人脑黑质和蓝斑富含精氨酸的神经元球形体的精细结构。

Human neurobiology Pub Date : 1988-01-01
M R Issidorides, G D Pappas
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引用次数: 0

摘要

人类儿茶酚胺神经元中富含精氨酸的神经元球形体显示有丝分裂染色体和髓鞘碱性蛋白的染色反应。经磷钨酸苏木精块染色后,在电镜下显示出独特的精细结构和密度。它们有一个电子发光的核心,一个致密的边缘和一个限制性的双膜,与所有其他的神经元包涵体,特别是黑色素区别开来。在线粒体内发现了蛋白体,它们显然起源于基质中的小球体。它们后来通过消除嵴而扩大成球形,但保留了母体线粒体的外膜。球形体中富含精氨酸的碱性蛋白可能参与了人类儿茶酚胺神经元兴奋性的调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fine structure of neuronal spherical arginine-rich bodies of substantia nigra and locus coeruleus in the human brain.

Neuronal spherical bodies, rich in arginine, of catecholamine neurons in man display staining reactions of mitotic chromosomes and myelin basic protein. They show a unique fine structure and density in the EM after phosphotungstic acid hematoxylin block-staining. With an electron-lucent core, a dense rim and a limiting double membrane they stand out and are differentiated from all other neuronal inclusions, especially melanin. Protein bodies were found inside mitochondria, where they apparently originate as small globules in the matrix. They later enlarge into spheres by obliterating the cristae, but retaining the outer membranes of the parent mitochondrion. The arginine-rich basic protein of the spherical bodies, it is argued, may be involved in the modulation of excitability of the catecholamine neurons in man.

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