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Expression of cocaine- and amphetamine-regulated transcript in the pancreas of the European bison

机译:欧洲北美野牛胰腺中可卡因和疗法调节的转录物的表达

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Cocaine- and amphetamine-regulated transcript (CART) is a recently discovered neuropeptide thought to mainly act in most laboratory mammals and humans as anorexigenic factor. The expression of CART in wild living animals is barely known. In the present study immunohistochemical stainings were applied to identify CART-immunoreactive (IR) structures in the pancreas of European bison. Antibodies against neuronal marker Hu C/D were used to visualize intrapancreatic neurons. The expression of CART was detected in approx. 75% of Hu C/D-IR intrapancreatic neurons which may thus also act as interneurons. Additionally, in most intrapancreatic ganglia single CART-IR non-varicose nerve fibers running between neurons were found. Pancreatic blood vessels as well as intralobular ducts were sparsely innervated with CART-IR nerve fibers. Moderately numerous CART-IR nerve terminals were found to innervate the pancreatic endocrine and exocrine tissue. None of islet endocrine cells showed the expression of CART. No presence of CART-IR neuronal elements were found in external connective tissue capsule and septa penetrating inside to the organ. Our study is the first to outline the presence of some differences in CART-ergic innervation pattern of the pancreas between domestic and wild mammals. The lack of CART-IR endocrine islet cells in the pancreas of European bison is an interesting finding, nevertheless its significance is largely unknown at the moment and needs to be further investigated.
机译:可卡因和amphetamine调节的成绩单(推车)是最近发现的神经肽认为主要是在大多数实验室哺乳动物和人类中作为厌恶因素。在野生动物中的推车表达几乎没有人知道。在本研究中,应用免疫组化染色以鉴定欧洲野牛胰腺的推车 - 免疫反应(IR)结构。针对神经元标记物Hu C / D的抗体用于可视化龟头创意神经元。大约检测到推车的表达。 75%的Hu C / D-IR intapancreatic神经元也可以作为中间核。此外,在大多数胰蛋白内的神经节的单人推车 - IR非静脉曲张的神经纤维被发现。胰腺血管以及内部管道稀疏地用Cart-IR神经纤维支配。发现适度无数的购物车 - 红外神经终端,以支配胰腺内分泌和外分泌组织。胰岛内分泌细胞均未显示推车的表达。在外部结缔组织胶囊和隔膜内没有发现购物车IR神经元元素的存在。我们的研究是第一个概述了国内和野生哺乳动物之间胰腺的购物车内部支配模式存在一些差异的存在。欧洲野牛胰腺中缺乏购物车 - 红外内分泌胰岛细胞是一个有趣的发现,目前其意义在很大程度上是未知的,需要进一步调查。

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