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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Oxytocin inhibited stress induced visceral hypersensitivity, enteric glial cells activation, and release of proinflammatory cytokines in maternal separated rats
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Oxytocin inhibited stress induced visceral hypersensitivity, enteric glial cells activation, and release of proinflammatory cytokines in maternal separated rats

机译:催产素抑制应激诱导的内脏过敏,肠缩胶质细胞活化,母体分离大鼠促进细胞因子的释放

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摘要

Abstract Visceral hypersensitivity (VH) is a significant contributor to irritable bowel syndrome (IBS). Oxytocin (OT) possesses analgesic effects on the central nervous system (CNS) and attenuates microglial activation, however, little is known about its peripheral effects and involvement in VH of IBS. Reactive enteric glial cells (EGCs) contributes to abnormal motility in gastrointestinal (GI) diseases. The aim of this study was to evaluate the peripheral use of OT to maintain VH and activation of EGCs through involvement of the Toll-like receptor (TLR) 4/MyD88/NF-κB signaling. After assessing a baseline visceromotor response (VMR) to colorectal distension (CRD), rats were exposed to a 1h water avoidance stress (WAS) session. Before each WAS session, intraperitoneal injection of OT (1mg/kg body weight, in phosphate-buffered saline (PBS)) atosiban (0.5mg/kg body weight, in PBS) or PBS (as a vehicle control, 1ml/kg body weight) was administered. Animas are killed 24h after the last WAS session. EGCs activity, relative OT receptor expression, glial fibrillary acidic protein (GFAP) expression and TLR4/MyD88/NF-κB signaling were evaluated. Neonatal maternal separation (MS) significantly increased the OT receptor expression and enhanced VMR to CRD. WAS improved VMR to CRD only during neonatal MS. OT treatment prevented WAS-induced higher VMRs to CRD, which was reversed by an OT receptor antagonist administration. Compared to the vehicle, OT pre-treated rats reduced EGCs activation, GFAP expression and TLR4/MyD88/NF-κB signaling. We conclude that neonatal MS induces VH and visceral pain in rats. Furthermore, exogenous OT attenuated stress-induced VH and EGCs activation, which was mediated by TLR4/MyD88/NF-κB signaling. Graphical abstract Oxytocin treatment reversed stress-induced visceral hypersensitivity in rats. (A) Maternal separated (MS) rats developed an increased visceromotor response (VMR) to colorectal distension (CRD) compared to non-separated (NS) rats (two-way ANOVA followed by Bonferroni post-test). (B) VMR to CRD was enhanced 24h post-water avoidance stress (WAS) in MS rats (MS+WAS considered as a baseline). (C) Rats treated with vehicle exhibit no change in VMR to CRD compared with baseline. (D) Oxytocin (OT) inhibited the visceral hypersensitivity increase 24h post-WAS compared with baseline. (E) OT significantly inhibited the VH increase 24h post-WAS compared with vehicle. (F) Atosiban reversed the inhibitory effect of OT in VH. Data are expressed as means ± SEM of n=6 experiments. Display Omitted
机译:摘要内脏过敏(VH)是肠易激综合征(IBS)的重要贡献者。催产素(OT)对中枢神经系统(CNS)具有镇痛作用,并且衰减微胶质激活,然而,关于其外周效应和参与IBS的VH很少。反应性肠道胶质细胞(EGCS)有助于胃肠道(GI)疾病的异常运动。本研究的目的是通过涉及Toll样受体(TLR)4 / MyD88 / NF-κB信号传导来评估OT的外周使用以维持VH和EGC的激活。在评估基线视野响应(VMR)以结直肠响应(CRD)后,将大鼠暴露于1H水避免压力(是)会议。在每次是会话之前,腹腔内注射OT(1mg / kg体重,在磷酸盐缓冲盐水(PBS))阿特塞尔班(0.5mg / kg体重,PBS中)或PBS(作为载体控制,1ml / kg体重)被施用。在最后一次会议后,Animas被杀了24小时。评估EGCS活性,相对ot受体表达,胶质纤维酸性蛋白质(GFAP)表达和TLR4 / MYD88 / NF-κB信号传导。新生儿母体分离(MS)显着增加了OT受体表达和增强的VMR至CRD。仅在新生儿MS期间改进了VMR至CRD。防止治疗诱导较高的VMR至CRD,其被OT受体拮抗剂给药逆转。与载体相比,OT预处理的大鼠降低了EGCS活化,GFAP表达和TLR4 / MYD88 / NF-κB信号传导。我们得出结论,新生儿MS在大鼠中诱导VH和内脏疼痛。此外,外源OT减毒诱导的vH和EGCS活化,其被TLR4 / MyD88 / NF-κB信号传导介导。图形摘要催产素治疗在大鼠中逆转应激诱导的内脏过敏。 (a)与未分离的(ns)大鼠(双向Anova之后的双向Anova后,测试后,MS)大鼠对结直肠响应(CRD)的增加,对结直肠响应(CRD)的增加而产生了增加的大肠杆菌反应(VMR)。 (b)VMR至CRD增强24小时后避免水后避免应力(MS)(MS +被认为是基线)。 (c)用载体处理的大鼠表现出VMR对CRD的变化与基线相比。 (d)催产素(OT)抑制了内感过敏,与基线进行了比较后24小时。 (e)与载体相比,OT显着抑制VH增加24小时。 (f)阿特希班逆转了液体中的抑制作用。数据表示为n = 6实验的平均值±SEM。显示省略

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