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XiangshaLiujunzi decoction alleviates the symptoms of functional dyspepsia by regulating brain–gut axis and production of neuropeptides

机译:湘沙六君子汤通过调节脑肠轴和神经肽的产生减轻功能性消化不良的症状

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Background Chinese medicine xiangshaliujunzi decoction (XSLJZD) plays a key role in treating functional dyspepsia (FD), a common clinical gastrointestinal disorder. However, the mechanism of this disease is unclear. Brain–gut axis regulates food intake behaviour, and this regulatory mechanism is mediated by neuropeptides. Brain–gut axis impairment and neuropeptide alteration may be the pathological mechanisms of FD, and brain–gut axis regulation may influence the action of medicine. Methods In our experiment, the effect of XSLJZD on FD was evaluated in terms of food intake, sucrose preference test and electromyogram. Changes in neuropeptides [ghrelin, cholecystokinin (CCK) and vasoactive intestinal polypeptide (VIP)] were detected through immunohistochemistry, real-time PCR and ELISA. Results XSLJZD increased food intake and the percentage of sucrose preference (>75?%). However, the response to gastric detention decreased. Furthermore, XSLJZD increased ghrelin, CCK, VIP proteins and genes in the stomach. XSLJZD also increased ghrelin, CCK and VIP proteins in serum. By contrast, XSLJZD decreased the mRNA expression of these neuropeptides in the hypothalamus. Conclusions XSLJZD alleviated the symptoms of FD by upregulating the production of ghrelin, CCK and VIP and by increasing the levels of these neuropeptides in circulation. This finding can help elucidate the mechanism of FD and can provide further insight into the pharmacokinetics of XSLJZD.
机译:背景技术中药香柳六君子汤(XSLJZD)在治疗功能性消化不良(FD)(一种常见的胃肠道疾病)中起着关键作用。但是,这种疾病的机制尚不清楚。脑肠轴调节食物的摄入行为,并且这种调节机制是由神经肽介导的。脑肠轴损伤和神经肽改变可能是FD的病理机制,脑肠轴调节可能会影响药物的作用。方法在本实验中,通过进食量,蔗糖偏爱试验和肌电图评估了XSLJZD对FD的影响。通过免疫组织化学,实时荧光定量PCR和ELISA检测神经肽[生长素释放肽,胆囊收缩素(CCK)和血管活性肠多肽(VIP)]的变化。结果XSLJZD增加了食物摄入量和蔗糖偏爱率(> 75%)。但是,对胃滞留的反应下降了。此外,XSLJZD增加胃中的生长素释放肽,CCK,VIP蛋白和基因。 XSLJZD还增加了血清中的生长素释放肽,CCK和VIP蛋白。相比之下,XSLJZD降低了下丘脑中这些神经肽的mRNA表达。结论XSLJZD通过上调生长素释放肽,CCK和VIP的产生以及增加循环中这些神经肽的水平来缓解FD症状。这一发现可以帮助阐明FD的机制,并可以进一步了解XSLJZD的药代动力学。

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