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Lactose Intolerance

Lactose IntoleranceWhat Is Lactose Intolerance?

Lactose intolerance is a well known symptom of carbohydrate malabsorption characterized by inability to properly digest lactose, the sugar in milk, due to low lactase digesting activity in the small intestine.

Lactase is an enzyme produced by specialized cells in the tips of villi within the brush border of the small intestinal lining that digests lactose.

Lactose is a disaccharide, or double sugar, made up of a molecule of glucose and a molecule of galactose (simple sugars). Lactose cannot be absorbed as is into the body unless it is broken down by lactase into glucose and galactose.

Q: How does lactose cause diarrhea?

A: If lactose is not broken down, undigested lactose moves into the colon where it acts osmotically to draw water from the walls of the colon into the lumen, which causes diarrhea by the unnatural amount of water. How much water? Can be 2 liters! Meanwhile, the normal population of colonic bacteria ferment the undigested lactose, generating short-chain fatty acids and hydrogen gas, resulting in bloating pain and flatulence.

Testing for intolerance is based on the action of lactose to increase intestinal permeability.1 Positive response to a breath hydrogen test (BHT), involving 1 – 3 hours of time post ingestion of lactose test dose, signifies malabsorption in the small intestine and fermentation in the colon. If BHT is positive before 60 minutes, the result implies bacteria is abnormally present in the small intestine, causing fermentation there.

Endoscopy is used to measure activity of lactase in a tissue sample.

Treatment is avoidance of milk and dairy products that contain lactose. Nevertheless, milk treated with lactase enzyme can be safely consumed. Fermented milk products like yogurt or kefir are safe because the lactose has been digested by organisms. If there is also a problem with milk protein, then no milk is acceptable that comes from the cow or animal that is causing the allergy.

What Is Lactose Intolerance In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Farhadi A, Banan A, Fields J, Keshavarzian A. Intestinal barrier: an interface between health and disease. Journal of Gastroenterology and Hepatology. 2003;18:479-91. []

Edema of the Small Intestine

Intestinal Edema in an 11 Month Old Baby. Courtesy: Nature.com
Intestinal Edema of Duodenum in an 11 Month Old Baby. Courtesy: Nature.com

What Is Small Intestinal Edema?

Small intestinal edema is characterized by fluid accumulation within the intestinal mucosa so that the intestinal wall appears thick and swollen.

Intestinal edema hampers peristalsis that can result in pain and gas build-up. Peristalsis is the normal rhythmic muscular wave-like action that moves residue along the gastrointestinal tract.

Q: What part of the small intestinal lining is swollen?

A: Any part of the small intestine may be affected. Some causes of edema include allergic reactions, enteropathies such as celiac disease, cow milk enteropthy, yeast infection, parasite infection, inflammatory bowel disease such as Crohn’s disease, and certain medications.

For example, the anti-hypertensive drugs known as Angiotension Converting Enzyme (ACE) inhibitors can cause intestinal angioedema and therefore the patient may present with gastrointestinal complaints.1

What Is Small Intestinal Edema In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. LoCascio E J,  Mahler  S A, and  Arnold TC. Intestinal Angioedema Misdiagnosed as Recurrent Episodes of Gastroenteritis. West J Emerg Med. Sep 2010; 11(4): 391–394. []

Primary Sclerosing Cholangitis 

A 3D Image From Magnetic Resonace Cholangiography. NIHMS
A 3D Image From Magnetic Resonace Cholangiography showing biliary tree. NIHMS

What Is Primary Sclerosing Cholangitis?

Primary sclerosing cholangitis (PSC) is an uncommon, slowly progressive bile duct disease that results in stagnation or build-up of bile in the liver, called cholestasis.

Primary sclerosing cholangitis is characterized by sclerosis, or scarring inflammation in bile ducts both within the liver (intra-hepatic ducts), and outside the liver (extra-hepatic ducts), causing progressive narrowing and, eventually, obliteration of the bile ducts.

Primary sclerosing cholangitis 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 happens when scarred bile ducts can no longer transport bile out of the liver?

A: Bile that cannot be removed from the liver by the biliary duct system backs up and damages the liver, causing cirrhosis.

Bile is continually made by the liver from phospholipids salt, cholesterol, and aging blood cells that it removes from circulation to be carried out of the liver. 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 is a greenish brown liquid made by the liver. Bile ducts carry it 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.

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. 

Build-up of bile in the liver is the end result of the inflammatory process in primary sclerosing cholangitis, that by swelling and scarring of bile ducts impedes and eventually prevents bile flow out of the liver, leading to liver failure. There is no curative treatment available for primary sclerosing cholangitis, besides liver transplantation.2

The appearance of the intrahepatic and extrahepatic biliary ducts can be assessed by use of cholangiography, and magnetic resonance (MR) imaging is the best way to identify patients.  See image above.3

MR cholangiography offers a noninvasive method of obtaining images of the biliary system without the use of a contrast agent. There is no radiation exposure. Pulse sequences can be chosen to obtain bright bile or black bile cholangiograms. Image processing algorithms can be selected to obtain a three-dimensional representation of biliary anatomy and pathology, and those images can be rotated in any plane so that ductal anatomy and pathology can be seen to best advantage.4

There is no cure for primary sclerosing cholangitis but there are symptom treatments one of which is supplementation for low levels of vitamins A,D,E, and K. Liver transplant is the only effective option.

What Is Primary Sclerosing Cholangitis 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. Kummen M, Schrumpf E, Boberg KM. Liver abnormalities in bowel diseases. Best Pract Res Clin Gastroenterol. 2013 Aug;27(4):531-42. doi: 10.1016/j.bpg.2013.06.013. []
  3. Eaton JE, Talwalkar JA, Lazaridis KN, Gores GJ, Lindor KD. Pathogenesis of primary sclerosing cholangitis and advances in diagnosis and management. Gastroenterology. 2013 Sep;145(3):521-36. doi: 10.1053/j.gastro.2013.06.052. Epub 2013 Jul 1. []
  4. Meakem TJ 3rd, Schnall MD. Magnetic resonance cholangiography. Gastroenterol Clin North Am. 1995 Jun;24(2):221-38. []

Abdominal Distention, Chronic  (Bloating)

chronic abdominal distention celiac disease gluten symptomWhat Is Chronic Abdominal Distention?

Abdominal distention, or bloating, is characterized by enlargement in normal size of abdomen not due to fatty tissue.

Q: Why does the abdomen enlarge?

A: The abdomen enlarges because the bowel is dysfunctional. Loops of bowel usually lack normal peristalsis (rhythmic wave-like muscle movement) trapping gas in stagnant loops of bowel, inflammation swells loops of bowel also trapping gas, and dysbiosis overproduces gas. All these factors distend the abdomen.

What Is Chronic Abdominal Distention In Celiac Disease and/or Gluten Sensitivity?

Abdominal Pain, Chronic or Recurrent

What Is Chronic Or Recurrent Abdominal Pain? Abdominal pain is characterized by pain anywhere in the abdominal cavity between the chest and groin. This region is often referred to as the belly. Abdominal pain, or… 

Macroamylasemia

Depiction of pancreatic amylase molecule.
Depiction of pancreatic amylase molecule.

What Is Macroamylasemia?

Macroamylasemia is an acquired enzyme disorder that causes elevated levels of the enzyme amylase (hyperamylasaemia) in the bloodstream. It is characterized by altered amylase molecules that have become abnormally bound with plasma proteins in the bloodstream, commonly IgG (immunoglobulin G) and/or IgA (immunoglobulin A).

The resulting molecule is too large to be properly filtered by the kidneys and excreted in the urine as would be normal unbound amylase, causing sustained elevation of amylase levels in the plasma.

With normal kidney function, a hyperamylasemia without an increase in urine amylase suggests the diagnosis of macroamylasemia, and is confirmed by identifying the macromolecular components.1

Amylase is a an enzyme produced by the pancreas and the parotid glands to digest starch in the diet. Comparatively small amounts are also produced by other organs.

Q: How do the pancreas and parotid glands deliver their amylase for digestion of starch?

A: The parotid glands deliver their amylase into the mouth. The action of amylase in the mouth starts the breakdown of starch as it is chewed and moistened with saliva.

After the starchy food is liquified in the stomach, the mass empties into the duodenum. Here pancreatic amylase is delivered through the common bile duct into the duodenum where it turns starch into maltose sugar. The next step to final digestion of starch is carried out by enzymes in the small intestinal lining that split maltose into its component sugar which is glucose.

Glucose is a simple sugar that can be absorbed into the bloodstream for use in the body. Humans cannot live without adequate glucose.

Distinquishing macroamylasemia from hyperamylasemia due to pancreatic disease is necessary to prevent needless treatment and investigation for pancreatitis.2

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

Sources:
  1. Torrent Vernetta A, Segarra Cantón O, Soler Palacín P, Segura Cardona RM, Infante Pina D. Macroamylasaemia in paediatrics. An Pediatr (Barc). 2008 Nov;69(5):439-41. []
  2. Isham CA, Ridgeway NA, Hedrick R, Cate JC 4th. Screening for macroamylase in a community hospital. Clin Chem. 1984 May;30(5):741-2. []

Hypophosphatemia (Low Phosphate Blood Level)

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?

Hypophosphatemia 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. []

Carbohydrate Malabsorption

What Is Carbohydrate Malabsorption? Carbohydrate malabsorption is a digestive disorder characterized by the inability to properly digest and absorb carbohydrates within the small intestine to supply needed energy to the body. Q: What carbohydrates should be normally… 

Diarrhea, Acute

Infant with Acute Diarrhea and Swollen Belly - Hallmarks of Celiac Disease.
Malnourished Infant With Acute Diarrhea and Swollen Belly.

What Is Acute Diarrhea?

Acute diarrhea is a small intestinal motility disorder characterized by excessively rapid movement of intestinal contents through the small intestine with excessive loss of fluid and electrolytes that leads rapidly to a life threatening hypokalemia (low potassium blood level) and acidosis.

Q: What is hypokalemia?

A: Hypokalemia is characterized by dehydration that may result in vascular collapse, muscular malfunction that may result in paralytic ileus (bowels do not move), paralysis (cannot stand), and respiratory hypoventilation (shallow breathing) or failure, metabolic acidosis resulting from diarrhea, and impaired nerve conduction.1

While diarrhea may be a common symptom of small bowel mucosal disease, the consequent malabsorption can lead to substantial malnutrition and nutrient deficiencies. The small intestine, unlike the colon, has been relatively inaccessible, and systematic evaluation is often necessary to identify and treat small intestinal mucosal diseases that lead to diarrhea. All patients with severe diarrhea or diarrhea associated with features suggestive of malabsorption may have a disease of the small intestinal mucosa that requires careful evaluation and targeted management.2

What Is Acute Diarrhea 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. Murray JA1, Rubio-Tapia A. Diarrhoea due to small bowel diseases. Best Pract Res Clin Gastroenterol. 2012 Oct;26(5):581-600. doi: 10.1016/j.bpg.2012.11.013. []

Erosions in the Second Part of the Duodenum

What Are Erosions In The Second Part Of The Duodenum?

Erosions in the second part of the duodenum typically are superficial excoriations (sores) in the mucosal lining that do not penetrate into the muscle layer as does an ulcer.

Of note, most erosions develop in the first part of the duodenum rather than the second part.

Q: Are duodenal erosions serious?

A: Yes duodenal erosions are serious and can be life-threatening for the following reasons:

  • Duodenal erosions may occur together with gastric erosions, therefore they can jointly induce massive bleeding.
  • Duodenal erosions may be associated with duodenal ulcer but hemorrhage originates from the erosion and the ulcer itself does not bleed.
  • Duodenal erosion in itself might induce bleeding. The intensity of bleeding, if there is no hemorrhage from other places, is not so severe, as the one originating from gastric erosions.1

What Are Erosions In The Second Part Of The Duodenum In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Preisich P, Farkas I, Konyár EJ. The role of duodenal erosions in the occurrence of upper gastrointestinal haemorrhage. Scand J Gastroenterol Suppl. 1989;167:36-8. []