Mano T, Puro D G
Department of Ophthalmology, Bascom Palmer Eye Institute, Miami, FL 33101.
Invest Ophthalmol Vis Sci. 1990 Jun;31(6):1047-55.
Under a variety of pathologic conditions, glial cells of the retina are capable of phagocytosis. Although phagocytosis may play a role in retinal pathobiology, the regulation of the phagocytic activity of retinal glial cells is poorly understood. We used a culture system to study phagocytosis by human retinal glial cells. The cultured cells were obtained from adult postmortem eyes and were immunoreactive to antibodies for glial fibrillary acidic protein and Muller cells. Electron microscopy demonstrated that the glial cells in culture were capable of phagocytosing fragments of retinal cells as well as latex beads. To rapidly quantitate phagocytosis, flow cytometry was used to detect glial cells that had internalized fluorescein-labeled microspheres. We found that reducing the extracellular calcium concentration decreased the phagocytic activity of the retinal glia. An inhibitory effect by nifedipine, a calcium channel blocker, on phagocytosis suggests a role for these ion channels in mediating a phagocytic response by retinal glial cells. A possible modulatory action of cyclic AMP was indicated by a decrease in phagocytic activity with exposure to 8-bromo-cyclic AMP. In addition to identifying conditions that reduce phagocytosis, we found that vitamin D3 can stimulate the phagocytic activity of retinal glia. Our experiments establish that phagocytosis by human retinal glial cells can be studied in a culture system and demonstrate that certain molecules can regulate the phagocytic activity of these cells.
在多种病理条件下,视网膜神经胶质细胞具有吞噬能力。尽管吞噬作用可能在视网膜病理生物学中发挥作用,但对视网膜神经胶质细胞吞噬活性的调节却知之甚少。我们使用一种培养系统来研究人视网膜神经胶质细胞的吞噬作用。培养的细胞取自成人尸检眼睛,对胶质纤维酸性蛋白抗体和穆勒细胞呈免疫反应性。电子显微镜显示,培养中的神经胶质细胞能够吞噬视网膜细胞碎片以及乳胶珠。为了快速定量吞噬作用,使用流式细胞术检测内化了荧光素标记微球的神经胶质细胞。我们发现降低细胞外钙浓度会降低视网膜神经胶质细胞的吞噬活性。钙通道阻滞剂硝苯地平对吞噬作用的抑制作用表明这些离子通道在介导视网膜神经胶质细胞的吞噬反应中起作用。暴露于8-溴环磷酸腺苷时吞噬活性降低表明环磷酸腺苷可能具有调节作用。除了确定降低吞噬作用的条件外,我们还发现维生素D3可以刺激视网膜神经胶质细胞的吞噬活性。我们的实验表明,可以在培养系统中研究人视网膜神经胶质细胞的吞噬作用,并证明某些分子可以调节这些细胞的吞噬活性。