CellSight Ocular Stem Cell and Regeneration Program, Department of Ophthalmology, Sue Anschutz-Rodgers Eye Center, University of Colorado, School of Medicine, Aurora, Colorado, USA.
Lehman College, Bronx, New York, USA.
J Extracell Vesicles. 2021 Nov;10(13):e12165. doi: 10.1002/jev2.12165.
Age-related macular degeneration (AMD) is a leading cause of blindness worldwide. Drusen are key contributors to the etiology of AMD and the ability to modulate drusen biogenesis could lead to therapeutic strategies to slow or halt AMD progression. The mechanisms underlying drusen biogenesis, however, remain mostly unknown. Here we demonstrate that under homeostatic conditions extracellular vesicles (EVs) secreted by retinal pigment epithelium (RPE) cells are enriched in proteins associated with mechanisms involved in AMD pathophysiology, including oxidative stress, immune response, inflammation, complement system and drusen composition. Furthermore, we provide first evidence that drusen-associated proteins are released as cargo of extracellular vesicles secreted by RPE cells in a polarised apical:basal mode. Notably, drusen-associated proteins exhibited distinctive directional secretion modes in homeostatic conditions and, differential modulation of this directional secretion in response to AMD stressors. These observations underpin the existence of a finely-tuned mechanism regulating directional apical:basal sorting and secretion of drusen-associated proteins via EVs, and its modulation in response to mechanisms involved in AMD pathophysiology. Collectively, our results strongly support an active role of RPE-derived EVs as a key source of drusen proteins and important contributors to drusen development and growth.
年龄相关性黄斑变性(AMD)是全球致盲的主要原因。 玻璃膜疣是 AMD 发病机制的关键因素,而调节玻璃膜疣发生的能力可能会导致减缓或阻止 AMD 进展的治疗策略。 然而,玻璃膜疣发生的机制在很大程度上仍然未知。 在这里,我们证明在生理条件下,视网膜色素上皮(RPE)细胞分泌的细胞外囊泡(EVs)富含与 AMD 病理生理学相关机制相关的蛋白质,包括氧化应激、免疫反应、炎症、补体系统和玻璃膜疣组成。 此外,我们首次提供证据表明,玻璃膜疣相关蛋白作为 RPE 细胞分泌的细胞外囊泡的货物被释放出来,呈极化的顶:基底模式。 值得注意的是,在生理条件下,玻璃膜疣相关蛋白表现出独特的定向分泌模式,并且对 AMD 应激源的这种定向分泌的差异调节。 这些观察结果为通过 EV 调节定向顶:基底分拣和玻璃膜疣相关蛋白分泌的精细调控机制提供了依据,以及其对 AMD 病理生理学相关机制的调节。 总的来说,我们的研究结果强烈支持 RPE 衍生的 EVs 作为玻璃膜疣蛋白的重要来源和对玻璃膜疣发展和生长的重要贡献的积极作用。