Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0024523 (malabsorption)
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Intestinal lymphangiectasia is characterized by obstruction of lymph drainage from the small intestine and lacteal dilation that distorts the villus architecture. Lymphatic vessel obstruction and elevated intestinal lymphatic pressure in turn cause lymphatic leakage into the intestinal lumen, thus resulting in malabsorption and protein-losing enteropathy. Intestinal lymphangiectasia can be congenital or secondary to a disease that blocks intestinal lymph drainage. We describe the first case of intestinal lymphangiectasia in a premature infant. The infant presented with peripheral edema and low serum albumin; high fecal concentration of alpha(1)-antitrypsin documented intestinal protein loss. Endoscopy showed white opaque spots on the duodenal mucosa, which indicates dilated lacteal vessels. Histology confirmed dilated lacteals and also showed villus blunting. A formula containing a high concentration of medium chain triglycerides resulted in a rapid clinical improvement and normalization of biochemical variables. These features should alert neonatologists to the possibility of intestinal lymphangiectasia in newborns with hypoalbuminemia and peripheral edema. The intestinal tract should be examined for enteric protein losses if other causes (ie, malnutrition and protein loss from other sites) are excluded. The diagnosis rests on jejunal biopsy demonstrating dilated lymphatic lacteal vessels.
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PMID:A case of protein-losing enteropathy caused by intestinal lymphangiectasia in a preterm infant. 1115 80

Intestinal involvement by endometriotic tissue occurs in up to 37% of patients with endometriosis. The vast majority of patients do not experience symptoms related to the gastrointestinal tract. In particular, the complications of intestinal obstruction and malabsorption secondary to endometriosis are exceedingly uncommon. We present a 42-year-old woman with intestinal obstruction, protein-losing enteropathy, and anasarca secondary to endometriosis. She had a 1-year history of watery diarrhea, bloating, and abdominal pain with a 30-lb weight-loss over 3 months. She had no previous history of endometriosis, and laboratory investigations showed severe hypoalbuminemia, hypokalemia, and metabolic acidosis. Abdominal x-rays revealed air-fluid levels and dilated loops of small bowel. She underwent surgical resection with primary anastomosis. Pathologic evaluation showed extensive endometriosis of the small bowel and appendix, which resulted in complete obstruction. Segments of ileum also demonstrated moderate-to-marked blunting of the villi. Postoperatively, the patient had a slow recovery with resolution of anasarca and a gradual increase in her weight. This report illuminates the rare, yet significant, complications of intestinal endometriosis, including small bowel obstruction, the development of a protein-losing enteropathy, and anasarca. One should consider the possibility of intestinal endometriosis in the differential diagnosis of bowel obstruction in women of childbearing age.
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PMID:Anasarca and small bowel obstruction secondary to endometriosis. 1120 57

Nongranulomatous chronic idiopathic enterocolitis is characterized by sudden onset of severe watery diarrhea, malabsorption, exudative enteropathy, frequent appearance of shallow ulcerations, and variable degrees of villus atrophy. In the absence of infectious and pharmacologic causes, the presence of a predominantly acute inflammatory infiltrate limited to the lamina propria establishes the diagnosis. No underlying disease appears during prolonged follow-up. The etiology remains unknown. The disease is generally corticosteroid-responsive; low-dose maintenance therapy is frequently required. The long-term prognosis is guarded. Three of 11 patients died of opportunistic infections or resistance to therapy.
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PMID:Nongranulomatous chronic idiopathic enterocolitis: a primary histologically defined disease. 1121 20

Intestinal lymphangiectasia, which can be classified as primary or secondary, is an unusual cause of protein-losing enteropathy. The main clinical features include edema, fat malabsorption, lymphopenia and hypoalbuminemia. Clinical management generally includes a low-fat diet and supplementation with medium chain triglycerides. A small number of recent reports advocate the use of octreotide in intestinal lymphangiectasia. It is unclear why octreotide was used in these studies; although octreotide can alter splanchnic blood flow and intestinal motility, its actions on lymphatic function has never been investigated. A case of a patient with intestinal lymphangiectasia who required a shunt procedure after failing medium chain triglycerides and octreotide therapy is presented. During the management of this case, all existing literature on intestinal lymphangiectasia and all the known actions of octreotide were reviewed. Because some of the case reports suggested that octreotide may improve the clinical course of intestinal lymphangiectasia by altering lymphatic function, a series of experiments were undertaken to assess this. In an established guinea pig model, the role of octreotide in lymphatic function was examined. In this model system, the mesenteric lymphatic vessels responded to 5-hydroxytryptamine with a decrease in constriction frequency, while histamine administration markedly increased lymphatic constriction frequency. Octreotide failed to produce any change in lymphatic function when a wide range of concentrations were applied to the mesenteric lymphatic vessel preparation. In conclusion, in this case, octreotide failed to induce a clinical response and laboratory studies showed that octreotide did not alter lymphatic function. Thus, the mechanisms by which octreotide induced clinical responses in the cases reported elsewhere in the literature remain unclear, but the present study suggests that it does not appear to act via increasing lymphatic pumping.
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PMID:Octreotide in intestinal lymphangiectasia: lack of a clinical response and failure to alter lymphatic function in a guinea pig model. 1556 9

Nutrition plays an important role in the pathogenesis, treatment, and morbidity of Crohn disease. Approximately two thirds to three fourths of hospitalized patients with active disease and one fourth of outpatients with Crohn disease are malnourished. Malnutrition, which can be present even when Crohn disease is in remission, can affect growth, cellular and humoral immunity, bone density, and wound healing. Decreased nutrient intake, malabsorption, drug-nutrient interactions, anorexia, and protein-losing enteropathy can all contribute to the protein-calorie malnutrition and other specific nutrient deficiencies seen in Crohn disease. Therefore, by preventing and correcting nutrient deficiencies, nutritional therapy is an important component in the overall management of patients with Crohn disease.
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PMID:Nutrition in Crohn disease. 1570 56

Because of the wide variations in the clinical presentation of celiac disease and because treatment exists that is effective in most cases, screening of the general population for celiac disease has been considered. There is still no evidence that patients who have symptom-free celiac disease are at increased risk of small intestinal lymphoma or other complications. Prevention of osteoporosis seems to be the strongest indicator for widespread screening today [22]. The major cause of failure to respond to a gluten-free diet is continuing ingestion of gluten, but other underlying diseases must be considered. Many different drugs (eg, anti-tumor necrosis factor [TNF]-alpha) have been used in patients who have RCD [23]. Steroid treatment has been reported to be effective even in patients who have underlying early EATL. Histologic recovery in patients who have celiac disease usually takes several months but can take up to 1 year, even if the patient remains on a strict gluten-free diet. Some patients report celiac-related symptoms for months after a single gluten intake. The definitions for RCD in literature vary. The authors consider the definition give by Daum and colleagues [24] suitable. They defined true RCD as villous atrophy with crypt hyperplasia and increased IELs persisting for more than 12 months in spite of a strict gluten-free diet. If a patient is not responding well to a gluten-free diet, three considerations are necessary: (1) the initial diagnosis of celiac disease must be reassessed;(2) the patient should be sent to a dietician to check for errors in diet or compliance problems, because problems with the gluten-free diet are the most important cause for persisting symptoms; (3) other reasons for persisting symptoms (eg, pancreatic insufficiency, irritable bowel syndrome, bacterial overgrowth, lymphocytic colitis, collagenous colitis, ulcerative jejunitis, protein-losing enteropathy,T-cell lymphoma, fructose intolerance, cavitating lymphadenopathy, and tropical sprue) should be considered. Other causes for villous atrophy are Crohn's disease, collagenous sprue, and autoimmune enteropathy. Abdulkarim and colleagues [25] examined 55 patients who had a diagnosis of nonresponsive celiac disease. He found that 6 did not have celiac disease, and25 still had some gluten ingestion.Tursi and colleagues [26] reported 15 patients who had celiac disease with persisting symptoms. Because histology improved in all patients after several months, RCD was excluded. Of the 15 patients, 10 had small intestinal bacterial overgrowth, 2 showed lactose malabsorption causing the described symptoms, 1 had mistakenly taken an antibiotic containing gluten, and 1 patient each had Giardia lamblia and Ascaris lumbricoides. Thus, other entities must be considered in patients who have celiac disease and ongoing symptoms. In a follow-up clinical trial, 158 patients who had celiac disease underwent follow-up small intestine biopsies within 2 years after starting a gluten-free diet. Eleven patients (7.0%) with persisting (partial) villous atrophy were considered to have RCD; 5 of them developed EATL [27].RCD type I is characterized by normal expression of T-cell antigens and polyclonal TCR gene rearrangement.RCD type II is characterized by an abnormal IEL phenotype with the expression of intracytoplasmic CD3e, surface CD103, and the lack of classic surface T-cell markers such as CD8, CD4, and TCR-alpha/beta. This clonal IEL population can be considered crypt IEL [24]. RCD II has a poor prognosis, which is a problem for therapy. Clonal TCR gene rearrangements and loss of T-cell antigens such as CD8 and TCR-beta in IELs may indicate the development of an EATL in patients who have RCD. The markers for an overt EATL are a positive stool blood test, increased lactate dehydrogenase, or beta2-microglobulin [24]. If an overt lymphoma is suspected, upper and lower endoscopy, an ear, nose, and throat work-up, CT scan, capsule endoscopy, and possibly double-balloon enteroscopy should be performed. Most reports of the difficulties in treating patients who have true RCE are casereports. Turner and colleagues [28] reported on an induction of remission by useof the anti-TNF-alpha antibody infliximab and maintenance with prednisoloneand azathioprine. Olaussen and colleagues [29] and Mandal and colleagues [30]tried a nonimmunogenic elemental diet. Gillet and colleagues [31] reported successful treatment of a patient who hadRCD using anti-TNF-alpha antibodies (infliximab) for induction and azathioprinefor maintenance. Maurino and colleagues [32] studied seven consecutive patients diagnosed ashaving refractory sprue and no response to oral or parenteral steroids. Aftertreatment with azathioprine (2 mg/kg/d) and oral prednisone (1 mg/kg/d), fivepatients had a complete clinical remission. Two patients who did not respond totreatment at any time died. Goerres and colleagues [33] described 18 patients who had RCD, 10 of whomhad type I RCD, and 8 of whom had type II RCD. Treatment consisted ofazathioprine combined with prednisone for 1 year. Consistent with reports byother investigators, the response rates in the two groups differed. Eight of the10 patients who had type I RCD had a histologic response. Seven of the eightpatients who had type II RCD died, and six of the eight developed a lymphoma. At present there is no effective treatment for type II RCD.Fig. 3 presents a proposed algorithm for monitoring patients who have ce-liac disease.
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PMID:Monitoring nonresponsive patients who have celiac disease. 1687 29

Malabsorption is an important clinical problem both in visitors to the tropics and in native residents of tropical countries. Infections of the small intestine are the most important cause of tropical malabsorption. Protozoal infections cause malabsorption in immunocompetent hosts, but do so more commonly in the setting of immune deficiency. Helminth infections occasionally cause malabsorption or protein-losing enteropathy. Intestinal tuberculosis, chronic pancreatitis and small-bowel bacterial overgrowth are important causes of tropical malabsorption. In recent years, inflammatory bowel disease and coeliac disease have become major causes of malabsorption in the tropics. Sporadic tropical sprue is still an important cause of malabsorption in adults and in children in South Asia. Investigations to exclude specific infective, immunological or inflammatory causes are important before considering tropical sprue as a diagnosis. This article briefly reviews the management of tropical sprue and presents an algorithm for its investigation and management.
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PMID:Tropical malabsorption. 1714 98

Primary intestinal lymphangiectasis (PIL), also known as Waldmann's disease, is a rare protein-losing enteropathy characterized by abnormal enlargement of the lymphatic ducts in the bowel wall. The symptoms usually start in early infancy. We report a case of osteomalacia in a 63-year-old patient with delayed-onset of PIL, for which she was on dietary treatment. She presented with a 3-year history of mechanical pain in the back and pelvis. Mild ascites and edema with functional impairment of the lower limbs were noted. The neurological evaluation was normal. Blood tests showed hypocalcemia, hypophosphatemia, alkaline phosphatase elevation, and evidence of intestinal malabsorption. Radiographs of the pelvis disclosed a fracture, Looser's zones in the iliopubic rami and left femoral neck, and a washed-out appearance of the vertebras. Dual-energy X-ray absorptiometry showed bone loss with T-score values of -1.2SD at the lumbar spine and -2.5SD at the femoral necks. A diagnosis of osteomalacia related to vitamin D deficiency was given. Serum 25-OH-vitamin D was 18.2ng/ml (normal, 20-40ng/ml) and serum parathyroid hormone was 620pg/ml (normal, 15-65pg/ml), suggesting secondary hyperparathyroidism. Intramuscular vitamin D was given, together with oral calcium and an adequate diet. At follow-up 8 months later, small improvements were noted in the symptoms and absorptiometry findings.
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PMID:Osteomalacia in a patient with primary intestinal lymphangiectasis (Waldmann's disease). 1790 Sep 62

Primary intestinal lymphangiectasia (PIL) is a rare disorder characterized by dilated intestinal lacteals resulting in lymph leakage into the small bowel lumen and responsible for protein-losing enteropathy leading to lymphopenia, hypoalbuminemia and hypogammaglobulinemia. PIL is generally diagnosed before 3 years of age but may be diagnosed in older patients. Prevalence is unknown. The main symptom is predominantly bilateral lower limb edema. Edema may be moderate to severe with anasarca and includes pleural effusion, pericarditis or chylous ascites. Fatigue, abdominal pain, weight loss, inability to gain weight, moderate diarrhea or fat-soluble vitamin deficiencies due to malabsorption may also be present. In some patients, limb lymphedema is associated with PIL and is difficult to distinguish lymphedema from edema. Exsudative enteropathy is confirmed by the elevated 24-h stool alpha1-antitrypsin clearance. Etiology remains unknown. Very rare familial cases of PIL have been reported. Diagnosis is confirmed by endoscopic observation of intestinal lymphangiectasia with the corresponding histology of intestinal biopsy specimens. Videocapsule endoscopy may be useful when endoscopic findings are not contributive. Differential diagnosis includes constrictive pericarditis, intestinal lymphoma, Whipple's disease, Crohn's disease, intestinal tuberculosis, sarcoidosis or systemic sclerosis. Several B-cell lymphomas confined to the gastrointestinal tract (stomach, jejunum, midgut, ileum) or with extra-intestinal localizations were reported in PIL patients. A low-fat diet associated with medium-chain triglyceride supplementation is the cornerstone of PIL medical management. The absence of fat in the diet prevents chyle engorgement of the intestinal lymphatic vessels thereby preventing their rupture with its ensuing lymph loss. Medium-chain triglycerides are absorbed directly into the portal venous circulation and avoid lacteal overloading. Other inconsistently effective treatments have been proposed for PIL patients, such as antiplasmin, octreotide or corticosteroids. Surgical small-bowel resection is useful in the rare cases with segmental and localized intestinal lymphangiectasia. The need for dietary control appears to be permanent, because clinical and biochemical findings reappear after low-fat diet withdrawal. PIL outcome may be severe even life-threatening when malignant complications or serous effusion(s) occur.
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PMID:Primary intestinal lymphangiectasia (Waldmann's disease). 1829 65

The gastrointestinal tract possesses a huge epithelial surface area and performs many different tasks. Amongst them are the digestive and absorptive functions. Disorders of intestinal absorption and secretion comprise a variety of different diseases, e.g. coeliac disease, lactase deficiency or Whipple's disease. In principle, impaired small intestinal function can occur with or without morphological alterations of the intestinal mucosa. Therefore, in the work up of a malabsorptive syndrome an early small intestinal biopsy is encouraged in conjunction with breath tests and stool analysis to guide further management. In addition, there is an array of functional tests, the clinical availability of which becomes more and more limited. In any case, early diagnosis of the underlying pathophysiology is most important, in order to initiate proper therapy. In this chapter, diagnostic procedure of malabsorption is discussed with special attention to specific disease like coeliac disease, Whipple's disease, giardiasis and short bowel syndrome. Furthermore, bacterial overgrowth, carbohydrate malabsorption and specific nutrient malabsorption (e.g. for iron or vitamins) and protein-losing enteropathy are presented with obligatory and optional tests as used in the clinical setting.
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PMID:Disorders of intestinal secretion and absorption. 1950 67


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