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猪结肠中组胺的失活与分解代谢酶丰度的关系

Histamine inactivation in the colon of pigs in relationship to abundance of catabolic enzymes.

作者信息

Aschenbach Jörg R, Schwelberger Hubert G, Ahrens Frank, Fürll Brigitta, Gäbel Gotthold

机构信息

Institute of Veterinary Physiology, University of Leipzig, Leipzig, Germany.

出版信息

Scand J Gastroenterol. 2006 Jun;41(6):712-9. doi: 10.1080/00365520500419540.

Abstract

OBJECTIVE

Catabolism of histamine plays a crucial role in the intestine in preventing intoxication by luminal histamine. Two enzymes are involved, namely histamine N-methyltransferase (HMT) and diamine oxidase (DAO). The purpose of this study was to find a link between histamine catabolism and the activities of HMT and DAO.

MATERIAL AND METHODS

Epithelia of porcine proximal colon were mounted in Ussing chambers. After mucosal addition of (3)H-histamine (100 micromol x l(-1)) and (14)C-mannitol, the appearance of non-catabolized histamine, (3)H-histamine label (hist-rad) and (14)C-mannitol label were measured in parallel on the serosal side. Activities of HMT and DAO were determined in the proximal colon and proximal jejunum.

RESULTS

Differences between the fluxes of histamine and hist-rad indicated catabolic conversion of 81.4+/-1.6% histamine during epithelial transit. Fluxes of hist-rad and histamine increased linearly with increasing mannitol fluxes but the percentage of catabolized histamine was not related to either mannitol or hist-rad fluxes. However, the percentage of catabolized histamine rose with increasing DAO activity. Given a negative correlation between DAO and HMT activities, the fraction of catabolized histamine decreased with increasing HMT activity. HMT activity was comparable in the colon and jejunum, but DAO activity was approximately nine times higher in the jejunum.

CONCLUSIONS

Permeation, but not the relative efficiency of catabolism, of histamine depends on epithelial/paracellular tightness. While previous studies have shown that colonic HMT essentially catabolizes the bulk of histamine during permeation, DAO activity seems to be more variable and limiting for the overall efficiency of the catabolic process.

摘要

目的

组胺的分解代谢在肠道预防管腔组胺中毒过程中起着关键作用。参与其中的有两种酶,即组胺N - 甲基转移酶(HMT)和二胺氧化酶(DAO)。本研究的目的是找出组胺分解代谢与HMT和DAO活性之间的联系。

材料与方法

将猪近端结肠上皮安装在尤斯灌流小室中。在黏膜侧加入(3)H - 组胺(100微摩尔×升(-1))和(14)C - 甘露醇后,在浆膜侧平行测量未分解代谢的组胺、(3)H - 组胺标记物(hist - rad)和(14)C - 甘露醇标记物的出现情况。在近端结肠和近端空肠中测定HMT和DAO的活性。

结果

组胺和hist - rad通量之间的差异表明上皮转运过程中81.4±1.6%的组胺发生了分解代谢转化。hist - rad和组胺的通量随甘露醇通量增加呈线性增加,但分解代谢的组胺百分比与甘露醇或hist - rad通量均无关。然而,分解代谢的组胺百分比随DAO活性增加而升高。鉴于DAO和HMT活性呈负相关,分解代谢的组胺比例随HMT活性增加而降低。结肠和空肠中的HMT活性相当,但空肠中的DAO活性约高9倍。

结论

组胺的渗透而非分解代谢的相对效率取决于上皮/细胞旁紧密性。虽然先前的研究表明结肠HMT在渗透过程中基本上分解了大部分组胺,但DAO活性似乎更具变异性且对分解代谢过程的整体效率起限制作用。

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