线粒体DNA泄漏:神经疾病的潜在机制及治疗意义
Mitochondrial DNA leakage: underlying mechanisms and therapeutic implications in neurological disorders.
作者信息
Zhang Guangming, Wei Huayuan, Zhao Anliu, Yan Xu, Zhang Xiaolu, Gan Jiali, Guo Maojuan, Wang Jie, Zhang Fayan, Jiang Yifang, Liu Xinxing, Yang Zhen, Jiang Xijuan
机构信息
School of Integrative Medicine, Tianjin University of Traditional Chinese Medicine, No. 10, Poyang Lake Road, Tuanbo New City West District, Jinghai District, Tianjin, 301617, China.
Heart Disease Department, Tianjin Academy of Traditional Chinese Medicine Affiliated Hospital, Tianjin, China.
出版信息
J Neuroinflammation. 2025 Feb 7;22(1):34. doi: 10.1186/s12974-025-03363-0.
Mitochondrial dysfunction is a pivotal instigator of neuroinflammation, with mitochondrial DNA (mtDNA) leakage as a critical intermediary. This review delineates the intricate pathways leading to mtDNA release, which include membrane permeabilization, vesicular trafficking, disruption of homeostatic regulation, and abnormalities in mitochondrial dynamics. The escaped mtDNA activates cytosolic DNA sensors, especially cyclic gmp-amp synthase (cGAS) signalling and inflammasome, initiating neuroinflammatory cascades via pathways, exacerbating a spectrum of neurological pathologies. The therapeutic promise of targeting mtDNA leakage is discussed in detail, underscoring the necessity for a multifaceted strategy that encompasses the preservation of mtDNA homeostasis, prevention of membrane leakage, reestablishment of mitochondrial dynamics, and inhibition the activation of cytosolic DNA sensors. Advancing our understanding of the complex interplay between mtDNA leakage and neuroinflammation is imperative for developing precision therapeutic interventions for neurological disorders.
线粒体功能障碍是神经炎症的关键诱因,线粒体DNA(mtDNA)泄漏是关键中介。本综述阐述了导致mtDNA释放的复杂途径,包括膜通透性改变、囊泡运输、稳态调节破坏以及线粒体动力学异常。逸出的mtDNA激活胞质DNA传感器,尤其是环磷酸鸟苷-腺苷酸合成酶(cGAS)信号和炎性小体,通过多种途径引发神经炎症级联反应,加剧一系列神经病理状况。详细讨论了针对mtDNA泄漏的治疗前景,强调了采取多方面策略的必要性,该策略包括维持mtDNA稳态、防止膜泄漏、恢复线粒体动力学以及抑制胞质DNA传感器的激活。加深我们对mtDNA泄漏与神经炎症之间复杂相互作用的理解对于开发针对神经疾病的精准治疗干预措施至关重要。