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Characterizing motility dynamics in human RPE cells

机译:表征人RPE细胞的运动动力学

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Retinal pigment epithelium (RPE) cells are vital to health of the outer retina, however, are often compromised in ageing and ocular diseases that lead to blindness. Early manifestation of RPE disruption occurs at the cellular level, but while in vivo biomarkers at this scale hold considerable promise, RPE cells have proven extremely challenging to image in the living human eye. Recently we addressed this problem by using organelle motility as a novel contrast agent to enhance the RPE cell in conjunction with 3D resolution of adaptive optics-optical coherence tomography (AO-OCT) to section the RPE layer. In this study, we expand on the central novelty of our method - organelle motility - by characterizing the dynamics of the motility in individual RPE cells, important because of its direct link to RPE physiology. To do this, AO-OCT videos of the same retinal patch were acquired at approximately 1 min intervals or less, time stamped, and registered in 3D with sub-cellular accuracy. Motility was quantified by an exponential decay time constant, the time for motility to decorrelate the speckle field across an RPE cell. In two normal subjects, we found the decay time constant to be just 3 seconds, thus indicating rapid motility in normal RPE cells.
机译:视网膜色素上皮(RPE)细胞对外部视网膜的健康至关重要,但是,在衰老和导致失明的眼部疾病中通常受损。 RPE破坏的早期表现发生在细胞水平,但是尽管在这种规模的体内生物标志物具有很大的前景,但事实证明,RPE细胞在活人眼中成像极具挑战性。最近,我们通过使用细胞器运动性作为一种新型造影剂来增强RPE细胞,并结合自适应光学相干断层扫描(AO-OCT)的3D分辨率来分割RPE层,从而解决了这个问题。在这项研究中,我们通过表征单个RPE细胞中运动的动力学来扩展我们方法的核心新颖性-细胞器运动,这很重要,因为它与RPE生理学直接相关。为此,以大约1分钟或更短的间隔获取相同视网膜贴片的AO-OCT视频,将其打上时间戳,并以亚细胞精度在3D中进行配准。运动性通过指数衰减时间常数来量化,该时间是运动性使RPE细胞上的散斑场去相关的时间。在两个正常受试者中,我们发现衰减时间常数仅为3秒,因此表明正常RPE细胞具有快速运动能力。

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