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间充质干细胞与铁死亡:临床机遇与挑战

Mesenchymal stem cells and ferroptosis: Clinical opportunities and challenges.

作者信息

Cui Mengling, Chen Fukun, Shao Lishi, Wei Chanyan, Zhang Weihu, Sun Wenmei, Wang Jiaping

机构信息

Department of Radiology, Second Affiliated Hospital of Kunming Medical University, Kunming, Yunnan, 650101, PR China.

Department of Radiology, Kunming Medical University & the Third Affiliated Hospital, Kunming, Yunnan, 650101, PR China.

出版信息

Heliyon. 2024 Feb 3;10(3):e25251. doi: 10.1016/j.heliyon.2024.e25251. eCollection 2024 Feb 15.

Abstract

OBJECTIVE

This review discusses recent experimental and clinical findings related to ferroptosis, with a focus on the role of MSCs. Therapeutic efficacy and current applications of MSC-based ferroptosis therapies are also discussed.

BACKGROUND

Ferroptosis is a type of programmed cell death that differs from apoptosis, necrosis, and autophagy; it involves iron metabolism and is related to the pathogenesis of many diseases, such as Parkinson's disease, cancers, and liver diseases. In recent years, the use of mesenchymal stem cells (MSCs) and MSC-derived exosomes has become a trend in cell-free therapies. MSCs are a heterogeneous cell population isolated from a diverse range of human tissues that exhibit immunomodulatory functions, regulate cell growth, and repair damaged tissues. In addition, accumulating evidence indicates that MSC-derived exosomes play an important role, mainly by carrying a variety of bioactive substances that affect recipient cells. The potential mechanism by which MSC-derived exosomes mediate the effects of MSCs on ferroptosis has been previously demonstrated. This review provides the first overview of the current knowledge on ferroptosis, MSCs, and MSC-derived exosomes and highlights the potential application of MSCs exosomes in the treatment of ferroptotic conditions. It summarizes their mechanisms of action and techniques for enhancing MSC functionality. Results obtained from a large number of experimental studies revealed that both local and systemic administration of MSCs effectively suppressed ferroptosis in injured hepatocytes, neurons, cardiomyocytes, and nucleus pulposus cells and promoted the survival and regeneration of injured organs.

METHODS

We reviewed the role of ferroptosis in related tissues and organs, focusing on its characteristics in different diseases. Additionally, the effects of MSCs and MSC-derived exosomes on ferroptosis-related pathways in various organs were reviewed, and the mechanism of action was elucidated. MSCs were shown to improve the disease course by regulating ferroptosis.

摘要

目的

本综述讨论了与铁死亡相关的近期实验和临床研究结果,重点关注间充质干细胞(MSCs)的作用。还讨论了基于MSCs的铁死亡疗法的治疗效果和当前应用。

背景

铁死亡是一种程序性细胞死亡,不同于凋亡、坏死和自噬;它涉及铁代谢,与许多疾病的发病机制有关,如帕金森病、癌症和肝脏疾病。近年来,间充质干细胞(MSCs)和MSCs衍生的外泌体的应用已成为无细胞疗法的一个趋势。MSCs是从多种人体组织中分离出来的异质性细胞群体,具有免疫调节功能,可调节细胞生长并修复受损组织。此外,越来越多的证据表明,MSCs衍生的外泌体发挥着重要作用,主要是通过携带多种影响受体细胞的生物活性物质。此前已证明MSCs衍生的外泌体介导MSCs对铁死亡影响的潜在机制。本综述首次概述了目前关于铁死亡、MSCs和MSCs衍生的外泌体的知识,并强调了MSCs外泌体在治疗铁死亡相关病症中的潜在应用。它总结了它们的作用机制和增强MSCs功能的技术。大量实验研究结果表明,局部和全身施用MSCs均能有效抑制受损肝细胞、神经元、心肌细胞和髓核细胞中的铁死亡,并促进受损器官的存活和再生。

方法

我们综述了铁死亡在相关组织和器官中的作用,重点关注其在不同疾病中的特征。此外,还综述了MSCs和MSCs衍生的外泌体对各器官中铁死亡相关途径的影响,并阐明了其作用机制。结果表明,MSCs通过调节铁死亡来改善病程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9513/10864896/36da2126e21b/gr1.jpg

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