首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Conditioned medium of mesenchymal stem cells delays osteoarthritis progression in a rat model by protecting subchondral bone, maintaining matrix homeostasis, and enhancing autophagy
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Conditioned medium of mesenchymal stem cells delays osteoarthritis progression in a rat model by protecting subchondral bone, maintaining matrix homeostasis, and enhancing autophagy

机译:间充质干细胞的调节培养基通过保护骨髓内骨,维持基质稳态,增强自噬,延迟大鼠模型中的骨关节炎进展

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Abstract Evidence accumulated that mesenchymal stem cell (MSC) therapy ameliorated osteoarthritis (OA) via paracrine effect, whereas conditioned medium (CM) of MSCs contains all the secretomes. In vitro studies have proved its therapeutic effect in OA, but few in vivo evidences were unveiled. This study investigated the effect of MSCs–CM in an animal model of OA. OA was induced by anterior cruciate ligament transaction and destabilization of the medial meniscus in 12 rats bilaterally. The CM group ( N = 6) was administered with intraarticular injection of MSCs–CM weekly, whereas the phosphate‐buffered saline (PBS) group ( N = 6) was injected with PBS. Six rats served as normal control and received sham operation with weekly PBS injection. Rats were sacrificed 8 weeks postoperatively. Gross and histological morphology were analysed. Microcomputed tomography was applied to assess the subchondral bone. Components of extracellular matrix (ECM) including type II collagen (Col II) and aggrecan, and ECM homeostasis‐related enzymes (metalloproteinase‐13 [MMP‐13] and tissue inhibitor of metalloproteinase‐1 [TIMP‐1]), as well as autophagy markers (Beclin‐1 and microtubule‐associated protein light chain 3) were evaluated immunohistochemically. Chondrocyte apoptosis was measured by terminal deoxynucleotidyl transferase dUTP nick‐end labelling staining. Gene expression of Col II, aggrecan, MMP‐13, and TIMP‐1 was confirmed by real‐time polymerase chain reaction. Morphological outcomes demonstrated remarkable articular‐protective effect of MSCs–CM. Well‐maintained subchondral bone structure, significantly more abundant cartilage matrix, notably decreased ratio of MMP‐13 to TIMP‐1, and inhibited chondrocyte apoptosis with enhanced autophagy were observed in the CM group compared with the PBS group. In conclusion, MSCs–CM demonstrated satisfactory effect in alleviating OA in rats via protecting the microarchitecture of subchondral bone, balancing the ratio of MMP‐13 to TIMP‐1 in cartilage, and enhancing autophagy, which might provide a new remedy against OA.
机译:摘要证据积累了间充质干细胞(MSC)治疗通过旁碱效应改善了骨关节炎(OA),而调节培养基(CM)MSCs含有所有乳汁。在体外研究证明了其在OA中的治疗效果,但揭开了体内证据中的很少。本研究研究了MSCS-CM在OA的动物模型中的影响。通过双侧十六大肠中的前十字韧带交易和内侧弯月面的稳定化诱导OA。用细胞内注射MSCs-cm每周施用Cm组(n = 6),而磷酸盐缓冲盐水(PBS)基团(n = 6)注射PBS。六只大鼠用作正常控制,并通过每周PBS注射接收假手术。大鼠术后8周处死。分析了总体和组织学形态。应用微量断层扫描以评估骨髓内骨。细胞外基质(ECM)的组分,包括II型胶原(COL II)和聚集体和ECM稳态酶相关酶(金属蛋白酶-13 [MMP-13]和金属蛋白酶-1 [TIMP-1]的组织抑制剂),以及免疫组化评价自噬标记物(BECLIN-1和微管相关蛋白质轻链3)。通过末端脱氧核苷酸转移酶DUTP酸酐骨贴标染色测量软骨细胞凋亡。通过实时聚合酶链式反应确认COL II,Eggecan,MMP-13和TIMP-1的基因表达。形态学结果表明了MSCS-CM的显着关节保护作用。保持良好的骨髓性骨结构,显着丰富的软骨基质,显着降低MMP-13与TIMP-1的比例,并且在CM组中观察到与PBS组相比,在CM组中观察到具有增强的自噬的软骨细胞凋亡。总之,MSCS-CM通过保护子骨髓骨的微体系结构在大鼠中进行了令人满意的效果,通过保护子骨的微体系结构,平衡软骨中的MMP-13至TIMP-1的比例,并增强自噬,这可能为OA提供新的补救措施。

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