostadoctor.com

What Is Autoimmune Cholangitis?

A utoimmune cholangitis is a rare inflammatory self-targeted disease of the biliary tract produced by high levels of immunoglobulin G (IgG) antibodies and antinuclear antibodies (ANA).

Autoimmune cholangitis is characterized by progressive inflammation and scarring that leads to narrowing and destruction of the bile ducts and development of biliary cirrhosis of the liver.

Autoimmune cholangitis is also termed anti-mitochondrial antibody-negative primary biliary cirrhosis because there is no production of anti-mitochondrial antibodies.

Q: What happens when bile ducts can no longer transport bile out of the liver?

A: Bile that cannot be removed from the liver by the biliary tract backs up and damages the liver, causing cirrhosis. In Figure 1, bile back up would directly damage the hepatic (liver) cells seen here as grey “blocks.” 

Bile is a greenish brown liquid continually made by the liver cells (hepatocytes) from phospholipids salt, cholesterol, and aging blood cells that it removes from circulation. 

Bile also carries away waste products produced by normal metabolism and toxic substances that are removed by the liver for eventual elimination in stool. As such, bile must continually flow out of the liver to prevent build-up in the liver. 

Bile from the hepatic cells drains into small tubes called canniculi and then into larger bile ducts to be carried out of the liver to the gall bladder for storage until needed to aid in the digestion and absorption of fat from the small intestine.   Bile emulsifies fat eaten in the diet so that the pancreatic enzyme called lypase can break it down into its fatty acid and glycerol components. 

Unfortunately, autoimmune cholangitis is difficult to diagnose because it mimics many other diseases such as primary sclerosing cholangitis, sarcoidosis, cancer and lymphoma.

What Is Autoimmune Cholangitis In Celiac Disease and/or Gluten Sensitivity?