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17-DMAG regulates p21 expression to induce chondrogenesis in vitro and in vivo

机译:17-DMAG在体内外调节p21表达以诱导软骨形成

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Cartilage degeneration after injury affects a significant percentage of the population, including those that will go on to develop osteoarthritis (OA). Like humans, most mammals, including mice, are incapable of regenerating injured cartilage. Interestingly, it has previously been shown that p21 ( Cdkn1a ) knockout (p21sup?/?/sup) mice demonstrate auricular (ear) cartilage regeneration. However, the loss of p21 expression is highly correlated with the development of numerous types of cancer and autoimmune diseases, limiting the therapeutic translation of these findings. Therefore, in this study, we employed a screening approach to identify an inhibitor (17-DMAG) that negatively regulates the expression of p21. We also validated that this compound can induce chondrogenesis in vitro (in adult mesenchymal stem cells) and in vivo (auricular cartilage injury model). Furthermore, our results suggest that 17-DMAG can induce the proliferation of terminally differentiated chondrocytes ( in vitro and in vivo ), while maintaining their chondrogenic phenotype. This study provides new insights into the regulation of chondrogenesis that might ultimately lead to new therapies for cartilage injury and/or OA.
机译:受伤后的软骨变性影响了很大一部分人口,包括那些将继续发展为骨关节炎(OA)的人口。像人类一样,大多数哺乳动物,包括小鼠,都无法再生受伤的软骨。有趣的是,先前已证明p21(Cdkn1a)基因敲除(p21 ?/?)小鼠表现出耳(耳)软骨再生。然而,p21表达的丧失与多种类型的癌症和自身免疫性疾病的发展高度相关,从而限制了这些发现的治疗翻译。因此,在这项研究中,我们采用了一种筛选方法来鉴定对p21表达负调控的抑制剂(17-DMAG)。我们还验证了该化合物可在体外(在成人间充质干细胞中)和在体内(耳软骨损伤模型)诱导软骨形成。此外,我们的结果表明17-DMAG可以诱导最终分化的软骨细胞(体外和体内)增殖,同时保持其软骨形成表型。这项研究为软骨形成的调控提供了新的见识,可能最终导致软骨损伤和/或OA的新疗法。

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