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Factors Affecting Methane Production in Humans. Gastrointestinal Diseases and Alterations of Colonic Flora

Overview
Journal Dig Dis Sci
Specialty Gastroenterology
Date 1987 Mar 1
PMID 3816480
Citations 28
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Abstract

Breath methane was studied in 394 subjects. Among 152 controls, 50.0% produced methane--42.1% of males and 57.9% of females. One hundred sixteen patients with gastrointestinal diseases were studied. Among 32 with Crohn's disease, only 2 (6.1%) produced methane, as well as 16 of 51 ulcerative colitis patients (31.4%) and 11 of 32 patients with the irritable bowel syndrome (34.4%). Breath methane is thus unusual in Crohn's disease. After bowel cleansing for colonoscopy or surgery, 15 of 18 methane producers became nonproducers, whereas after antibiotic treatment, 24 of 30 producers sustained their methane-producing status. After gentamycin and cephazolin therapy, methane production was abolished in three of eight patients. Slight spontaneous variations in methane production were also noticed with two of 23 control subjects, becoming nonproducers on restudy after 10-25 months. Thus gastrointestinal diseases, bowel cleansing and, to a much lesser degree, antibiotic therapy, affect methane production.

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References
1.
Gilat T, Ben Hur H, Terdiman R, Peled Y . Alterations of the colonic flora and their effect on the hydrogen breath test. Gut. 1978; 19(7):602-5. PMC: 1412075. DOI: 10.1136/gut.19.7.602. View

2.
Miller T, Wolin M . Enumeration of Methanobrevibacter smithii in human feces. Arch Microbiol. 1982; 131(1):14-8. DOI: 10.1007/BF00451492. View

3.
Pitt P, de Bruijn K, Beeching M, Goldberg E, Blendis L . Studies on breath methane: the effect of ethnic origins and lactulose. Gut. 1980; 21(11):951-4. PMC: 1419292. DOI: 10.1136/gut.21.11.951. View

4.
Bjorneklett A, JENSSEN E . Relationships between hydrogen (H2) and methane (CH4) production in man. Scand J Gastroenterol. 1982; 17(8):985-92. View

5.
McKay L, Brydon W, Eastwood M, Smith J . The influence of pentose on breath methane. Am J Clin Nutr. 1981; 34(12):2728-33. DOI: 10.1093/ajcn/34.12.2728. View