Exosomes derived from mesenchymal stem cells inhibit catabolism in human chondrocytes by activating autophagy via inhibition of the NF-κB pathway

Jian-fa Wang, Zhi Zhu, Lei Sun, Shimeng Shao, Baoyu Ma, Yaofeng Wang, R. Jin, Hongbo Hao, Han Yue
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Abstract

Objective: We aimed to determine the significance of MSC-derived exosomes (MSC-Exos) in chondrocyte autophagy under normal and inflammatory conditions.Design: Human umbilical cord-derived MSCs (hMSCs) were cultured in vitro. hMSC-Exos( EX) were isolated by an ultracentrifugation method. Transmission electron microscopy and western analysis were used to identify exosomes. Human chondrocytes were extracted from five adult males with OA undergoing total knee arthroplasty. Primary cultures of chondrocytes from OA patients were stimulated with 50 ng/ml tumor necrosis factor-α (TNF-α) in the presence or absence of hMSC-Exos. Autophagy levels were determined based on expression of autophagic marker LC3, StubRFP-SensGFP-LC3 analysis, and electron microscopy. Catabolic gene and chemokine expression were evaluated using quantitative PCR. The NF-κB inhibitor NS398 was used to analyze the role of the NF-κB pathway in autophagic activation.Results: hMSC-Exos increased LC3-II levels as well as autophagosome number in chondrocytes. hMSC-Exos inhibited TNF-α–induced expression of MMP-3, -9, and -13; ADAMTS5; CCL-2 and -5; and CXCL1. NF-κB inhibition activated autophagy in TNF-α–treated chondrocytes. These results indicate that hMSC-Exos might suppress the levels of catabolic and inflammatory factors in chondrocytes by promoting autophagy via NF-κB pathway inhibition.Conclusions: Our data support the interest in hMSC-Exos to develop new therapeutic approaches for joint conditions.
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来自间充质干细胞的外泌体通过抑制NF-κB通路激活自噬来抑制人软骨细胞的分解代谢
目的:我们旨在确定在正常和炎症条件下,msc来源的外泌体(MSC-Exos)在软骨细胞自噬中的意义。设计:体外培养人脐带来源的间充质干细胞(hMSCs)。采用超离心法分离hMSC-Exos(EX)。透射电镜和western分析鉴定外泌体。从5名接受全膝关节置换术的成年OA患者身上提取软骨细胞。在存在或不存在hMSC-Exos的情况下,用50 ng/ml肿瘤坏死因子-α (TNF-α)刺激OA患者软骨细胞的原代培养。通过自噬标志物LC3的表达、StubRFP-SensGFP-LC3分析和电镜观察来确定自噬水平。采用定量PCR检测分解代谢基因和趋化因子的表达。采用NF-κB抑制剂NS398分析NF-κB通路在自噬激活中的作用。结果:hMSC-Exos增加了软骨细胞LC3-II水平和自噬体数量。hMSC-Exos抑制TNF-α -诱导的MMP-3、-9、-13的表达;ADAMTS5;CCL-2和-5;和处于受控。NF-κB抑制可激活TNF-α -处理的软骨细胞自噬。这些结果表明,hMSC-Exos可能通过抑制NF-κB通路促进软骨细胞自噬,从而抑制软骨细胞中分解代谢因子和炎症因子的水平。结论:我们的数据支持对hMSC-Exos开发新的关节疾病治疗方法的兴趣。
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