Information on all the types of lymphangiectasia, including intestinal, pulmonary, renal, cutaneous (skin). Sponsored by Pat O'Connor

Saturday, November 10, 2012

Intestinal lymphangiectasia in adults.


Intestinal lymphangiectasia in adults.


Feb 2011

Source

Hugh James Freeman, Department of Medicine (Gastroenterology), University of British Columbia, Vancouver, BC, V6T 1W5, Canada.

Abstract


Intestinal lymphangiectasia in the adult may be characterized as a disorder with dilated intestinal lacteals causing loss of lymph into the lumen of the small intestine and resultant hypoproteinemia, hypogammaglobulinemia, hypoalbuminemia and reduced number of circulating lymphocytes or lymphopenia. Most often, intestinal lymphangiectasia has been recorded in children, often in neonates, usually with other congenital abnormalities but initial definition in adults including the elderly has become increasingly more common. 

Shared clinical features with the pediatric population such as bilateral lower limb edema, sometimes with lymphedema, pleural effusion and chylous ascites may occur but these reflect the severe end of the clinical spectrum. In some, diarrhea occurs with steatorrhea along with increased fecal loss of protein, reflected in increased fecal alpha-1-antitrypsin levels, while others may present with iron deficiency anemia, sometimes associated with occult small intestinal bleeding. Most lymphangiectasia in adults detected in recent years, however, appears to have few or no clinical features of malabsorption. Diagnosis remains dependent on endoscopic changes confirmed by small bowel biopsy showing histological evidence of intestinal lymphangiectasia. In some, video capsule endoscopy and enteroscopy have revealed more extensive changes along the length of the small intestine. 

A critical diagnostic element in adults with lymphangiectasia is the exclusion of entities (e.g. malignancies including lymphoma) that might lead to obstruction of the lymphatic system and "secondary" changes in the small bowel biopsy. In addition, occult infectious (e.g. Whipple's disease from Tropheryma whipplei) or inflammatory disorders (e.g. Crohn's disease) may also present with profound changes in intestinal permeability and protein-losing enteropathy that also require exclusion. Conversely, rare B-cell type lymphomas have also been described even decades following initial diagnosis of intestinal lymphangiectasia. 

Treatment has been historically defined to include a low fat diet with medium-chain triglyceride supplementation that leads to portal venous rather than lacteal uptake. A number of other pharmacological measures have been reported or proposed but these are largely anecdotal. Finally, rare reports of localized surgical resection of involved areas of small intestine have been described but follow-up in these cases is often limited.

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Friday, October 26, 2012

Duodenal endoscopic findings and histopathologic confirmation of intestinal lymphangiectasia in dogs.

Duodenal endoscopic findings and histopathologic confirmation of intestinal lymphangiectasia in dogs.

Sept 2012

Source

Department of Medical Sciences, University of Wisconsin-Madison, School of Veterinary Medicine, Madison, WI.

Abstract


BACKGROUND:

The diagnosis of intestinal lymphangiectasia (IL) has been associated with characteristic duodenal mucosal changes. However, the sensitivity and specificity of the endoscopic duodenal mucosal appearance for the diagnosis of IL are not reported.

HYPOTHESIS/OBJECTIVES:

To evaluate the utility of endoscopic images of the duodenum for diagnosis of IL. Endoscopic appearance of the duodenal mucosal might predict histopathologic diagnosis of IL with a high degree of sensitivity and specificity.

ANIMALS:

51 dogs that underwent upper gastrointestinal (GI) endoscopy and endoscopic biopsies.

METHODS:

Retrospective review of images acquired during endoscopy. Dogs were included if adequate biopsies were obtained during upper GI endoscopy and digital images were saved during the procedure. Images were assessed for the presence and severity of IL. Using histopathology as the gold standard, the sensitivity and specificity of endoscopy for diagnosing IL were calculated.

RESULTS:

Intestinal lymphangiectasia (IL) was diagnosed in 25/51 dogs. Gross endoscopic appearance of the duodenal mucosa had a sensitivity and specificity (95% confidence interval) of 68% (46%, 84%) and 42% (24%, 63%), respectively for diagnosis of IL. Endoscopic images in cases with lymphopenia, hypocholesterolemia, and hypoalbuminemia had a sensitivity of 80%.

CONCLUSIONS AND CLINICAL IMPORTANCE:


Endoscopic odenal mucosa appearance alone lacks specificity and has only a moderate sensitivity for diagnosis of IL. Evaluation of biomarkers associated with PLE improved the sensitivity; however, poor specificity for diagnosis of IL supports the need for histopathologic confirmation.

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Sunday, February 12, 2012

Primary intestinal lymphangiectasia diagnosed by capsule endoscopy and double balloon enteroscopy.

Primary intestinal lymphangiectasia diagnosed by capsule endoscopy and double balloon enteroscopy.


Nov 2011

Source

Tak Geun Oh, Joo Won Chung, Hee Man Kim, Jung Yeob Park, Si Young Song, Division of Gastroenterology, Department of Internal Medicine, Yonsei Institute of Gastroenterology, Yonsei University College of Medicine, Seoul 120-752, South Korea.

Abstract


Primary intestinal lymphangiectasia (PIL) is a rare disorder characterized by dilated intestinal lymphatics and the development of protein-losing enteropathy. Patients with PIL develop hypoalbuminemia, hypocalcemia, lymphopenia and hypogammaglobulinemia, and present with bilateral lower limb edema, fatigue, abdominal pain and diarrhea. Endoscopy reveals diffusely elongated, circumferential and polypoid mucosae covered with whitish enlarged villi, all of which indicate intestinal lymphangiectasia. Diagnosis is confirmed by characteristic tissue pathology, which includes dilated intestinal lymphatics with diffusely swollen mucosa and enlarged villi. The prevalence of PIL has increased since the introduction of capsule endoscopy. The etiology and prevalence of PIL remain unknown. Some studies have reported that several genes and regulatory molecules for lymphangiogenesis are related to PIL. We report the case of a patient with PIL involving the entire small bowel that was confirmed by capsule endoscopy and double-balloon enteroscopy-guided tissue pathology who carried a deletion on chromosome 4q25. The relationship between this deletion on chromosome 4 and PIL remains to be investigated.


PubMedCentral

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Saturday, June 02, 2007

Primary gastrointestinal lymphangiectasia presenting as cryptococcal meningitis.

Primary gastrointestinal lymphangiectasia presenting as cryptococcal meningitis.
Ann Allergy Asthma Immunol. 2007 May

Cole SL, Ledford DK, Lockey RF, Daas A, Kooper J.
Department of Medicine, Division of Allergy and Immunology, University of South Florida College of Medicine, James A. Haley Veterans' Hospital, Tampa, Florida 33612, USA.
scole@health.usf.edu

BACKGROUND: Opportunistic infections commonly occur in immunocompromised patients; however, it is unusual for an adult to present with a combined cellular and humoral immunodeficiency. Cryptococcal meningitis is a fatal condition if untreated and is usually found in patients with cellular immunodeficiency.

OBJECTIVE: To report the case of an adult patient with cryptococcal meningitis secondary to intestinal lymphangiectasia.

METHODS: A 59-year-old man was admitted to the hospital for disseminated cryptococcal meningitis and osteomyelitis. Laboratory evaluation, computed tomography, esophagogastroduodenoscopy, and biopsy were performed.

RESULTS: Laboratory evaluation revealed a lymphopenia, hypoalbuminemia, hypogammaglobulinemia, and negative human immunodeficiency virus test results by enzyme-linked immunosorbent assay and polymerase chain reaction. The complete blood cell count, urinalysis, serum and urine protein electrophoresis, and functional antibody responses to protein and polysaccharide antigens were normal. Results of computed tomography of the chest, abdomen, and pelvis were unremarkable. Multiple lymphangiectasias were visualized with esophagogastroduodenoscopy and confirmed by biopsy. The patient was treated with intravenous amphotericin B and flucytosine, and the meningitis resolved.

CONCLUSIONS: Based on a computerized search of the medical literature, this is the first description of cryptococcal meningitis secondary to intestinal lymphangiectasias. The combination of lymphopenia, hypogammaglobulinemia, and hypoalbuminemia should alert the clinician to the possibility of intestinal lymphangiectasias and the potential for immune dysfunction.

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