高谷胱甘肽水平间充质干细胞分泌的胰岛素样生长因子2通过旁分泌性衰老软骨细胞返老还童缓解骨关节炎。

IF 8.1 Q1 ENGINEERING, BIOMEDICAL
Biomaterials research Pub Date : 2025-02-21 eCollection Date: 2025-01-01 DOI:10.34133/bmr.0152
Gun Hee Cho, Hyun Cheol Bae, Yu Jeong Lee, Ha Ru Yang, Hyewon Kang, Hee Jung Park, Sun Young Wang, You Jung Kim, Heun-Soo Kang, In Gyu Kim, Byung Sun Choi, Hyuk-Soo Han
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引用次数: 0

摘要

在骨关节炎(OA)软骨中增加的衰老软骨细胞,通过分泌衰老相关分泌蛋白,诱导周围正常软骨细胞衰老,从而促进软骨缺损和衰老的膝关节微环境。许多研究使用间充质干细胞(MSCs)治疗OA,但由于间充质干细胞的质量控制、植入和纤维软骨再生,MSC治疗在临床应用中仍然具有挑战性。在这里,我们提出了一种新的策略,通过MSCs的旁分泌活性,通过MSCs介导的衰老软骨细胞靶向来抑制OA,从而改善膝关节微环境,而不是依赖MSCs的直接再生。首先,为了控制脐带间充质干细胞的质量,通过补充人血小板裂解液(hPL)来激活间充质干细胞,通过连续传代增加细胞谷胱甘肽水平,极大地增强了间充质干细胞的功能。关节内注射引物MSCs成功抑制OA进展和衰老软骨细胞积累,没有直接再生。使用transwell与引物MSCs间接共培养可改善OA软骨细胞的衰老表型,提示旁分泌年轻化。基于分泌组分析,我们发现胰岛素样生长因子2 (IGF2)是诱导MSCs旁分泌年轻化的关键成分。IGF2的年轻化作用是通过上调自噬相关基因表达和自噬通量来激活自噬。为了在体内交叉验证分泌的IGF2的作用,在兔OA模型中,在诱导的MSCs中敲低IGF2实质上取消了其治疗效果。总的来说,这些发现表明,hPL补充剂可以通过增加MSC谷胱甘肽水平来控制MSC的质量。MSCs的治疗机制是分泌IGF2,通过激活自噬诱导衰老OA软骨细胞旁分泌返老还老。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Insulin-Like Growth Factor 2 Secreted from Mesenchymal Stem Cells with High Glutathione Levels Alleviates Osteoarthritis via Paracrine Rejuvenation of Senescent Chondrocytes.

Senescent chondrocytes, which are increased in osteoarthritic (OA) cartilage, promote cartilage defects and the senescent knee microenvironment by inducing senescence to surrounding normal chondrocytes by secreting senescence-associated secretory proteins. Many studies have used mesenchymal stem cells (MSCs) to treat OA, but MSC treatment remains challenging for clinical application owing to MSC quality control, engraftment, and fibrocartilage regeneration. Here, rather than relying on the direct regeneration of MSCs, we present a novel strategy to suppress OA by MSC-mediated senescent chondrocyte targeting via the paracrine activity of MSCs, thereby improving the knee microenvironment. First, to enable quality control of umbilical cord MSCs, priming MSCs by supplementing human platelet lysate (hPL) greatly enhanced MSC functions by increasing cellular glutathione levels throughout serial passaging. Intra-articular injection of primed MSCs successfully suppressed OA progression and senescent chondrocyte accumulation without direct regeneration. Indirect coculture with primed MSCs using transwell ameliorated the senescence phenotypes in OA chondrocytes, suggesting paracrine rejuvenation. Based on secretome analysis, we identified insulin-like growth factor 2 (IGF2) as a key component that induces paracrine rejuvenation by primed MSCs. The rejuvenation effects of IGF2 act through autophagy activation through the up-regulation of autophagy-related gene expression and autophagic flux. To cross-validate the effects of secreted IGF2 in vivo, knockdown of IGF2 in primed MSCs substantially abolished its therapeutic efficacy in a rabbit OA model. Collectively, these findings demonstrate that hPL supplementation enables MSC quality control by increasing MSC glutathione levels. The therapeutic mechanism of primed MSCs was secreted IGF2, which induces paracrine rejuvenation of senescent OA chondrocytes by activating autophagy.

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