刺
视网膜色素上皮
生物
黄斑变性
细胞生物学
视网膜
下调和上调
视网膜变性
癌症研究
视网膜
细胞保护
细胞因子
转录组
炎症
诱导多能干细胞
PEDF公司
视觉光转导
免疫学
基因剔除小鼠
细胞凋亡
发病机制
分泌物
炎症体
基因敲除
信号转导
小眼畸形相关转录因子
医学
病理
坏死性下垂
先天免疫系统
基因表达
条件基因敲除
基因表达调控
作者
Chao Huang,Vishnu Suresh Babu,Sridhar Bammidi,Jakob Arnold,Martin Ebeling,Gabriella Widmer,Pamela Strassburger,Mirjana Lazendic,Sabine Grüner,Janis Koester,Puja Dutta,Stacey Hose,Sonali Singh,Pooja Gautam,Eleonora M. Lad,Peter D. Westenskow,Oksana Kutsyr,Karl G. Csaky,Sayan Ghosh,Srinivas R. Sripathi
标识
DOI:10.1038/s41419-026-08491-w
摘要
Age-related macular degeneration (AMD) represents one of the therapeutic challenges of aging eye diseases. Our investigation reveals the stimulator of interferon genes (STING) pathway as an orchestrator of immune-mediated retinal degeneration, exhibiting biphasic, stage-dependent functionality-providing cytoprotection in healthy tissue but driving pathogenic inflammation during early AMD progression. Through immunohistochemical analysis of human eyes, we demonstrate stage-dependent cytoplasmic STING upregulation with parallel IFN-β activation. Using patient-derived induced pluripotent stem cells-retinal pigment epithelium (iPSC-RPE) from AMD siblings, we discovered polarized cytokine secretion: apical IFN-β triggers photoreceptor apoptosis in human retinal organoids, while basal IL-17A compromises choroidal neovascularization. The Cryba1 conditional knockout (cKO) AMD-like mouse model confirms STING-driven IL-17A expression, while Il17a knock-in mice substantiate vascular alterations. STING activation establishes a pathogenic feed-forward loop between interferons and IL-17A. Single-cell transcriptomics following AAV2-mediated IFN-β overexpression reveals metabolic and phototransduction dysregulation. Both pharmacological STING inhibition with SN-011 and genetic approaches demonstrate therapeutic rescue. Cryba1/Sting double heterozygous (dhet) mice maintain homeostatic gene expression preserving retinal architecture and function. These findings establish STING as the master regulator simultaneously controlling multiple AMD pathologies through spatially organized inflammation, transforming from protective surveillance to pathogenic driver, and identifying a unified therapeutic target with demonstrated functional rescue across multiple experimental paradigms.
科研通智能强力驱动
Strongly Powered by AbleSci AI