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Modulation of Intestinal Motility in an Adolescent Rat Model of Irritable Bowel Syndrome

肠易激综合征 嗜铬细胞 内科学 发病机制 医学 运动性 内分泌学 病理生理学 血清素 5-羟色胺受体 回肠 胃肠病学 受体 生物 遗传学
作者
Reiko Kyodo,Takahiro Kudo,Natsuki Ito,Kazuhide Tokita,Nobuyasu Arai,Masamichi Sato,Tamaki Ikuse,Keisuke Jimbo,Yoshikazu Ohtsuka,Toshiaki Shimizu
出处
期刊:Digestion [Karger Publishers]
卷期号:105 (2): 99-106 被引量:5
标识
DOI:10.1159/000534732
摘要

INTRODUCTION: The pathophysiology of irritable bowel syndrome (IBS) remains unknown. This study aimed to evaluate colonic motility and serotonin system response to restraint stress (RS) among adolescent rats who underwent neonatal maternal separation (NMS) to clarify the features of pathogenesis in adolescents with IBS. METHODS: Male rats were exposed to NMS as chronic stress, and a normally handled (NH) group was used as control. Four groups were created by adding RS as acute stress treatment to the NMS and NH groups. To realize the RS treatment, the subjects were restrained for 1 h at the age of 5 weeks, and hourly fecal pellet discharge was determined. After euthanization and proximal colon intestinal tissue collection, 5-hydroxytryptamine (5-HT) and 5-hydroxytryptamine receptor 3 (5-HT3R) concentrations, enterochromaffin (EC) cell density, and the expression of mRNA-encoding slc6a4 were examined. RESULTS: The amount of fecal pellet discharge during RS increased significantly in the RS and NMS+RS groups compared with that in the NH and NMS groups, respectively. The 5-HT concentration in the intestinal tissue of rats in the RS and NMS groups increased significantly compared with that of rats in the NH group. EC cell density also increased significantly in the NMS and NMS+RS groups compared with that in the NH and RS groups. However, combined stress did not result in any significant differences in the expression of 5-HT3R and mRNA-encoding slc6a4. CONCLUSIONS: The combination of juvenile and acute stress effectively induced increased 5-HT concentration or EC cell density via the 5-HT pathway in the proximal colon of adolescent rats.

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