分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

CD36 Regulates PANoptosis in Diabetic Retinopathy via the NOTCH/MAML Pathway

Rongfeng Dai, Yu Qian, Siqi Liu, Yuqing You, Yan Han, Yi Fang

Journal:Journal of Diabetes Research

IF:3.5

DOI:10.1155/jdr/9324498

PMID:42495942

Published:2026-07-24

research field:肿瘤学肿瘤微环境分子生物学生物信息学癌症生物学免疫学细胞信号转导

Abstract

Worldwide, diabetic retinopathy (DR) stands as a leading cause of vision loss. However, the involvement of PANoptosis—a form of inflammatory cell death that combines features of apoptosis, pyroptosis, and necroptosis—in the development of DR has not been fully elucidated. This study investigated the molecular mechanisms underlying high glucose (HG)–induced PANoptosis in human retinal microvascular endothelial cells (hRMECs), focusing on the scavenger receptor CD36 and NOTCH/MAML signaling. HG specifically induced PANoptosis in hRMECs, evidenced by concurrent activation of apoptotic, pyroptotic, and necroptotic markers, along with PANoptosome complex formation and morphological validation via terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL) staining. HG significantly upregulated CD36 expression and activated the NOTCH/MAML pathway. CD36 overexpression exacerbated PANoptosis by enhancing cell death, inflammatory responses, and oxidative stress, whereas CD36 knockdown conferred protection. Mechanistically, CD36 promoted PANoptosome assembly through NOTCH/MAML pathway activation, as demonstrated by increased NICD‐MAML1 nuclear colocalization and enhanced NOTCH component expression. We further verified that the CD36‐NOTCH axis regulates PANoptosis through the modulation of NLRP3, a core component of the PANoptosome. Pharmacological NOTCH inhibition using DAPT ameliorated HG‐induced PANoptosis, whereas NOTCH activation mimicked CD36 overexpression effects. These results establish a novel CD36‐NOTCH/MAML‐NLRP3‐PANoptosis regulatory pathway in diabetic retinal endothelial cells. This discovery provides crucial insights into DR pathogenesis and pinpoints potential targets for therapeutic intervention.

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