Department of Pharmacology & Toxicology and Neuroscience Institute, Morehouse School of Medicine, Atlanta, GA 30310-1495, USA.
Int J Mol Sci. 2022 Feb 28;23(5):2699. doi: 10.3390/ijms23052699.
The retinal pigment epithelium (RPE) is a single layer of cells located between the choriocapillaris vessels and the light-sensitive photoreceptors in the outer retina. The RPE performs physiological processes necessary for the maintenance and support of photoreceptors and visual function. Among the many functions performed by the RPE, the timing of the peak in phagocytic activity by the RPE of the photoreceptor outer segments that occurs 1-2 h. after the onset of light has captured the interest of many investigators and has thus been intensively studied. Several studies have shown that this burst in phagocytic activity by the RPE is under circadian control and is present in nocturnal and diurnal species and rod and cone photoreceptors. Previous investigations have demonstrated that a functional circadian clock exists within multiple retinal cell types and RPE cells. However, the anatomical location of the circadian controlling this activity is not clear. Experimental evidence indicates that the circadian clock, melatonin, dopamine, and integrin signaling play a key role in controlling this rhythm. A series of very recent studies report that the circadian clock in the RPE controls the daily peak in phagocytic activity. However, the loss of the burst in phagocytic activity after light onset does not result in photoreceptor or RPE deterioration during aging. In the current review, we summarized the current knowledge on the mechanism controlling this phenomenon and the physiological role of this peak.
视网膜色素上皮(RPE)是位于脉络膜毛细血管和外视网膜光感受器之间的单层细胞。RPE 执行维持和支持光感受器和视觉功能所需的生理过程。在 RPE 对光感受器外节的吞噬活性的峰值时间出现在光开始后 1-2 小时,这是 RPE 执行的众多功能之一,引起了许多研究人员的兴趣,并因此进行了深入研究。几项研究表明,这种 RPE 的吞噬活性爆发受昼夜节律控制,存在于夜间和白天的物种以及视杆和视锥光感受器中。先前的研究表明,多个视网膜细胞类型和 RPE 细胞中存在功能性昼夜节律钟。然而,控制这种活性的昼夜节律的解剖位置尚不清楚。实验证据表明,昼夜节律钟、褪黑素、多巴胺和整合素信号在控制这种节律中起着关键作用。一系列最近的研究报告称,RPE 中的昼夜节律钟控制着吞噬活性的每日峰值。然而,光起始后吞噬活性爆发的丧失并不会导致感光细胞或 RPE 在衰老过程中的恶化。在当前的综述中,我们总结了控制这种现象的机制和这种峰值的生理作用的最新知识。