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miR-490-5p的抑制通过PITPNM1/PI3K/AKT轴促进人脂肪来源干细胞软骨生成并保护软骨细胞。

Inhibition of miR-490-5p Promotes Human Adipose-Derived Stem Cells Chondrogenesis and Protects Chondrocytes via the PITPNM1/PI3K/AKT Axis.

作者信息

Li Hongyi, Zhao Xiaoyi, Wen Xingzhao, Zeng Anyu, Mao Guping, Lin Ruifu, Hu Shu, Liao Weiming, Zhang Zhiqi

机构信息

Department of Joint Surgery, The First Affiliated Hospital of Sun Yat-sen University, Guangzhou, China.

Guangdong Provincial Key Laboratory of Orthopedics and Traumatology, Guangzhou, China.

出版信息

Front Cell Dev Biol. 2020 Nov 9;8:573221. doi: 10.3389/fcell.2020.573221. eCollection 2020.

Abstract

MicroRNAs (miRNAs) play a pivotal role in cartilage development and homeostasis in osteoarthritis (OA). While the fundamental roles of miRNAs in cartilage degeneration have been extensively studied, their effects on chondrogenic differentiation induced by human adipose-derived stem cells (hADSCs) and the underlying mechanisms remain largely elusive. Here, we investigated the roles and mechanisms of miRNAs in hADSC chondrogenic differentiation and chondrocyte homeostasis. Using microarray analysis, we screened miRNAs expressed in the chondrogenic differentiated hADSCs and identified miR-490-5p as the most significantly down-regulated miRNA. We analyzed its expression patterns during chondrogenesis and . Our study showed that miR-490-5p overexpression promoted the transition of hADSCs from chondrogenesis to osteogenesis. In addition, based on miRNA-mRNA prediction analysis and dual-luciferase reporter assay, we proposed and proved that miR-490-5p targeted PITPNM1 by binding to its 3'-UTR and inhibiting its translation. Moreover, loss- and gain-of-function experiments identified the involvement of the PI3K/AKT signaling pathway, and a rescue experiment determined the effect and specific mechanism of the miR-490-5p/PITPNM1/PI3K/AKT axis in hADSC chondrogenic differentiation and chondrocyte homeostasis. Inhibition of miR-490-5p alleviated cartilage injury as demonstrated using the destabilization of the medial meniscus (DMM) OA model. We identified miR-490-5p as a novel modulator of hADSC-mediated chondrogenesis and chondrocyte phenotype. This study highlighted that miR-490-5p attenuated hADSC chondrogenesis and accelerated cartilage degradation through activation of the PI3K/AKT signaling pathway by targeting PITPNM1. Inhibition of miR-490-5p facilitated hADSC chondrogenic differentiation and protected chondrocyte phenotype via the PITPNM1/PI3K/AKT axis, thus providing a novel stem cell potential therapeutic target for OA treatment.

摘要

微小RNA(miRNA)在骨关节炎(OA)的软骨发育和稳态中起关键作用。虽然miRNA在软骨退变中的基本作用已得到广泛研究,但其对人脂肪来源干细胞(hADSC)诱导的软骨形成分化的影响及潜在机制仍 largely难以捉摸。在此,我们研究了miRNA在hADSC软骨形成分化和软骨细胞稳态中的作用及机制。通过微阵列分析,我们筛选了在软骨形成分化的hADSC中表达的miRNA,并确定miR-490-5p为下调最显著的miRNA。我们分析了其在软骨形成过程中的表达模式。我们的研究表明,miR-490-5p过表达促进hADSC从软骨形成向成骨转变。此外,基于miRNA-mRNA预测分析和双荧光素酶报告基因检测,我们提出并证明miR-490-5p通过与其3'-UTR结合并抑制其翻译来靶向PITPNM1。此外,功能丧失和功能获得实验确定了PI3K/AKT信号通路的参与,一项挽救实验确定了miR-490-5p/PITPNM1/PI3K/AKT轴在hADSC软骨形成分化和软骨细胞稳态中的作用及特定机制。使用内侧半月板不稳定(DMM)OA模型证明,抑制miR-490-5p可减轻软骨损伤。我们确定miR-490-5p是hADSC介导的软骨形成和软骨细胞表型的新型调节因子。这项研究强调,miR-490-5p通过靶向PITPNM1激活PI3K/AKT信号通路,减弱hADSC软骨形成并加速软骨降解。抑制miR-490-5p通过PITPNM1/PI3K/AKT轴促进hADSC软骨形成分化并保护软骨细胞表型,从而为OA治疗提供了一个新的干细胞潜在治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/633a/7680841/20ecd1365356/fcell-08-573221-g001.jpg

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