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培养的营养不良大鼠色素上皮细胞对视杆细胞外节的摄取存在缺陷。

Defective ingestion of rod outer segments by cultured dystrophic rat pigment epithelial cells.

作者信息

Chaitin M H, Hall M O

出版信息

Invest Ophthalmol Vis Sci. 1983 Jul;24(7):812-20.

PMID:6345445
Abstract

A new procedure for assaying the phagocytosis of rod outer segments (ROS) by cultured rat pigment epithelial (PE) cells has been developed. Using an ROS antiserum and a double immunofluorescent labeling procedure, ROS attached to the external surfaces of these cells can be distinguished from those that have already been ingested. We have used this procedure to study the phagocytosis of ROS by PE cells isolated from normal rats and rats with inherited retinal dystrophy (RCS rats). With this approach we have been able to show that the attachment of ROS to the external surfaces of dystrophic PE cells does take place to a normal extent. However, only a small number of these bound ROS are subsequently ingested, demonstrating that the ingestion phase of phagocytosis is defective. After a 4-hr incubation during which ROS are continuously present, normal rat PE cells ingest about 80% of the ROS that have bound to the cell surfaces. In contrast, after this time period, less than 20% of the ROS bound to the dystrophic PE cells have been ingested. These results, as well as the results of pulse-chase experiments in which ROS are rinsed away after two hours and the incubation continued without further addition of ROS, have demonstrated that normal PE cells rapidly ingest most of the bound ROS, whereas the dystrophic PE cells show no such rapid ingestion. Both cell types, however, are able to slowly ingest additional bound ROS with time.

摘要

已开发出一种用于检测培养的大鼠色素上皮(PE)细胞对视杆细胞外节(ROS)吞噬作用的新方法。使用ROS抗血清和双重免疫荧光标记程序,可以区分附着在这些细胞外表面的ROS和已经被摄取的ROS。我们已使用此方法研究从正常大鼠和患有遗传性视网膜营养不良的大鼠(RCS大鼠)分离出的PE细胞对ROS的吞噬作用。通过这种方法,我们能够证明,ROS附着在营养不良的PE细胞外表面的情况确实在正常范围内发生。然而,随后只有少量这些结合的ROS被摄取,这表明吞噬作用的摄取阶段存在缺陷。在持续存在ROS的4小时孵育后,正常大鼠PE细胞摄取了约80%已结合到细胞表面的ROS。相比之下,在此时间段后,结合到营养不良的PE细胞上的ROS只有不到20%被摄取。这些结果以及脉冲追踪实验的结果(在两小时后冲洗掉ROS并在不进一步添加ROS的情况下继续孵育)表明,正常PE细胞会迅速摄取大部分结合的ROS,而营养不良的PE细胞则没有这种快速摄取现象。然而,两种细胞类型都能够随着时间的推移缓慢摄取额外结合的ROS。

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