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章鱼腕部神经元和感觉细胞中两种胆碱乙酰转移酶的免疫组织化学定位

Immunohistochemical localization of two types of choline acetyltransferase in neurons and sensory cells of the octopus arm.

作者信息

Sakaue Yuko, Bellier Jean-Pierre, Kimura Shin, D'Este Loredana, Takeuchi Yoshihiro, Kimura Hiroshi

机构信息

Molecular Neuroscience Research Center, Shiga University of Medical Science, Seta Tsukinowa-cho, Otsu, Shiga, 520-2192, Japan.

出版信息

Brain Struct Funct. 2014 Jan;219(1):323-41. doi: 10.1007/s00429-012-0502-6. Epub 2013 Jan 26.

Abstract

Cholinergic structures in the arm of the cephalopod Octopus vulgaris were studied by immunohistochemistry using specific antisera for two types (common and peripheral) of acetylcholine synthetic enzyme choline acetyltransferase (ChAT): antiserum raised against the rat common type ChAT (cChAT), which is cross-reactive with molluscan cChAT, and antiserum raised against the rat peripheral type ChAT (pChAT), which has been used to delineate peripheral cholinergic structures in vertebrates, but not previously in invertebrates. Western blot analysis of octopus extracts revealed a single pChAT-positive band, suggesting that pChAT antiserum is cross-reactive with an octopus counterpart of rat pChAT. In immunohistochemistry, only neuronal structures of the octopus arm were stained by cChAT and pChAT antisera, although the pattern of distribution clearly differed between the two antisera. cChAT-positive varicose nerve fibers were observed in both the cerebrobrachial tract and neuropil of the axial nerve cord, while pChAT-positive varicose fibers were detected only in the neuropil of the axial nerve cord. After epitope retrieval, pChAT-positive neuronal cells and their processes became visible in all ganglia of the arm, including the axial and intramuscular nerve cords, and in ganglia of suckers. Moreover, pChAT-positive structures also became detectable in nerve fibers connecting the different ganglia, in smooth nerve fibers among muscle layers and dermal connective tissues, and in sensory cells of the suckers. These results suggest that the octopus arm has two types of cholinergic nerves: cChAT-positive nerves from brain ganglia and pChAT-positive nerves that are intrinsic to the arm.

摘要

利用针对两种类型(常见型和外周型)乙酰胆碱合成酶胆碱乙酰转移酶(ChAT)的特异性抗血清,通过免疫组织化学方法研究了普通章鱼(Octopus vulgaris)腕臂中的胆碱能结构:一种是针对大鼠常见型ChAT(cChAT)产生的抗血清,它与软体动物的cChAT具有交叉反应性;另一种是针对大鼠外周型ChAT(pChAT)产生的抗血清,该抗血清已用于描绘脊椎动物的外周胆碱能结构,但此前未用于无脊椎动物。对章鱼提取物进行的蛋白质免疫印迹分析显示出一条单一的pChAT阳性条带,表明pChAT抗血清与大鼠pChAT的章鱼对应物具有交叉反应性。在免疫组织化学中,虽然两种抗血清的分布模式明显不同,但只有章鱼腕臂的神经元结构被cChAT和pChAT抗血清染色。在脑臂束和轴索神经索的神经毡中均观察到cChAT阳性的曲张神经纤维,而仅在轴索神经索的神经毡中检测到pChAT阳性的曲张纤维。经过抗原修复后,pChAT阳性的神经元细胞及其突起在腕臂的所有神经节中都可见,包括轴索和肌内神经索以及吸盘的神经节。此外,在连接不同神经节的神经纤维、肌肉层和真皮结缔组织中的平滑肌神经纤维以及吸盘中的感觉细胞中也可检测到pChAT阳性结构。这些结果表明,章鱼腕臂有两种类型的胆碱能神经:来自脑神经节的cChAT阳性神经和腕臂固有的pChAT阳性神经。

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