首页> 外文期刊>The Journal of Comparative Neurology >Identifiable nitrergic neurons in the central nervous system of the nudibranch Melibe leonina localized with NADPH-diaphorase histochemistry and nitric oxide synthase immunoreactivity.
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Identifiable nitrergic neurons in the central nervous system of the nudibranch Melibe leonina localized with NADPH-diaphorase histochemistry and nitric oxide synthase immunoreactivity.

机译:NADPH-黄递酶组织化学和一氧化氮合酶免疫反应性定位的裸nMelibe leonina中枢神经系统中的可识别的硝化神经元。

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摘要

Nitric oxide (NO) is a gaseous intercellular messenger produced by the enzyme nitric oxide synthase (NOS). In this study, we used two different techniques-nicotinamide adenine dinucleotide phosphate-diaphorase (NADPH-d) histochemistry and NOS immunocytochemistry-to demonstrate that NOS is present in a pair of identifiable cells in the central nervous system of the nudibranch Melibe leonina. In the Melibe brain, NADPH-d histochemistry revealed only a single pair of bilaterally symmetrical cells in the cerebropleural ganglia. NOS activity also was found in the neuropil of the cerebral, pedal, and buccal ganglia; in the tentacles of the oral hood; in the sensory end of the rhinophores; and in the epithelial tissue of the mouth, preputium, and glans penis. Immunocytochemistry using NOS antisera corroborated the results of the NADPH-d histochemistry by staining the same two cells in the cerebropleural ganglia. Each of these identifiable nitrergic neurons projects into the ipsilateral pedal ganglion. Because the pedal ganglia play a critical role in the control of locomotion, our results provide morphological evidence suggesting that NO may influence swimming or crawling in Melibe leonina. Copyright 2001 Wiley-Liss, Inc.
机译:一氧化氮(NO)是一氧化氮合酶(NOS)产生的气态细胞间信使。在这项研究中,我们使用了两种不同的技术-烟酰胺腺嘌呤二核苷酸磷酸心肌黄递酶(NADPH-d)的组织化学和NOS免疫细胞化学-来证明NOS存在于裸n Melibe leonina中枢神经系统的一对可识别细胞中。在梅利伯(Melibe)大脑中,NADPH-d的组织化学检查显示,脑膜胸膜神经节中只有一对双侧对称细胞。在大脑,踏板和颊神经节的神经纤维中也发现了NOS活性。在口罩的触角中;在犀牛的感觉端;以及在嘴,上皮和阴茎龟头的上皮组织中。使用NOS抗血清的免疫细胞化学通过对脑胸膜神经节中的相同两个细胞进行染色,证实了NADPH-d组织化学的结果。这些可识别的硝化神经元中的每一个都伸入同侧踏板神经节。由于踏板神经节在运动控制中起着至关重要的作用,因此我们的结果提供了形态学证据,表明NO可能会影响Melibe leonina的游泳或爬行。版权所有2001 Wiley-Liss,Inc.

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