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线粒体“生死”协调员:一种智能氢纳米发电机,可增强椎间盘再生。

Mitochondrial 'Birth-Death' coordinator: An intelligent hydrogen nanogenerator to enhance intervertebral disc regeneration.

机构信息

Department of Spine Surgery, Renji Hospital, Shanghai Jiao Tong University School of Medicine, No.160 Pujian Road, Shanghai, 200127, PR China.

Shanghai Frontiers Science Center of Biomimetic Catalysis, College of Chemical and Materials Sciences, Shanghai Normal University, No. 100 Guilin Road, Shanghai, 200234, PR China.

出版信息

Biomaterials. 2025 Feb;313:122764. doi: 10.1016/j.biomaterials.2024.122764. Epub 2024 Aug 22.

Abstract

Currently, mitochondrial dysfunction caused by oxidative stress is a growing concern in degenerative diseases, notably intervertebral disc degeneration (IVDD). Dysregulation of the balance of mitochondrial quality control (MQC) has been considered the key contributor, while it's still challenging to effectively harmonize different MQC components in a simple and biologically safe way. Hydrogen gas (H) is a promising mitochondrial therapeutic molecule due to its bio-reductivity and diffusibility across cellular membranes, yet its relationship with MQC regulation remains unknown. Herein, we propose a mitochondrial 'Birth-Death' coordinator achieved by an intelligent hydrogen nanogenerator (Fe@HP-OD), which can sustainably release H in response to the unique microenvironment in degenerated IVDs. Both in vitro and in vivo results prove alleviation of cellular oxidative stress and restoration of nucleus pulposus cells function, thereby facilitating successful IVD regeneration. Significantly, this study for the first time proposes the mitochondrial 'Birth-Death' coordination mechanism: 1) attenuation of overactivated mitochondrial 'Death' process (UPR and unselective mitophagy); and 2) activation of Adenosine 5'-monophosphate-activated protein kinase (AMPK) signaling pathway for mitochondrial 'Birth-Death' balance (mitochondrial biogenesis and controlled mitophagy). These pioneering findings can fill in the gaps in molecular mechanisms for H regulation on MQC homeostasis, and pave the way for future strategies towards restoring equilibrium of MQC system against degenerative diseases.

摘要

目前,氧化应激引起的线粒体功能障碍是退行性疾病(尤其是椎间盘退变)日益关注的问题。线粒体质量控制(MQC)平衡的失调被认为是主要原因,但以简单和生物安全的方式有效地协调不同的 MQC 成分仍然具有挑战性。氢气(H)是一种很有前途的线粒体治疗分子,因为它具有生物还原性和跨细胞膜的扩散性,但它与 MQC 调节的关系尚不清楚。在此,我们提出了一种通过智能氢纳米发电机(Fe@HP-OD)实现的线粒体“生死”协调器,它可以根据退变椎间盘的独特微环境持续释放 H。体外和体内实验结果均证明可减轻细胞氧化应激和恢复髓核细胞功能,从而促进椎间盘的成功再生。值得注意的是,本研究首次提出了线粒体“生死”协调机制:1)减弱过度激活的线粒体“死亡”过程(UPR 和非选择性自噬);和 2)激活腺苷酸 5'-单磷酸激活蛋白激酶(AMPK)信号通路以实现线粒体“生死”平衡(线粒体生物发生和受控自噬)。这些开创性的发现可以填补 H 对 MQC 动态平衡调节的分子机制中的空白,并为未来针对退行性疾病恢复 MQC 系统平衡的策略铺平道路。

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