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雏鸡糖原体(髓质)的血脑屏障及其功能意义。

The blood-brain barrier of the chick glycogen body (corpus gelatinosum) and its functional implications.

作者信息

Möller Wilhelm, Kummer Wolfgang

机构信息

Institute of Anatomy and Cell Biology, Justus Liebig University, Aulweg 123, 35385, Giessen, Germany.

出版信息

Cell Tissue Res. 2003 Jul;313(1):71-80. doi: 10.1007/s00441-003-0742-0. Epub 2003 May 27.

Abstract

Among recent vertebrates only birds possess a glycogen body (corpus gelatinosum), located in the rhomboidal sinus of the lumbosacral region of the spinal cord and separated from the neural tissue proper. Because of the specific topographical situation of this circumventricular organ, the structure of its vascular system is of special interest with respect to the still unsolved functional problems. The existence of a blood-brain barrier is demonstrated by the exclusion of intravascularly injected tracer (horseradish peroxidase), and immunocytochemical demonstration of glucose transporter-1 as a functional marker and of neurothelin, occludin and ZO-1 as structural markers. Alkaline phosphatase and gamma-glutamyltransferase activities, two enzyme reactions frequently used for demonstration of an established blood-brain barrier in vitro, were localized histochemically on the plasmalemma of glycogen body cells and were absent from the endothelium. In addition, local enlargements of the intercellular space were observed by transmission and scanning electron microscopy. In accordance with the concept of a third circulation the cerebrospinal fluid may be the vehicle for distributing substances originating in the glycogen body to the CNS, while the vascular endothelium maintains the internal milieu by virtue of its dynamic barrier functions.

摘要

在近期的脊椎动物中,只有鸟类拥有一个糖原体(胶质体),它位于脊髓腰骶部菱形窦内,与神经组织本身分隔开来。由于这个室周器官特殊的位置情况,就其尚未解决的功能问题而言,其血管系统的结构具有特殊意义。血管内注射示踪剂(辣根过氧化物酶)被排除以及葡萄糖转运蛋白-1作为功能标记物、神经黏蛋白、闭合蛋白和紧密连接蛋白-1作为结构标记物的免疫细胞化学证明,证实了血脑屏障的存在。碱性磷酸酶和γ-谷氨酰转移酶活性这两种常用于体外证明已建立血脑屏障的酶反应,通过组织化学定位在糖原体细胞的质膜上,而内皮细胞中则没有。此外,通过透射电子显微镜和扫描电子显微镜观察到细胞间间隙的局部扩大。根据第三循环的概念,脑脊液可能是将源自糖原体的物质分布到中枢神经系统的载体,而血管内皮凭借其动态屏障功能维持内部环境。

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