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体外研究显示,扩张可诱发人结肠和猪结肠黏膜分泌。

Distension evoked mucosal secretion in human and porcine colon in vitro.

机构信息

Institute for Physiology and Cell Biology, University of Veterinary Medicine Hannover, Hannover, Germany.

Chair of Human Biology, Technical University of Munich, Freising, Germany.

出版信息

PLoS One. 2023 Apr 13;18(4):e0282732. doi: 10.1371/journal.pone.0282732. eCollection 2023.

Abstract

It was suggested that intestinal mucosal secretion is enhanced during muscle relaxation and contraction. Mechanisms of mechanically induced secretion have been studied in rodent species. We used voltage clamp Ussing technique to investigate, in human and porcine colonic tissue, secretion evoked by serosal (Pser) or mucosal (Pmuc) pressure application (2-60 mmHg) to induce distension into the mucosal or serosal compartment, respectively. In both species, Pser or Pmuc caused secretion due to Cl- and, in human colon, also HCO3- fluxes. In the human colon, responses were larger in proximal than distal regions. In porcine colon, Pmuc evoked larger responses than Pser whereas the opposite was the case in human colon. In both species, piroxicam revealed a strong prostaglandin (PG) dependent component. Pser and Pmuc induced secretion was tetrodotoxin (TTX) sensitive in porcine colon. In human colon, a TTX sensitive component was only revealed after piroxicam. However, synaptic blockade by ω-conotoxin GVIA reduced the response to mechanical stimuli. Secretion was induced by tensile rather than compressive forces as preventing distension by a filter inhibited the secretion. In conclusion, in both species, distension induced secretion was predominantly mediated by PGs and a rather small nerve dependent response involving mechanosensitive somata and synapses.

摘要

有人提出,在肌肉松弛和收缩时,肠黏膜分泌会增强。已经研究了啮齿动物物种中机械刺激引起分泌的机制。我们使用电压钳 Ussing 技术,分别在人结肠组织和猪结肠组织中,研究了浆膜(Pser)或黏膜(Pmuc)侧压力(2-60mmHg)施加引起的扩张引起的分泌。在这两种物种中,Pser 或 Pmuc 引起 Cl-和 HCO3-通量,导致分泌。在人类结肠中,近端区域的反应大于远端区域。在猪结肠中,Pmuc 引起的反应大于 Pser,而在人类结肠中则相反。在这两种物种中,吡罗昔康揭示了一种强烈的前列腺素(PG)依赖性成分。在猪结肠中,Pser 和 Pmuc 诱导的分泌对河豚毒素(TTX)敏感。在人类结肠中,只有在吡罗昔康之后才会显示出对 TTX 敏感的成分。然而,ω-芋螺毒素 GVIA 的突触阻断减少了对机械刺激的反应。张力而不是压力引起分泌,因为通过过滤器防止扩张会抑制分泌。总之,在这两种物种中,扩张诱导的分泌主要由 PGs 介导,并且涉及机械敏感体和突触的神经依赖性反应较小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c68a/10101454/0b14eb92797a/pone.0282732.g001.jpg

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