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软骨终板靶向工程化外泌体释放及酸中和水凝胶逆转椎间盘退变

Cartilage Endplate-Targeted Engineered Exosome Releasing and Acid Neutralizing Hydrogel Reverses Intervertebral Disc Degeneration.

作者信息

Zhan Jiawen, Cui Yongzhi, Zhang Ping, Du Yuxuan, Hecker Prisca, Zhou Shuaiqi, Liang Yupeng, Zhang Weiye, Jin Zhefeng, Wang Yuan, Gao Weihang, Moroz Oleksandr, Zhu Liguo, Zhang Xiaoguang, Zhao Ke

机构信息

Department of Orthopedics, Wangjing Hospital, China Academy of Chinese Medical Sciences, Beijing, 100000, China.

Department of Orthopaedics, Shanghai Sixth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200233, China.

出版信息

Adv Healthc Mater. 2025 Jan;14(2):e2403315. doi: 10.1002/adhm.202403315. Epub 2024 Nov 18.

DOI:10.1002/adhm.202403315
PMID:39555665
Abstract

Cartilage endplate cell (CEPC) and nucleus pulposus cell (NPC) inflammation are critical factors that contribute to intervertebral disc degeneration (IVDD). Recent evidence indicated that iron ion influx, reactive oxygen species (ROS), and the cGAS-STING pathway are involved in CEPC inflammatory degeneration. Moreover, cytokines produced by degenerating CEPCs and lactic acid accumulation within the microenvironment significantly contribute to NPC inflammation. Consequently, simultaneous alleviation of CEPC inflammation and correction of the acidic microenvironment are anticipated to reverse IVDD. Herein, CEPC-targeted engineered exosomes loaded with salvianolic acid A are incorporated into a CaCO/chitosan hydrogel, forming a composite gel, CAP-sEXOs@Gel. Notably, CAP-sEXOs@Gel shows long local retention, realizes the slow release of CAP-sEXOs and specific uptake by CEPCs. After uptake by CEPCs, CAP-sEXOs reduce intracellular iron ion and ROS by inhibiting hypoxia-inducible factor-2α (HIF-2α)/TfR1 expression. Iron ion influx and ROS inhibition contribute to the maintenance of normal mitochondrial function and reduced mtDNA leakage, suppresing the cGAS-STING pathway. Additionally, the CaCO component of CAP-sEXOs@Gel neutralizes H, thereby alleviating NPC inflammation. Collectively, this novel composite hydrogel demonstrates the ability to concurrently inhibit CEPC and NPC inflammation, thereby presenting a promising therapeutic approach for IVDD.

摘要

软骨终板细胞(CEPC)和髓核细胞(NPC)炎症是导致椎间盘退变(IVDD)的关键因素。最近的证据表明,铁离子内流、活性氧(ROS)和cGAS-STING通路参与了CEPC的炎症性退变。此外,退变的CEPC产生的细胞因子以及微环境中乳酸的积累显著促进了NPC炎症。因此,同时减轻CEPC炎症和纠正酸性微环境有望逆转IVDD。在此,将负载丹酚酸A的靶向CEPC的工程化外泌体掺入CaCO/壳聚糖水凝胶中,形成复合凝胶CAP-sEXOs@Gel。值得注意的是,CAP-sEXOs@Gel显示出较长的局部保留时间,实现了CAP-sEXOs的缓释以及被CEPC特异性摄取。被CEPC摄取后,CAP-sEXOs通过抑制缺氧诱导因子-2α(HIF-2α)/转铁蛋白受体1(TfR1)的表达来减少细胞内铁离子和ROS。铁离子内流和ROS的抑制有助于维持正常的线粒体功能并减少线粒体DNA泄漏,从而抑制cGAS-STING通路。此外,CAP-sEXOs@Gel的CaCO成分中和H⁺,从而减轻NPC炎症。总的来说,这种新型复合水凝胶证明了同时抑制CEPC和NPC炎症的能力,从而为IVDD提供了一种有前景的治疗方法。

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