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首页> 外文期刊>Folia histochemica et cytobiologica >Immunohistochemical characterisation of cholinergic neurons in the anterior pelvic ganglion of the male pig.
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Immunohistochemical characterisation of cholinergic neurons in the anterior pelvic ganglion of the male pig.

机译:雄性猪前盆神经节中胆碱能神经元的免疫组织化学表征。

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This study investigated immunohistochemical properties of cholinergic neurons in the anterior pelvic ganglion (APG) of juvenile male pigs (n=7). Cholinergic neurons were identified using antibodies against choline acetyltransferase (ChAT) and vesicular acetylcholine transporter (VAChT). Immunoblotting was applied to verify the specificity of ChAT-immunostaining. Western blotting performed on APG tissue homogenates detected single immunoreactive protein with a molecular weight matching that of ChAT (71.6 kDa). It was found that many APG neurons expressed immunoreactivity to ChAT or VAChT (40% and 39% of the neurons, respectively). The analysis of adjacent sections from the ganglion revealed complete colocalization of ChAT and VAChT in these nerve cells. Furthermore, virtually all the ChAT-positive neurons were tyrosine hydroxylase (TH)-negative (non-adrenergic) but many of them displayed immunoreactivity to nitric oxide synthase (NOS), vasoactive intestinal polypeptide (VIP), neuropeptide Y (NPY) or somatostatin (SOM). There were also single nerve cell bodies that stained for neither ChAT nor TH. The comparison of the adjacent sections revealed that NOS, VIP, NPY and SOM were simultaneously co-expressed in the majority of the cholinergic somata. ChAT- or VAChT-positive varicose nerve terminals supplied nearly all neuronal profiles within the ganglion often forming loose basket-like formations surrounding the particular nerve cell bodies. The present study for the first time has revealed that nearly all non-adrenergic neurons in the porcine APG are cholinergic in nature, i.e. express immunoreactivity for ChAT and VAChT. Considering a high coincidence between the chemical coding of non-adrenergic (cholinergic) nerve fibres supplying some porcine male reproductive organs described in earlier papers and that of cholinergic pelvic neurons found in this study it is further concluded that pelvic ganglia are probably the major source of cholinergic innervation for the porcine urogenital system.
机译:这项研究调查了幼年猪(n = 7)的骨盆前神经节(APG)中胆碱能神经元的免疫组织化学特性。使用针对胆碱乙酰基转移酶(ChAT)和囊泡乙酰胆碱转运蛋白(VAChT)的抗体鉴定胆碱能神经元。免疫印迹用于验证ChAT免疫染色的特异性。在APG组织匀浆上进行的蛋白质印迹检测到的单个免疫反应蛋白的分子量与ChAT的分子量相匹配(71.6 kDa)。已发现许多APG神经元对ChAT或VAChT表达免疫反应(分别占神经元的40%和39%)。对神经节相邻切片的分析显示,ChAT和VAChT在这些神经细胞中完全共定位。此外,几乎所有ChAT阳性神经元均为酪氨酸羟化酶(TH)阴性(非肾上腺素能),但许多神经元对一氧化氮合酶(NOS),血管活性肠多肽(VIP),神经肽Y(NPY)或生长抑素具有免疫反应性(SOM)。也有单个神经细胞体的ChAT和TH均未染色。相邻部分的比较显示,NOS,VIP,NPY和SOM在大多数胆碱能性躯体细胞中同时共表达。 ChAT或VAChT阳性的曲张神经末梢提供了神经节内几乎所有的神经元特征,通常在特定的神经细胞体周围形成松散的篮子状结构。本研究首次揭示了猪APG中几乎所有非肾上腺能神经元本质上都是胆碱能的,即表达针对ChAT和VAChT的免疫反应性。考虑到早期论文中描述的提供某些男性雄性生殖器官的非肾上腺能(胆碱能)神经纤维的化学编码与本研究中发现的胆碱能盆腔神经元的化学编码高度一致,因此进一步得出结论,盆腔神经节可能是导致该疾病的主要原因猪泌尿生殖系统的胆碱能神经支配。

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