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首页> 外文期刊>The anatomical record: advances in integrative anatomy and evolutionary biology >Immunohistochemical Properties of the Peripheral Neurons Projecting to the Pig Bulbospongiosus Muscle
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Immunohistochemical Properties of the Peripheral Neurons Projecting to the Pig Bulbospongiosus Muscle

机译:投射到猪球囊肌肉的周围神经元的免疫组织化学特性

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Retrograde neuronal tracing and single labelling immunofluorescence methods were used to define the neurochemical content of the peripheral autonomic and sensitive neurons projecting to the male pig striated bulbospongiosus muscle (BSM). The retrograde fluorescent neuronal tracer Fast Blue (FB) was injected into the left bulbospongiosus muscle of four intact impuberal pigs. After a 10-day survival time, the ipsilateral sacral sympathetic trunk ganglia (STGs), the caudal mesenteric ganglion (CMG), and the sacral spinal ganglia (SGs) were collected from each animal. In FB+ neurons of these ganglia, the presence of cathecolamine- (tyrosine hydroxylase-TH), acetylcholine- (vesicular acetylcholine transporter-VChAT), or nitric oxide-synthesizing (neuronal Nitric Oxide Synthase-nNOS) enzymes and of some biologically active peptides (calcitonine gene-related peptide-CGRP, Leu-Enkephaline-LENK, Neuropeptide Y-NPY, Substance P-SP and Vasoactive Intestinal Peptide-VIP) were studied. The ipsilateral STGs FB+ neurons showed immunoreactivity principally for TH and NPY and in decreasing order for VIP, VChAT, SP, CGRP, nNOS, and LENK. The left CMG FB+ neurons were immunoreactive to TH and NPY, and in smaller proportions for VIP, LENK, VChAT, CGRP, nNOS, and SP. The ipsilateral SGs FB+ neurons resulted immunoractive for CGRP, LENK, NPY, nNOS, SP, and VChAT. The heterogeneous neurochemical content of the peripheral neurons projecting to the pig BSM allows us to hypothesize the involvement of autonomic ganglia in the activity of both blood vessels and striated fibers of the muscle and the involvement of sensory ganglia in the afferent transmission from the muscle to spinal cord and in antidromic mechanisms that causes the relaxation of the BSM blood vessels. Anat Rec, 299:1192-1202, 2016. (c) 2016 Wiley Periodicals, Inc.
机译:逆行神经元示踪和单标记免疫荧光方法被用来定义投射到雄性猪横纹球囊肌(BSM)的周围自主神经和敏感神经元的神经化学含量。将逆行荧光神经元示踪剂Fast Blue(FB)注入四只完整无imp仔猪的左茎海绵体肌中。在10天的生存时间后,从每只动物中收集同侧交感神经干神经节(STG),尾肠系膜神经节(CMG)和the神经节(SGs)。在这些神经节的FB +神经元中,存在鞘氨醇-(酪氨酸羟化酶-TH),乙酰胆碱-(水泡乙酰胆碱转运蛋白-VChAT)或一氧化氮合成(神经型一氧化氮合酶-nNOS)酶和某些生物活性肽(研究了降钙素基因相关肽-CGRP,亮氨酸-脑啡肽-LENK,神经肽Y-NPY,物质P-SP和血管活性肠肽-VIP)。同侧STG FB +神经元主要对TH和NPY表现出免疫反应性,而对VIP,VChAT,SP,CGRP,nNOS和LENK则呈递减顺序。左CMG FB +神经元对TH和NPY具有免疫反应性,而VIP,LENK,VChAT,CGRP,nNOS和SP的比例较小。同侧SGs FB +神经元对CGRP,LENK,NPY,nNOS,SP和VChAT具有免疫活性。投射到猪BSM的周围神经元的异质神经化学成分使我们能够假设自主神经节参与了血管和肌肉横纹肌的活动,而感觉神经节也参与了从肌肉到脊髓的传入传递索和导致BSM血管松弛的抗驱机制。 Anat Rec,299:1192-1202,2016.(c)2016威利期刊公司

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