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TRPA1-expressing lamina propria mesenchymal cells regulate colonic motility
Yanjing Yang, Shenglan Wang, Kimiko Kobayashi, Yongbiao Hao, Hirosato Kanda, Takashi Kondo, Yoko Kogure, Hiroki Yamanaka, Satoshi Yamamoto, Junxiang Li, Hiroto Miwa, Koichi Noguchi, Yi Dai
Yanjing Yang, Shenglan Wang, Kimiko Kobayashi, Yongbiao Hao, Hirosato Kanda, Takashi Kondo, Yoko Kogure, Hiroki Yamanaka, Satoshi Yamamoto, Junxiang Li, Hiroto Miwa, Koichi Noguchi, Yi Dai
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Research Article Gastroenterology

TRPA1-expressing lamina propria mesenchymal cells regulate colonic motility

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Abstract

The physiological process of defecation is directly controlled by colorectal motility. The transient receptor potential ankyrin 1 (TRPA1) channel is expressed in small intestine enterochromaffin cells and is involved in gastrointestinal motility via serotonin release. In the colorectum, however, enterochromaffin cell localization is largely distinct from that in the small intestine. Here, we investigated the role of lower gastrointestinal tract TRPA1 in modulating colorectal motility. We found that in colonic tissue, TRPA1 is predominantly expressed in mesenchymal cells of the lamina propria, which are clearly distinct from those in the small intestine. These cells coexpressed COX1 and microsomal prostaglandin E synthase-1. Intracolonic administration of TRPA1 agonists induced colonic contraction, which was suppressed by a prostaglandin E2 (PGE2) receptor 1 antagonist. TRPA1 activation induced calcium influx and PGE2 release from cultured human fibroblastic cells. In dextran sulfate sodium–treated animals, both TRPA1 and its endogenous agonist were dramatically increased in the colonic lamina propria, accompanied by abnormal colorectal contractions. Abnormal colorectal contractions were significantly prevented by pharmacological and genetic inhibition of TRPA1. In conclusion, in the lower gastrointestinal tract, mesenchymal TRPA1 activation results in PGE2 release and consequently promotes colorectal contraction, representing what we believe is a novel physiological and inflammatory bowel disease–associated mechanism of gastrointestinal motility.

Authors

Yanjing Yang, Shenglan Wang, Kimiko Kobayashi, Yongbiao Hao, Hirosato Kanda, Takashi Kondo, Yoko Kogure, Hiroki Yamanaka, Satoshi Yamamoto, Junxiang Li, Hiroto Miwa, Koichi Noguchi, Yi Dai

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Figure 6

Abnormal colorectal contraction in DSS-treated animals is alleviated by TRPA1 inhibition.

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Abnormal colorectal contraction in DSS-treated animals is alleviated by ...
(A and B) TRPA1 selective antagonists, A967079 (A96, 40 mg/2 ml/kg) and HC030031 (HC, 100 mg/2 ml/kg), were administered by i.p. injection 1 hour before recording. Deionized water with 0.5% methylcellulose, 10% DMSO, and 5% Tween 20 was administered by i.p. injection as the vehicle. (A) Representative traces showing colorectal motilities in rats from the water or DSS-treated groups receiving vehicle (Veh) or A967079 treatment. (B) Bar graph showing the effects of TRPA1 antagonists on colorectal motility in DSS-treated rats (n = 5–8 rats/group). *P < 0.05 vs. water group; #P < 0.05 vs. DSS group with vehicle (1-way ANOVA followed by Bonferroni analysis). (C) Representative traces showing colorectal motilities of water- or DSS-treated Trpa1-KO (KO) mice and WT mice. (D) Bar graph showing the effects of TRPA1 on colorectal motility in DSS-treated mice (n = 6–8 mice/group). *P < 0.05, DSS vs. water group in WT mice; #P < 0.05, Trpa1-KO vs. WT in the DSS-treated group (1-way ANOVA followed by Bonferroni analysis).

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ISSN 2379-3708

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