Prins Stella, Kiel Christina, Foss Alexander J E, Zouache Moussa A, Luthert Philip J
UCL Institute of Ophthalmology, London, United Kingdom.
Advanced Research Computing Centre, University College London, London, United Kingdom.
PLoS One. 2024 Dec 31;19(12):e0312260. doi: 10.1371/journal.pone.0312260. eCollection 2024.
Photoreceptors (PRs) are metabolically demanding and packed at high density, which presents a challenge for nutrient exchange between the associated vascular beds and the tissue. Motivated by the ambition to understand the constraints under which PRs function, in this study we have drawn together diverse physiological and anatomical data in order to generate estimates of the rates of ATP production per mm2 of retinal surface area. With the predictions of metabolic demand in the companion paper, we seek to develop an integrated energy budget for the outer retina. It is known that rod PR number and the extent of the choriocapillaris (CC) vascular network that supports PRs both decline with age. To set the outer retina energy budget in the context of aging we demonstrate how, at different eccentricities, decline CC density is more than matched by rod loss in a way that tends to preserve nutrient exchange per rod. Together these finds provide an integrated framework for the study of outer retinal metabolism and how it might change with age.
光感受器(PRs)代谢需求高且密集排列,这给相关血管床与组织之间的营养物质交换带来了挑战。出于理解PRs功能所受限制的目的,在本研究中,我们汇集了各种生理和解剖学数据,以估算每平方毫米视网膜表面积的ATP产生速率。结合配套论文中对代谢需求的预测,我们试图为视网膜外层制定一个综合能量预算。已知视杆PR数量以及支持PRs的脉络膜毛细血管(CC)血管网络范围均会随年龄增长而减少。为了在衰老背景下设定视网膜外层能量预算,我们展示了在不同偏心度下,CC密度的下降如何被视杆细胞的损失所抵消,且这种抵消方式倾向于维持每个视杆细胞的营养物质交换。这些发现共同为研究视网膜外层代谢及其随年龄变化的方式提供了一个综合框架。