Enterochromaffin cell and 5-hydroxytryptamine responses to the same infectious agent differ in Th1 and Th2 dominant environments

嗜铬细胞 生物 免疫学 细胞 T细胞 炎症 内科学 内分泌学 免疫系统 血清素 医学 受体 生物化学
作者
Y. Motomura,Jean–Eric Ghia,H Wang,H. Akiho,Rami T. El–Sharkawy,Matthew J. Collins,Yonghong Wan,John McLaughlin,Waliul I. Khan
出处
期刊:Gut [BMJ]
卷期号:57 (4): 475-481 被引量:80
标识
DOI:10.1136/gut.2007.129296
摘要

Background/aim: 5-Hydroxytryptamine (5-HT) released from enterochromaffin cells influences intestinal homeostasis by altering gut physiology and is implicated in the pathophysiology of various gut disorders. The mechanisms regulating 5-HT production in the gut remain unclear. This study investigated the T helper (Th) 1/Th2-based immunoregulation of enterochromaffin cell function and 5-HT production in a model of enteric infection. Methods and results: Trichuris muris -infected AKR (susceptible to infection and generates Th1 response), BALB/c (resistant to infection and generates Th2 response), Stat4-deficient (impaired in Th1 response) and Stat6-deficient (impaired in Th2 response) mice were investigated to assess enterochromaffin cells, 5-HT and cytokines. In association with the generation of a Th2 response we observed higher enterochromaffin cell numbers and 5-HT content in the colon of BALB/c mice compared with AKR mice. Numbers of enterochromaffin cells and amount of 5-HT were significantly lower in Stat6-deficient mice after infection compared with Stat4-deficient mice. In addition, enterochromaffin cell numbers and 5-HT content were significantly higher after reconstitution of severe combined immunodeficient mice with in-vitro polarised Th2 cells. Conclusion: The study demonstrated that enterochromaffin cell and 5-HT responses to the same infectious agent are influenced by Th1 or Th2 cytokine predominance and suggests that the immunological profile of the inflammatory response is important in the regulation of enterochromaffin cell biology in the gut. In addition to new data on enterochromaffin cell function in enteric infection and inflammation, this study provides important information on the immuno–endocrine axis in the gut, which may ultimately lead to improved strategies against gut disorders.
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