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首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >Sini-San Regulates the NO-cGMP-PKG Pathway in the Spinal Dorsal Horn in a Modified Rat Model of Functional Dyspepsia
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Sini-San Regulates the NO-cGMP-PKG Pathway in the Spinal Dorsal Horn in a Modified Rat Model of Functional Dyspepsia

机译:Sini-SAN调节脊髓背角的No-CGMP-PKG途径,在改良的大鼠功能性消化不良模型中

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The present study investigated the effect of Chinese medicine Sini-San (SNS) on visceral hypersensitivity in a rat model of functional dyspepsia (FD), and it explored related underlying mechanisms. The rat model of FD was developed by combining neonatal iodoacetamide (IA) treatment and adult tail-clamping. After SNS treatment, the behavior and electromyographic testing were performed to evaluate the visceromotor responses of rats to gastric distention. Immunofluorescence was used to detect the distribution of iNOS-positive cells in the spinal dorsal horn, while the real-time quantitative PCR and western blot were used for detection of the gene expression of c-fos, iNOS, and GABAb and protein levels of iNOS and GABAb in the spinal dorsal horn, respectively. The protein concentration of cGMP and PKG proteins in the spinal dorsal horn were quantified by enzyme-linked immunosorbent assay. In this study, SNS treatment significantly reduced the behavioral score and electromyographic response to graded intragastric distension pressure. The middle-dose of SNS treatment significantly reduced the distribution of iNOS-positive cells in the spinal dorsal horn of FD model rats. The gene expression of c-fos, iNOS, and GABAb and the protein contents of iNOS, GABAb, cGMP, and PKG in the spinal dorsal horn of FD model rats were restored to a normal level by middle-dose of SNS treatment. Our results suggest that Sini-San may alleviate the visceral hypersensitivity in FD model rats via regulation of the NO/cGMP/PKG pathway in the spinal dorsal horn.
机译:本研究研究了中医Sini-San(SNS)对功能性消化不调(FD)大鼠模型中的内感过敏的影响,探讨了相关的潜在机制。通过组合新生儿碘乙酰胺(IA)处理和成人尾夹,开发FD的大鼠模型。在SNS处理后,进行行为和肌电进行拍摄测试以评估大鼠对胃脱离的大鼠的真菌反应。免疫荧光用于检测脊髓背角中的InOS阳性细胞的分布,而实时定量PCR和Western印迹用于检测C-FOS,InOS和Gabab和InOS蛋白质水平的基因表达分别在脊椎背角中的荷兰。通过酶联免疫吸附试验量化脊髓背角中CGMP和PKG蛋白的蛋白质浓度。在本研究中,SNS治疗显着降低了行为分数和肌电印度响应对渐变的胃内疏远压力。 SNS治疗的中剂量显着降低了FD模型大鼠脊髓背角中Inos阳性细胞的分布。 C-FOS,InOS和Gabab的基因表达和InOS,Gabab,CGMP和PKG的脊髓骨脊椎喇叭中的蛋白质含量通过中剂量的SNS处理恢复到正常水平。我们的研究结果表明,Sini-SAD可以通过脊髓背角中的NO / CGMP / PKG途径调节NO / CGMP / PKG路径来缓解FD模型大鼠的内感过敏。

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