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Progressive Multifocal Leukoencephalopathy

jejunitis
Copyright © 2014 Sigman et al.; licensee BioMed Central Ltd.1

What Is Chronic Ulcerative Jejunitis?

C hronic ulcerative jejunitis is a disease of the small intestine that is characterized by inflammation and ulceration of the mucosal lining of the jejunum.

Q: How do inflammation and ulceration affect digestion in the jejunum?

A: Inflammation swells the lining and this impairs absorption of nutrients. Together with ulceration the inflamed and swollen jejunum hampers peristalsis, or the rhythmic movement of food by intestinal muscles.

Impaired peristalsis promotes constipation and/or diarrhea. Bacterial overgrowth may develop. Ulcerations may bleed which could cause the development of iron deficiency anemia.

What Is Chronic Ulcerative Jejunitis In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Sigman T, Nguyen VH, Costea F, Sant’Anna A, Seidman EG. Ulcerative jejunitis in a child with celiac disease. BMC Gastroenterol. 2014 Feb 13;14:29. doi: 10.1186/1471-230X-14-29. []

Anti-Endomysium Antibodies (EMA) Present In Blood

Smooth muscle. Courtesy pathguy.com
Smooth Muscle. Courtesy pathguy.com

What Are Anti-Endomysium Antibodies?

Anti-endomysium antibodies (EmA) are connective tissue autoantibodies produced in persons who have inherited the genes for celiac disease, an autoimmune disease, and are reacting to gluten in their diet.

Autoantibodies are abnormal in that they attack the body’s own tissue.

Q: What is endomysium?

A: Endomysium is the delicate connective tissue that surrounds individual muscle fibers. The autoantigen, or target, that stimulates the autoimmune response is the naturally occuring enzyme in endomysium called tissue transglutaminase (tTG), or more specifically tranglutaminase-2 (TG2). Anti-tissue transglutaminase antibodies recognize the same antigen as EmA, from which they differ in terms of detection method.

Anti-endomysium antibodies (EmA) are tested by the indirect immunofluorescence method and directed against “reticulin-like” fibres in connective tissue around smooth muscle fibres in the esophagus, liver, stomach, and bladder of monkeys, in the sections of the jejunum and kidneys of rats and in sections of the human umbilical cord. In comparison, for the determination of anti-tissue transglutaminase IgA and IgG antibodies, ELISA with human extractive or recombinant transglutaminase is recommended.1

EmA‐binding patterns in serum samples from patients with celiac disease have proved to be exclusively TG2‐targeted and the correlation between EmA and TG2 antibodies is therefore good. Evidence shows that celiac autoantibodies are produced in the small‐bowel mucosa.2

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

Sources:
  1. Trigoni E, Tsirogianni A, Pipi E, Mantzaris G, Papasteriades C. Celiac disease in adult patients: specific autoantibodies in the diagnosis, monitoring, and screening. Autoimmune Dis. 2014;2014:623514. doi: 10.1155/2014/623514. []
  2. Salmi TT, Collin P, Korponay-Szabó IR, Laurila K, Partanen J, Huhtala H, Király R, Lorand L, Reunala T, Mäki M, Kaukinen K. Endomysial antibody‐negative coeliac disease: clinical characteristics and intestinal autoantibody deposits.Gut. 2006 Dec;55(12):1746-53. []

Progressive Myoclonic Ataxia 

biliary system primary biliary cirrhosisWhat Is Primary Biliary Cirrhosis?

P rimary biliary cirrhosis (PBC) is a biliary tract disease characterized by chronic cholestasis (build-up of bile) and gradual destruction of bile ducts within the liver, called intrahepatic bile ducts, caused by chronic inflammation.

Primary biliary cirrhosis comes under the umbrella term autoimune liver disease in which the end result is immune-mediated hepatocellular (liver cell) or hepatobiliary (bile duct) injury.1

Q: What is the end result of destruction of bile ducts?

A: The end result of destruction of bile ducts is liver damage.

Injured liver tissue from chronic inflammation and the buildup of bile leads to cirrhosis, a condition in which the liver slowly deteriorates and malfunctions.

Scar tissue replaces healthy liver tissue, partially blocking the flow of blood through the liver. Scarring also impairs the liver’s normal ability to control infections, remove bacteria and toxins from the blood, process nutrients, hormones, and drugs, make proteins that regulate blood clotting, produce bile, and effectively replace its own cells when they become damaged.2

The liver is the largest organ within the body. It 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 (epithelial) 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 and fat-soluble vitamins A, D, E, and K 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 which can then be absorbed into the body.

Bile also carries away waste products produced by normal metabolism and toxic substances that are removed by the liver for eventual elimination in stool. Bile is continually made by the liver from phospholipids, bile acids, cholesterol, and aging blood cells it removes from circulation. As such, bile must continually flow out of the liver to prevent build-up in the liver.

There is no cure for primary biliary cirrhosis.

What Is Primary Biliary Cirrhosis In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Trivedi PJ, Adams DH. Mucosal immunity in liver autoimmunity: a comprehensive review. J Autoimmun. 2013 Oct;46:97-111. doi: 10.1016/j.jaut.2013.06.013. []
  2. http://digestive.niddk.nih.gov/ddiseases/pubs/primarybiliarycirrhosis/ []

Anti-tissue Transglutaminase Antibodies (tTG) Present In Blood

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

What Are Anti-tissue Transglutaminase Antibodies?

Anti-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. [] [] []

Angina Pectoris

What Is Angina Pectoris?Coronary Artery Lesion

Angina pectoris, or simply angina, is a coronary syndrome characterized by an oppressive substernal pain (pain under breastbone) or pressure brought on by exertion and relieved by rest that results from failure of coronary arteries to deliver adequate oxygen to heart tissue due to ischemic heart disease.

Q: Why do coronary arteries fail to deliver adequate oxygen to heart tissue?

A: Coronary arteries are the blood vessels that serve the heart. In angina, these vessels fail to deliver adequate oxygen to heart tissue because they are narrowed or blocked by fatty buildups, called atherosclerotic plaques or by a blood clot which impair their ability to carry adequate blood that carries the oxygen. Diseased coronary arteries cannot deliver adequate oxygenated blood pumped by the heart to its own muscle cells.

The heart is a muscular organ that is working all the time without rest, so it needs a constant supply of oxygen. When heart muscle has to work harder, it needs more oxygen. Lack of oxygen causes pain which makes the affected person stop activity and rest.

Angina can be stable or unstable. Unstable angina is much more serious and can be life-threatening.

  • Stable angina produces predictable pain and responds to rest and/or medication. It is less serious than unstable angina but can be very painful or uncomfortable. Anything that makes the heart muscle need more oxygen can cause an angina attack in someone with heart disease, including: smoking, cold weather, exercise, emotional stress, obesity, and large meals. Other causes of angina include: abnormal heart rhythms (usually ones that cause the heart to beat quickly), anemia, coronary artery spasm, heart failure, heart valve disease, and hyperthyroidism (overactive thyroid).1
  • Unstable angina produces unpredictable pain that may occur at rest, lasting more than 20 minutes. It is more severe than stable angina and less responsive to medication. Atherosclerosis is by far the most common cause of unstable angina. Oxidized low-density lipoprotein, so-called bad cholesterol, and oxysterols play an important role in atherogenesis, the development of atherosclerosis. Coronary arteries that are narrowed by atherosclerotic plaques can rupture causing injury to the coronary blood vessel resulting in blood clotting which blocks the flow of blood to the heart muscle. Blood clots may form, partially dissolve, and later form again and angina can occur each time a clot blocks blood flow in an artery. People with unstable angina are at increased risk of having a heart attack.2

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

Sources:
  1. http://www.ncbi.nlm.nih.gov/pubmedhealth/PMH0001247/ []
  2. http://www.heart.org/HEARTORG/Conditions/HeartAttack/SymptomsDiagnosisofHeartAttack/Unstable-Angina_UCM_437513_Article.jsp# []

Autoimmune Polyglandular Syndromes 

Zincemia low zinc level symptom of celiac disease and glutenWhat Is Zincemia?

Z incemia means the zinc level in blood plasma is too low to meet metabolic needs of the body for this mineral.

Q: How important is a normal blood level of zinc?

A: A low blood level of zinc is characterized by widespread alterations in energy metabolism, growth, hemoglobin, carbon dioxide transport, hormone activity, insulin storage, many enzyme activities, prostaglandin function, collagen production, male fertility, protein synthesis, and vitamin A metabolism.

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

Antiphospholipid Syndrome

Testing Thigh Strength. Courtesy Charlie Goldberg, M.D., UCSD School of Medicine
Testing Thigh Strength. Courtesy Charlie Goldberg, M.D., UCSD School of Medicine

What Is Hypophosphatemia?

H ypophosphatemia means the level of phosphates in the bloodstream is too low to meet metabolic needs of the body for this mineral.

Q: How important is phosphorus in metabolism?

A: Phosphorus is crucial to  life, being present in every cell of the body and constitutes 45% of skeletal bone weight along with 40% calcium needed to support the body as a framework.

A low blood phosphate level is characterized by alterations in blood acid-alkaline balance and serious neuromuscular, hematologic, renal, skeletal, and dental abnormalities.

Symptoms result primarily from decreased production of adenosine triphosphate (ATP), the main energy source in cells, and phosphocreatine, a secondary energy source for muscle contraction.

  • Acute phosphorus deficiency may precipitate rhabdomyolysis which is destruction of muscle.
  • Nervous system dysfunction is observed in severe hypophosphatemia.
  • Chronic phosphorus deficiency causes proximal myopathy (upper arms and thighs).1
  • Severe phosphorus deficiency has widespread and ultimately fatal consequences.

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

Sources:
  1. Takeda E, Ikeda S, Nakahashi O. Lack of phosphorus intake and nutrition. Clin Calcium. 2012 Oct;22(10):1487-91. []

Plummer-Vinson Syndrome Affecting Esophagus

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

Plummer-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. [] []

Arthritis, Enteropathic

Classic Dermatitis Herpetiformis
Classic Dermatitis Herpetiformis

What Are Autoimmune Disorders?

A utoimmune disorders refer to those conditions that involve an abnormal attack on the body’s own tissues perpetuated by the production of autoantibodies directed against self.

Q: What happens when autoantibodies attack the body’s own tissues?

A: This abnormal immune activity by autoantibodies causes inflammation and damage to targeted body tissues.

Dermatitis herpetiformis is a skin manifestation of celiac disease characterized by extremely itchy blisters that commonly erupt on forearms and knees but may appear on the face, scalp or buttocks.

Autoimmune diseases as a group affect approximately 8.5% of people worldwide.

What Are Autoimmune Disorders In Dermatitis Herpetiformis?

Coronary Artery Disease

Image on left shows how atherosclerosis impedes blood flow through coronary arteries while blood clots block blood flow. Courtesy Google.
Figure on right shows how atherosclerosis impedes blood flow through coronary arteries while blood clots block blood flow. Courtesy Google.

What Is Coronary Artery Disease (CAD)?

Coronary artery disease (CAD), also called ischemic heart disease, is a gradual narrowing of medium and large arteries of the heart by fatty buildups, called atherosclerotic plaques.

It is characterized by slowly developing interference with blood flow to heart tissue itself, resulting in oppressive chest pain called angina and, ultimately, thrombosis (clot) causing heart attack.  

The heart is a muscular organ that is working all the time, so it needs a constant supply of oxygen. Oxygen is brought to the working heart tissue by the coronary arteries with each beat of the heart. When heart muscle has to work harder, it needs more oxygen delivered to itself. Lack of oxygen causes pain.

In fact, failure of diseased coronary arteries to deliver adequate oxygen to heart tissue is the most common cause of angina pectoris – substernal pain (under breastbone) or pressure brought on by exertion and relieved by rest. 

Thrombosis, or clot formation, occurs when blood cells within a narrowed artery can no longer get through. Trapped, blood cells pile up and block the artery thus triggering a cascade of events called heart attack. Coronary arteries that are narrowed by atherosclerotic plaques can rupture causing injury to the coronary blood vessel resulting in blood clotting which blocks the flow of blood to the heart muscle. Blood clots may form, partially dissolve, and later form again and angina can occur each time a clot blocks blood flow in an artery.1

Q: How does coronary artery disease develop?

A: Coronary artery disease slowly develops from this combination of events:

  • Dysfunction of epithelial cells that line the inside of arteries cause the vessels to stiffen, and subsequently

  • Accumulation of lipid (fat) in smooth muscle cells beneath the inside lining of arteries and in foam cells cause buildup of fatty deposits on the inside walls progressing to fibrous plaque formation.

Oxidized low-density lipoprotein (oxLDL), so-called bad cholesterol, and oxysterols play important roles in the development of  atherosclerosis. OxLDL triggers the immune system to produce autoantibodies against oxLDL that are detectable in serum. These antibodies are called anti-oxLDL. Anti-oxLDL antibody and oxysterol concentrations are associated with coronary artery stenosis. Oxidative stress may be greatly increased in unstable angina.2 and Chronic inflammation in the general population is a major risk factor for ischemic heart disease.

The pathophysiology of atherosclerosis is, clearly, different in women when compared to the men. The women have a higher risk of blood coagulability making them at high risk for the blood clot formation. In a large number of women endothelial dysfunction, small vessel size and diffuse atherosclerosis have been identified as causes of ischemia without evidence of blockade in the coronary arteries.3

Also, atherosclerotic plaque in women is less fibrotic and contains more lipid filled foam cells, implying greater potential for reversibility but also potentially greater vulnerability for plaque rupture and thrombosis.4

Who is Affected in the General Population?

  • Coronary artery disease remains the leading cause of death in developed countries despite significant progress in primary prevention and treatment strategies.

  • It is the leading cause of death in women, as well as an important cause of disability.

  • Older patients are at particularly high risk of poor outcomes following acute coronary syndrome.5

What Is Coronary Artery Disease In Celiac Disease and/or Gluten Sensitivity?

Ischemic heart disease is the leading cause of death in the United States, making cardiovascular risk assessments and potential interventions or treatments imperative for patients with celiac disease.6

Sources:
  1. http://www.heart.org/HEARTORG/Conditions/HeartAttack/SymptomsDiagnosisofHeartAttack/Unstable-Angina_UCM_437513_Article.jsp# []
  2. Yasunobu Y, Hayashi K, Shingu T, Yamagata T, Kajiyama G, Kambe M. Coronary atherosclerosis and oxidative stress as reflected by autoantibodies against oxidized low-density lipoprotein and oxysterosis. Atherosclerosis. Apr 2001;155(2):445-53. []
  3. Kunadian V, Ford GA, Bawamia B, Qiu W, Manson JE. Vitamin D deficiency and coronary artery disease: A review of the evidence. Am Heart J. 2014 Mar;167(3):283-291. doi: 10.1016/j.ahj.2013.11.012. Epub 2013 Dec 19. []
  4. Kunadian V, Ford GA, Bawamia B, Qiu W, Manson JE. Vitamin D deficiency and coronary artery disease: A review of the evidence. Am Heart J. 2014 Mar;167(3):283-291. doi: 10.1016/j.ahj.2013.11.012. Epub 2013 Dec 19. []
  5. Kunadian V, Ford GA, Bawamia B, Qiu W, Manson JE. Vitamin D deficiency and coronary artery disease: A review of the evidence. Am Heart J. 2014 Mar;167(3):283-291. doi: 10.1016/j.ahj.2013.11.012. []
  6. Robinson BL, Davis SC, Vess J, Lebel, J. Primary care management of celiac disease. Nurse Practitioner. February 2015: Vol 40 – Issue 2; 28–34. []