John van Geest Centre for Brain Repair, Cambridge CB2 0PY, UK.
Department of Pathology, University of Cambridge, Cambridge, CB2 1TN, UK.
Genes (Basel). 2022 Oct 18;13(10):1885. doi: 10.3390/genes13101885.
Retinal detachment (RD) is one of the most common, sight-threatening ocular conditions requiring emergency intervention. Posterior vitreous detachment (PVD) occurs in the majority of an aging population whereby the vitreous body separates from the retina. It is well established that PVD is the common precursor to the most common forms of RD; however, it remains unknown why in most individuals PVD will cause no/few complications (physiological PVD) but in a small percentage will cause retinal tears and detachment (pathological PVD). Despite over 100 years of scientific research, the anatomical definitions of PVD and its pathogenesis remain controversial. Recent research has identified a novel cell population (laminocyte), present at significantly higher numbers in pathological PVD when compared to physiological PVD. We review and summarise the seven distinct clinical sub-groups of retinal breaks and focus on the role of the laminocyte in those secondary to PVD and the transcriptomic profile of this unique cell. Provisional whole transcriptome analysis using bulk RNA-Seq shows marked differentially expressed genes when comparing physiological PVD with PVD associated with RD. The limitations of bulk RNA-Seq are considered and the potential to address these using spatial transcriptomics are discussed. Understanding the pathogenesis of PVD-related retinal tears will provide a baseline for the development of novel therapeutic targets and prophylactic treatments.
视网膜脱离(RD)是最常见的、威胁视力的眼部疾病之一,需要紧急干预。大多数老年人都会发生后玻璃体脱离(PVD),即玻璃体与视网膜分离。目前已经证实,PVD 是最常见的 RD 主要形式的常见前兆;然而,为什么在大多数人中 PVD 不会引起任何/很少的并发症(生理性 PVD),但在一小部分人会引起视网膜裂孔和脱离(病理性 PVD),其原因仍不清楚。尽管已经进行了 100 多年的科学研究,但 PVD 的解剖定义及其发病机制仍然存在争议。最近的研究发现了一种新型细胞群体(纤维母细胞),在病理性 PVD 中,其数量明显高于生理性 PVD。我们回顾和总结了视网膜裂孔的七个不同临床亚组,并重点关注了与 PVD 相关的裂孔中纤维母细胞的作用以及这种独特细胞的转录组特征。使用批量 RNA-Seq 进行的暂定全转录组分析显示,与生理性 PVD 相比,与 RD 相关的 PVD 存在明显差异表达的基因。我们考虑了批量 RNA-Seq 的局限性,并讨论了使用空间转录组学解决这些问题的潜力。了解与 PVD 相关的视网膜裂孔的发病机制将为开发新的治疗靶点和预防性治疗提供基础。