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高剂量辐射诱导的小鼠小肠运动变化:是 Cajal 间质细胞还是肠神经系统发生了变化?

High-Dose Radiation-Induced Changes in Murine Small Intestinal Motility: Are the Changes in the Interstitial Cells of Cajal or in the Enteric Nervous System?

作者信息

Ryoo Seung-Bum, Kim Joong-Sun, Kim Min-Seouk, Kim Kyubo, Yu Seung A, Bae Min-Ji, Oh Heung-Kwon, Moon Sang Hui, Choe Eun Kyung, So Insuk, Park Kyu Joo

机构信息

a  Division of Colorectal Surgery, Department of Surgery, Departments of.

d  Research Center and.

出版信息

Radiat Res. 2016 Jan;185(1):39-49. doi: 10.1667/RR14132.1. Epub 2015 Dec 31.

Abstract

Murine small intestinal motility consists of phasic contraction from interstitial cells of Cajal (ICC) and migrating motor complexes (MMCs) from the enteric nervous system. The number of ICC is reduced in various gastrointestinal disorders, and this effect can be reversed once the disorder is resolved through cellular and tissue remodelling. Exposure to high-dose radiation can induce inflammation and alter intestinal motility. In this study, we investigated the changes in the small intestinal motility of 8- to 10-week-old male C3H/HeN mice after high-dose (13 Gy) irradiation. The aim of this study was to determine whether those changes are caused by changes in the ICC or enteric nervous system. After irradiation, the small intestine was dissected and stored in oxygenated Krebs-Ringer bicarbonate solution. The tension of contractions and intracellular membrane potentials were recorded at day 0, 1, 3 and 5 after irradiation and compared with those of sham-irradiated mice. Histological evaluation was performed by immunohistochemistry and apoptosis was evaluated. Quantitative real-time polymerase chain reaction (qPCR) for c-kit mRNA was also performed. Phasic contractions were not changed at day 0, 1, 3 and 5 after irradiation and did not significantly differ from those in the control mice. Slow waves were also sustained after irradiation. However, the frequency of migrating motor complexes (MMCs) was significantly higher at day 0 and 1 after exposure and the amplitude and area under the curve were significantly lower at day 3 after exposure compared with control mice. MMCs were recovered at day 5 with no difference from those of the control mice. ICC were detected after irradiation by immunohistochemistry for c-kit, and c-kit mRNA levels did not differ between sham-irradiated and irradiated mice. Histological evaluation showed that the most severe inflammation was detected at day 3 after irradiation, and apoptosis was detected only in the mucosa. Acetylcholine increased the contractility after irradiation, and tetrodotoxin decreased the number of MMCs in sham-irradiated and irradiated mice. N(w)-oxide-l-arginine (L-NA) increased the number of MMCs. MMCs were recovered after L-NA treatment at day 3 after irradiation. Sodium nitroprusside decreased the MMCs in sham-irradiated and irradiated mice. Exposure to high-dose radiation did not alter phasic contractions and slow waves in the small intestine of mice, which suggests that ICC and their functions may be sustained after high-dose irradiation. Mucosal inflammation was severe after irradiation and there were some changes in MMCs related to the enteric nervous system.

摘要

小鼠小肠蠕动由 Cajal 间质细胞(ICC)产生的阶段性收缩和肠神经系统产生的移行性运动复合波(MMC)组成。在各种胃肠道疾病中,ICC 的数量会减少,一旦疾病通过细胞和组织重塑得到解决,这种影响就可以逆转。暴露于高剂量辐射会诱发炎症并改变肠道蠕动。在本研究中,我们调查了 8 至 10 周龄雄性 C3H/HeN 小鼠在接受高剂量(13 Gy)照射后小肠蠕动的变化。本研究的目的是确定这些变化是否由 ICC 或肠神经系统的变化引起。照射后,解剖小肠并将其储存在充氧的 Krebs-Ringer 碳酸氢盐溶液中。在照射后第 0、1、3 和 5 天记录收缩张力和细胞内膜电位,并与假照射小鼠进行比较。通过免疫组织化学进行组织学评估并评估细胞凋亡。还进行了 c-kit mRNA 的定量实时聚合酶链反应(qPCR)。照射后第 0、1、3 和 5 天的阶段性收缩没有变化,与对照小鼠相比没有显著差异。照射后慢波也持续存在。然而,与对照小鼠相比,暴露后第 0 天和第 1 天移行性运动复合波(MMC)的频率显著更高,暴露后第 3 天其振幅和曲线下面积显著更低。MMC 在第 5 天恢复,与对照小鼠没有差异。通过 c-kit 免疫组织化学在照射后检测到 ICC,假照射小鼠和照射小鼠之间的 c-kit mRNA 水平没有差异。组织学评估显示,照射后第 3 天检测到最严重的炎症,仅在黏膜中检测到细胞凋亡。乙酰胆碱在照射后增加了收缩力,河豚毒素减少了假照射小鼠和照射小鼠中 MMC 的数量。N(ω)-硝基-L-精氨酸(L-NA)增加了 MMC 的数量。照射后第 3 天 L-NA 处理后 MMC 恢复。硝普钠减少了假照射小鼠和照射小鼠中的 MMC。暴露于高剂量辐射不会改变小鼠小肠的阶段性收缩和慢波,这表明 ICC 及其功能在高剂量照射后可能得以维持。照射后黏膜炎症严重,与肠神经系统相关的 MMC 有一些变化。

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