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硫化氢与结肠上皮代谢:对溃疡性结肠炎的影响

Hydrogen sulfide and colonic epithelial metabolism: implications for ulcerative colitis.

作者信息

Jørgensen J, Mortensen P B

机构信息

Department of Medicine, Copenhagen University Hospital, The Rigshospital, Denmark.

出版信息

Dig Dis Sci. 2001 Aug;46(8):1722-32. doi: 10.1023/a:1010661706385.

Abstract

Hydrogen sulfide (HS-) impairs the oxidation of butyrate in colonocytes and is found in excess in feces of patients with ulcerative colitis. The possible pathogenic role of HS- in ulcerative colitis was further investigated. To investigate the metabolic effect of free and bound fecal HS-, isolated rat colonocytes were incubated in the presence of butyrate without and with the addition of (1) HS- in water, (2) sterile filtrates of fecal homogenates supplemented and incubated with HS- and known sources of fecal HS- production, and (3) HS- incubated with fecal agents known to bind HS-. Oxidation rates were obtained by quantifying the production of CO2. Total and free HS-, as well as the fecal ability to bind HS-, were determined in health and ulcerative colitis. Compared to the production of CO2 by colonocytes incubated with 2 mmol/liter of butyrate, the further addition of 1.25 and 2.5 mmol/liter of HS- in water reduced the production of CO2 by 57.6+/-10.0 and 98.9+/-1.4%, respectively. However, when adding fecal filtrate of homogenate supplemented with HS- corresponding to 1.25 and 2.5 mmol/liter of HS- in water, the reduction of CO2 production was only 30.7+/-12.0 and 53.2+/-14.0%, respectively. Neither the fecal level of total or free HS- nor the remarkable fecal ability to bind HS- differed in health or quiescent and active ulcerative colitis. Bound HS- had no or little effect on CO2 production. Addition of fecal filtrate of nonsupplemented homogenate to colonocytes significantly reduced the oxidation of butyrate to CO2 about 25%, which could not be ascribed to fecal HS-. In conclusion, fecal HS- has little effect on butyrate oxidation in colonocytes and does not seem to play a pathogenic role for UC by impairing colonic epithelial metabolism. Other fecal agents seem to be more potent metabolic inhibitors than fecal HS-. The role of colonic contents in the pathogenesis of ulcerative colitis remains circumstantial.

摘要

硫化氢(HS-)会损害结肠细胞中丁酸盐的氧化,且在溃疡性结肠炎患者的粪便中含量过高。我们进一步研究了HS-在溃疡性结肠炎中可能的致病作用。为了研究游离和结合态粪便HS-的代谢作用,将分离出的大鼠结肠细胞在丁酸盐存在的情况下进行孵育,分别添加(1)水中的HS-,(2)补充了HS-并与已知粪便HS-产生源一起孵育的粪便匀浆无菌滤液,以及(3)与已知能结合HS-的粪便制剂一起孵育的HS-。通过定量二氧化碳的产生来获得氧化速率。测定了健康人群以及溃疡性结肠炎患者粪便中的总HS-、游离HS-以及粪便结合HS-的能力。与用2 mmol/升丁酸盐孵育的结肠细胞产生二氧化碳的情况相比,在水中进一步添加1.25和2.5 mmol/升的HS-分别使二氧化碳的产生减少了57.6±10.0%和98.9±1.4%。然而,当添加相当于水中1.25和2.5 mmol/升HS-的补充了HS-的粪便匀浆滤液时,二氧化碳产生的减少分别仅为30.7±12.0%和53.2±14.0%。健康人群、静止期和活动期溃疡性结肠炎患者的粪便总HS-或游离HS-水平以及显著的粪便结合HS-能力均无差异。结合态HS-对二氧化碳产生没有或几乎没有影响。向结肠细胞中添加未补充匀浆的粪便滤液会使丁酸盐氧化为二氧化碳的量显著减少约25%,这不能归因于粪便HS-。总之,粪便HS-对结肠细胞中丁酸盐氧化的影响很小,似乎不会通过损害结肠上皮代谢而在溃疡性结肠炎中发挥致病作用。其他粪便制剂似乎比粪便HS-更具强效的代谢抑制作用。结肠内容物在溃疡性结肠炎发病机制中的作用仍不明确。

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