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Blockage of the afferent sensitive pathway prevents sympathetic atrophy and hemodynamic alterations in rat portal hypertension

机译:传入敏感通路的阻塞可防止大鼠门静脉高压症的交感萎缩和血液动力学改变

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Background and Aims: Portal hypertension causes arterial vasodilation and sympathetic atrophy in the splanchnic area. We aimed to demonstrate a relationship between hemodynamic alterations and sympathetic atrophy by investigating a pathway from sensitive afferent signals to mesenteric sympathetic ganglia. Methods: Experiments were conducted in sham and portal vein ligated (PVL) adult and neonatal rats treated with vehicle or capsaicin. Hemodynamic parameters, and immunohistochemistry, immunofluorescence and Western blot of different tissues were analysed. Results: cFos expression in the brain supraoptic nuclei was used to confirm abrogation of the afferent signal in capsaicin-treated PVL rats (effectively afferent blocked). Neonatal and adult PVL afferent blocked rats showed simultaneous prevention of hemodynamic alterations and sympathetic atrophy (measured by tyrosine hydroxylase expression in nerve structures of splanchnic vasculature). Not effectively afferent blocked rats showed none of these effects, behaving as PVL vehicle. All capsaicin treated animals presented loss of calcitonin gene-related peptide in superior mesenteric artery and ganglia, whereas neuronal nitric oxide synthase remained unaffected. Neuronal markers semaphorin-3A, nerve growth factor, its precursor and p75 neurotrophic receptor, were significantly over-expressed in the PVL sympathetic ganglia compared with sham, but not in effectively afferent blocked rats. Semaphorin-3A staining in mesenteric ganglia co-localized with vesicular acetylcholine transporter, but not with adrenergic, nitrergic and sensory axons, suggesting that semaphorin-3A might originate in preganglionic neurons. Conclusion: These results indicate that the nervous system has a central role in the genesis of the circulatory abnormalities of portal hypertension, and support that mesenteric sympathetic atrophy contributes to splanchnic arterial vasodilation.
机译:背景与目的:门静脉高压症会引起内脏区域的血管舒张和交感萎缩。我们旨在通过研究从敏感传入信号到肠系膜交感神经节的途径来证明血液动力学改变与交感神经萎缩之间的关系。方法:在假性和门静脉结扎(PVL)成年和新生大鼠中进行媒介物或辣椒素治疗的实验。分析了不同组织的血流动力学参数,免疫组化,免疫荧光和蛋白质印迹。结果:使用cFo​​s在脑上视核中的表达来确认废除辣椒素治疗的PVL大鼠(有效阻滞)的传入信号。新生和成年PVL传入阻塞的大鼠显示出同时预防血流动力学改变和交感神经萎缩(通过内脏脉管系统神经结构中的酪氨酸羟化酶表达来测量)。不能有效传入的大鼠表现为PVL媒介,但均未显示这些作用。所有用辣椒素治疗的动物在肠系膜上动脉和神经节中均显示降钙素基因相关肽的丢失,而神经元一氧化氮合酶仍未受影响。与假手术组相比,PVL交感神经节中神经元标志物semaphorin-3A,神经生长因子,其前体和p75神经营养受体明显过量表达,但在有效传入的大鼠中却没有。肠系膜神经节中的Semaphorin-3A染色与水泡乙酰胆碱转运蛋白共定位,但与肾上腺素能,亚硝酸盐和感觉轴突共定位,这表明Semaphorin-3A可能起源于神经节前神经元。结论:这些结果表明,神经系统在门脉高压循环异常的发生中起着核心作用,并支持肠系膜交感性萎缩促进内脏动脉血管舒张。

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