Stolzenburg J U, Haas J, Härtig W, Paulke B R, Wolburg H, Reichelt W, Chao T I, Wolff J R, Reichenbach A
Carl Ludwig Institute of Physiology, Leipzig University, Federal Republic of Germany.
J Hirnforsch. 1992;33(4-5):557-64.
The ability of rabbit retinal Müller (glial) cells to perform phagocytosis was studied in vitro. Müller cells were feed with various kinds of latex beads either shortly after enzymatical isolation from adult retinae or in monolayer cell cultures derived from neonatal retinae and kept 14 days in vitro. Both types of Müller cell preparations showed intense phagocytosis of latex beads. Moreover, when entire retinae were isolated and exposed (sclerad side up) to latex beads in vitro for 30 min, Müller cells had picked up fluorescent beads and showed, after fixation, intense labeling in radial sections of such retinae. Effective phagocytosis by Müller cells was demonstrated 1.) by transmission electron microscopy, 2.) by bright-field light microscopy of unstained large beads (diameter 660 nm), or 3.) by fluorescence microscopy of small (diameter about 60 nm) and large latex beads labeled with rhodamine. These results suggest that both labeled and unlabeled latex beads are suitable tools to study the phagocytotic activity of retinal glial cells in vitro, thus providing information on important processes occurring in situ during ontogenesis, physiological renewal of retinal receptor cells, and pathological events. We found that movements of cells or cytoplasmic excrescences, and cell-cell interactions, play important roles in removal of foreign particles out of the fluid environment. Engulfed latex beads move through the elongated cells with velocities similar to slow axoplasmic transport.
本研究在体外对兔视网膜Müller(神经胶质)细胞的吞噬能力进行了研究。从成年视网膜酶解分离后不久,或从新生视网膜获得的单层细胞培养物中,用各种乳胶珠喂养Müller细胞,并在体外培养14天。两种类型的Müller细胞制剂均显示出对乳胶珠的强烈吞噬作用。此外,当完整的视网膜被分离并在体外(巩膜面朝上)暴露于乳胶珠30分钟后,Müller细胞摄取了荧光珠,固定后,在这类视网膜的径向切片中显示出强烈的标记。通过以下方法证实了Müller细胞的有效吞噬作用:1. 透射电子显微镜;2. 对未染色的大珠子(直径660 nm)进行明场光学显微镜观察;3. 对用罗丹明标记的小(直径约60 nm)和大乳胶珠进行荧光显微镜观察。这些结果表明,标记和未标记的乳胶珠都是研究体外视网膜神经胶质细胞吞噬活性的合适工具,从而为个体发育、视网膜受体细胞的生理更新以及病理事件期间原位发生的重要过程提供信息。我们发现,细胞或细胞质突起的运动以及细胞间相互作用在将外来颗粒从液体环境中清除方面发挥着重要作用。被吞噬的乳胶珠以类似于缓慢轴浆运输的速度穿过细长的细胞。