Extracellular vesicles deliver thioredoxin to rescue stem cells from senescence and intervertebral disc degeneration via a feed-forward circuit of the NRF2/AP-1 composite pathway

IF 14.6 1区 医学 Q1 PHARMACOLOGY & PHARMACY Acta Pharmaceutica Sinica. B Pub Date : 2025-02-01 Epub Date: 2024-12-17 DOI:10.1016/j.apsb.2024.12.013
Xuanzuo Chen , Sheng Liu , Huiwen Wang , Yiran Liu , Yan Xiao , Kanglu Li , Feifei Ni , Wei Wu , Hui Lin , Xiangcheng Qing , Feifei Pu , Baichuan Wang , Zengwu Shao , Yizhong Peng
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Abstract

Intervertebral disc degeneration (IDD) is largely attributed to impaired endogenous repair. Nucleus pulposus-derived stem cells (NPSCs) senescence leads to endogenous repair failure. Small extracellular vesicles/exosomes derived from mesenchymal stem cells (mExo) have shown great therapeutic potential in IDD, while whether mExo could alleviate NPSCs senescence and its mechanisms remained unknown. We established a compression-induced NPSCs senescence model and rat IDD models to evaluate the therapeutic efficiency of mExo and investigate the mechanisms. We found that mExo significantly alleviated NPSCs senescence and promoted disc regeneration while knocking down thioredoxin (TXN) impaired the protective effects of mExo. TXN was bound to various endosomal sorting complex required for transport (ESCRT) proteins. Autocrine motility factor receptor (AMFR) mediated TXN K63 ubiquitination to promote the binding of TXN on ESCRT proteins and sorting of TXN into mExo. Knocking down exosomal TXN inhibited the transcriptional activity of nuclear factor erythroid 2-related factor 2 (NRF2) and activator protein 1 (AP-1). NRF2 and AP-1 inhibition reduced endogenous TXN production that was promoted by exosomal TXN. Inhibition of NRF2 in vivo diminished the anti-senescence and regenerative effects of mExo. Conclusively, AMFR-mediated TXN ubiquitination promoted the sorting of TXN into mExo, allowing exosomal TXN to promote endogenous TXN production in NPSCs via TXN/NRF2/AP-1 feed-forward circuit to alleviate NPSCs senescence and disc degeneration.

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细胞外囊泡通过NRF2/AP-1复合通路的前馈回路递送硫氧还蛋白以拯救干细胞免于衰老和椎间盘退变
椎间盘退变(IDD)主要归因于内源性修复受损。髓核来源的干细胞(NPSCs)衰老导致内源性修复失败。来自间充质干细胞(mesenchymal stem cells, mExo)的小细胞外囊泡/外泌体在IDD中显示出巨大的治疗潜力,但mExo是否能缓解npsc衰老及其机制尚不清楚。我们建立了压缩诱导的NPSCs衰老模型和大鼠IDD模型,以评价mExo的治疗效果并探讨其作用机制。我们发现,mExo显著缓解了npsc的衰老,促进了椎间盘再生,而敲低硫氧还蛋白(TXN)则削弱了mExo的保护作用。TXN与各种运输所需的内体分选复合体(ESCRT)蛋白结合。自分泌运动因子受体(AMFR)介导TXN K63泛素化,促进TXN在ESCRT蛋白上的结合和TXN在mExo中的分选。下调外泌体TXN可抑制核因子红系2相关因子2 (NRF2)和激活蛋白1 (AP-1)的转录活性。NRF2和AP-1抑制降低了外泌体TXN促进的内源性TXN的产生。体内抑制NRF2可降低mExo的抗衰老和再生作用。总之,amfr介导的TXN泛素化促进了TXN向mExo的分选,使外泌体TXN通过TXN/NRF2/AP-1前馈回路促进NPSCs内源性TXN的产生,从而减轻NPSCs的衰老和椎间盘退变。
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来源期刊
Acta Pharmaceutica Sinica. B
Acta Pharmaceutica Sinica. B Pharmacology, Toxicology and Pharmaceutics-General Pharmacology, Toxicology and Pharmaceutics
CiteScore
22.40
自引率
5.50%
发文量
1051
审稿时长
19 weeks
期刊介绍: The Journal of the Institute of Materia Medica, Chinese Academy of Medical Sciences, and the Chinese Pharmaceutical Association oversees the peer review process for Acta Pharmaceutica Sinica. B (APSB). Published monthly in English, APSB is dedicated to disseminating significant original research articles, rapid communications, and high-quality reviews that highlight recent advances across various pharmaceutical sciences domains. These encompass pharmacology, pharmaceutics, medicinal chemistry, natural products, pharmacognosy, pharmaceutical analysis, and pharmacokinetics. A part of the Acta Pharmaceutica Sinica series, established in 1953 and indexed in prominent databases like Chemical Abstracts, Index Medicus, SciFinder Scholar, Biological Abstracts, International Pharmaceutical Abstracts, Cambridge Scientific Abstracts, and Current Bibliography on Science and Technology, APSB is sponsored by the Institute of Materia Medica, Chinese Academy of Medical Sciences, and the Chinese Pharmaceutical Association. Its production and hosting are facilitated by Elsevier B.V. This collaborative effort ensures APSB's commitment to delivering valuable contributions to the pharmaceutical sciences community.
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