生物
疾病
蛋白质组学
细胞
电池类型
黄斑变性
转录组
计算生物学
神经科学
视网膜
生物信息学
病理
遗传学
基因
基因表达
医学
眼科
生物化学
作者
Julian Wolf,Ditte K. Rasmussen,Young Joo Sun,Jennifer T. Vu,Elena Wang,Camilo Espinosa,Fabio Bigini,Robert T. Chang,Artis A. Montague,Peter H. Tang,Prithvi Mruthyunjaya,Nima Aghaeepour,Antoine Dufour,Alexander G. Bassuk,Vinit B. Mahajan
出处
期刊:Cell
[Cell Press]
日期:2023-10-01
卷期号:186 (22): 4868-4884.e12
被引量:37
标识
DOI:10.1016/j.cell.2023.09.012
摘要
Single-cell analysis in living humans is essential for understanding disease mechanisms, but it is impractical in non-regenerative organs, such as the eye and brain, because tissue biopsies would cause serious damage. We resolve this problem by integrating proteomics of liquid biopsies with single-cell transcriptomics from all known ocular cell types to trace the cellular origin of 5,953 proteins detected in the aqueous humor. We identified hundreds of cell-specific protein markers, including for individual retinal cell types. Surprisingly, our results reveal that retinal degeneration occurs in Parkinson's disease, and the cells driving diabetic retinopathy switch with disease stage. Finally, we developed artificial intelligence (AI) models to assess individual cellular aging and found that many eye diseases not associated with chronological age undergo accelerated molecular aging of disease-specific cell types. Our approach, which can be applied to other organ systems, has the potential to transform molecular diagnostics and prognostics while uncovering new cellular disease and aging mechanisms.
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