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靶向线粒体修复的纳米酶在疾病治疗中的应用。

Nanozymes targeting mitochondrial repair in disease treatment.

机构信息

Institute for Translational Medicine, The Affiliated Hospital of Qingdao University, Qingdao University, Qingdao, China.

Obstetric Ultrasound Department, Qingdao Women and Children's Hospital, Qingdao University, Qingdao, China.

出版信息

J Biotechnol. 2024 Nov 10;394:57-72. doi: 10.1016/j.jbiotec.2024.08.008. Epub 2024 Aug 17.

DOI:10.1016/j.jbiotec.2024.08.008
PMID:39159753
Abstract

Mitochondria are crucial sites for biological oxidation and substance metabolism and plays a vital role in maintaining intracellular homeostasis. When mitochondria undergo oxidative damage or dysfunction, they can harm the organism, leading to various reactive oxygen species (ROS)-related diseases. Therefore, therapies targeting mitochondria are a strategy for treating multiple diseases. Many nanozymes can mimic antioxidant enzymes, which enables them to eliminate ROS to mitigate mitochondrial dysfunction. The therapeutic approaches and drugs targeting the mitochondrial electron transport chain (ETC) have emerged as effective treatments for oxidative stress-related diseases resulting from mitochondrial respiratory chain disorders. Therefore, nanozymes that can regulate homeostasis in the mitochondrial ETC have emerged as effective therapeutic agents for treating oxidative stress-related diseases. In addition, benefit from the controllability and modifiability of nanozymes, their modification with TPP, SS-31 peptide, and mitochondrial permeability membrane peptide to eliminate ROS and repair mitochondrial function. The nanozymes that specifically target mitochondria are powerful tools for the treatment of ROS-associated disorders. We discussed the design strategies pertaining to mitochondrion-targeted nanozymes to treat various diseases to develop more efficacious nanozyme tools for the treatment of ROS-related diseases in the future.

摘要

线粒体是生物氧化和物质代谢的关键场所,对维持细胞内环境稳定起着至关重要的作用。当线粒体发生氧化损伤或功能障碍时,会对机体造成损害,导致多种与活性氧(ROS)相关的疾病。因此,针对线粒体的治疗方法是治疗多种疾病的一种策略。许多纳米酶可以模拟抗氧化酶,从而消除 ROS 以减轻线粒体功能障碍。靶向线粒体电子传递链(ETC)的治疗方法和药物已成为治疗因线粒体呼吸链障碍引起的氧化应激相关疾病的有效方法。因此,能够调节线粒体 ETC 中动态平衡的纳米酶已成为治疗氧化应激相关疾病的有效治疗剂。此外,得益于纳米酶的可控性和可修饰性,可以通过 TPP、SS-31 肽和线粒体通透性膜肽对其进行修饰,以消除 ROS 并修复线粒体功能。特异性靶向线粒体的纳米酶是治疗 ROS 相关疾病的有力工具。我们讨论了针对各种疾病的线粒体靶向纳米酶的设计策略,以开发更有效的纳米酶工具来治疗与 ROS 相关的疾病。

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Nanozymes targeting mitochondrial repair in disease treatment.靶向线粒体修复的纳米酶在疾病治疗中的应用。
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Targeted Treatment Strategies for Mitochondria Dysfunction: Correlation with Neurological Disorders.靶向治疗线粒体功能障碍策略:与神经紊乱的相关性。
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Mitochondrial function and redox control in the aging eye: role of MsrA and other repair systems in cataract and macular degenerations.衰老眼睛中的线粒体功能与氧化还原调控:甲硫氨酸亚砜还原酶A及其他修复系统在白内障和黄斑变性中的作用
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