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脑室内注射14C - 5,6 - 二氢睾酮 - 黑色素在大鼠中枢神经系统中的分布及可能的消除途径。一项放射自显影研究。

The disposition of intraventricularly injected 14C-5,6-DHT-melanin in, and possible routes of elimination from the rat CNS. An autoradiographic study.

作者信息

von Baumgarten F, Baumgarten H G, Schlossberger H G

出版信息

Cell Tissue Res. 1980;212(2):279-94. doi: 10.1007/BF00233961.

Abstract

14C-5,6-DHT-Melanin was injected into the left lateral ventricle of adult rats and its fate followed by light and EM autoradiography and by TEM of structures identified as labeled in preceding light micrographs. Shortly after injection, melanin particles were seen ingested by supraependymal and epiplexus cells, by cells residing in the pia-arachnoid, i.e. free subarachnoidal cells and perivascular cells, and by subependymally located microglia-like cells with intraventricular processes. Up to day four, an increase in the number of labelled phagocytes in the CSF was noted which transformed into typical reactive macrophages. After this time, many intraventricular melanin-laden phagocytes formed rounded clusters; cells of such clusters were subsequently found to invade the brain parenchyma by penetrating the ependymal lining and to accumulate in the perivascular space of brain vessels. 14C-Melanin-storing macrophages were found in the marginal sinus of the deep jugular lymph nodes suggesting emigration of CNS-derived phagocytes via lymphatics or pre-lymphatics that contact the subarachnoidal space compartment. This does not exclude the possibility that some of the macrophages leave the brain via the systemic circulation by penetrating the vascular endothelium; these may be disposed of in peripheral organs other than the lymph nodes. The ability of supraependymal, epiplexus, free subarachnoidal and perivascular cells in the pia and of subependymal microglia cells to accumulate synthetic melanin by phagocytosis suggests that these cells are local variants of the same type of resting potential phagocytes of the mammalian brain. The present study shows that 14C-5,6-DHT-melanin is an ideal phagocytic stimulant and marker for phagocytosis.

摘要

将14C - 5,6 - 二氢睾酮 - 黑色素注入成年大鼠的左侧脑室,通过光学显微镜和电子显微镜放射自显影以及对先前光学显微镜照片中标记结构进行透射电镜观察来追踪其去向。注射后不久,可见黑色素颗粒被室管膜上细胞和脉络丛细胞、位于软脑膜 - 蛛网膜的细胞(即蛛网膜下腔游离细胞和血管周围细胞)以及具有脑室内突起的室管膜下小胶质样细胞吞噬。直到第4天,脑脊液中标记吞噬细胞的数量增加,并转变为典型的反应性巨噬细胞。此后,许多脑室内载有黑色素的吞噬细胞形成圆形簇;随后发现这些簇中的细胞通过穿透室管膜内衬侵入脑实质,并积聚在脑血管的血管周围间隙。在颈深部淋巴结的边缘窦中发现了储存14C - 黑色素的巨噬细胞,这表明中枢神经系统来源的吞噬细胞通过与蛛网膜下腔相通的淋巴管或前淋巴管迁移。这并不排除一些巨噬细胞通过穿透血管内皮经体循环离开大脑的可能性;这些巨噬细胞可能在淋巴结以外的外周器官中被清除。室管膜上细胞、脉络丛细胞、软脑膜中的蛛网膜下腔游离细胞和血管周围细胞以及室管膜下小胶质细胞通过吞噬作用积累合成黑色素的能力表明,这些细胞是哺乳动物脑中同一类型静息电位吞噬细胞的局部变体。本研究表明,14C - 5,6 - 二氢睾酮 - 黑色素是吞噬作用的理想吞噬刺激物和标志物。

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