粒体自噬
神经炎症
刺
神经退行性变
串扰
线粒体
神经科学
先天免疫系统
细胞生物学
生物
自噬
医学
免疫学
炎症
遗传学
免疫系统
疾病
细胞凋亡
工程类
病理
电子工程
航空航天工程
作者
Xiaogang Zhou,Jing Wang,Lu Yu,Gan Qiao,Dalian Qin,Betty Yuen Kwan Law,Fang Ren,Jianming Wu,Anguo Wu
标识
DOI:10.1016/j.apsb.2024.05.012
摘要
Mitophagy, essential for mitochondrial health, selectively degrades damaged mitochondria. It is intricately linked to the cGAS–STING pathway, crucial for innate immunity. This pathway responds to mitochondrial DNA and is associated with cellular stress. Our review explores the molecular details and regulatory mechanisms of mitophagy and the cGAS–STING pathway. We critically evaluated the literature demonstrating how dysfunctional mitophagy leads to neuroinflammatory conditions, primarily through the accumulation of damaged mitochondria, activating the cGAS–STING pathway. This activation prompts the production of proinflammatory cytokines, exacerbating neuroinflammation. This review emphasizes the interaction between mitophagy and the cGAS–STING pathway. Effective mitophagy might suppress the cGAS–STING pathway, offering protection against neuroinflammation. Conversely, impaired mitophagy may activate the cGAS–STING pathway, potentially leading to chronic neuroinflammation. Additionally, we explored how this interaction influences neurodegenerative disorders, suggesting a common mechanism in such diseases. In conclusion, there is a need for additional targeted research to unravel the complexities of mitophagy–cGAS–STING interactions and their role in neurodegeneration. This review highlights potential therapies targeting these pathways, which could lead to new treatments for neuroinflammatory and neurodegenerative conditions. This synthesis enhances our understanding of the cellular and molecular foundations of neuroinflammation and opens new therapeutic avenues in neurodegenerative disease research.
科研通智能强力驱动
Strongly Powered by AbleSci AI