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经miR-145修饰的鹿茸储备间充质细胞促进软骨再生中的软骨形成。

Deer antler reserve mesenchyme cells modified with miR-145 promote chondrogenesis in cartilage regeneration.

作者信息

Jia Boyin, Han Xintong, Li Xin, Zhang Linlin, Ma Fuquan, Wang Yusu, Wang Xue, Yan Yaru, Li Yaxin, Shen Junnan, Chen Xinran, Li Xinyi, Zhang Qianzhen, Hu Pengfei, Du Rui

机构信息

College of Animal Medicine/College of Animal Science and Technology, Jilin Agricultural University, Changchun, China.

Laboratory of Production and Product Application of Sika Deer of Jilin Province, Jilin Agricultural University, Changchun, China.

出版信息

Front Vet Sci. 2024 Dec 24;11:1500969. doi: 10.3389/fvets.2024.1500969. eCollection 2024.

Abstract

Deer antler-derived reserve mesenchyme cells (RMCs) are a promising source of cells for cartilage regeneration therapy due to their chondrogenic differentiation potential. However, the regulatory mechanism has not yet been elucidated. In this study, we analyzed the role of microRNAs (miRNAs) in regulating the differentiation of RMCs and in the post-transcriptional regulation of chondrogenesis and hypertrophic differentiation at the molecular and histological levels. The results showed that RMCs showed typical MSC differentiation potentials. During chondrogenic differentiation, we obtained the expression profile of miRNAs, among which miR- 145 was the most prominent candidate as a key microRNA involved in the balance of chondral and endochondral differentiation. Knockdown of miR-145 promoted chondrogenesis and inhibited hypertrophy differentiation in RMCs. Mechanically, by prediction through online databases combined with dual-luciferase reporter assay, SOX9 was suggested as a target of miR-145. Further validation experiments confirmed that knockdown of miR-145 contributed to the balance between endochondral versus chondral differentiation of RMCs by targeting SOX9. Additionally, RMCs transfected with the miR-145-knockdown-mediated lentiviral vector successfully promoted cartilage regeneration . In summary, our study suggested that the reciprocal negative feedback between SOX9 and miR-145 was essential for balancing between endochondral versus chondral differentiation of RMCs. Our study suggested that modification of RMCs using miRNAs transduction might be an effective treatment for cartilage defects.

摘要

鹿茸来源的储备间充质细胞(RMCs)因其软骨形成分化潜能,是软骨再生治疗中很有前景的细胞来源。然而,其调控机制尚未阐明。在本研究中,我们在分子和组织学水平分析了微小RNA(miRNAs)在调节RMCs分化以及软骨形成和肥大分化的转录后调控中的作用。结果表明,RMCs表现出典型的间充质干细胞分化潜能。在软骨形成分化过程中,我们获得了miRNAs的表达谱,其中miR - 145作为参与软骨内和软骨间分化平衡的关键微小RNA是最突出的候选者。敲低miR - 145可促进RMCs的软骨形成并抑制肥大分化。从机制上讲,通过在线数据库预测并结合双荧光素酶报告基因检测,SOX9被认为是miR - 145的一个靶标。进一步的验证实验证实,敲低miR - 145通过靶向SOX9有助于RMCs软骨内与软骨间分化的平衡。此外,用miR - 145敲低介导的慢病毒载体转染的RMCs成功促进了软骨再生。总之,我们的研究表明,SOX9和miR - 145之间的相互负反馈对于平衡RMCs的软骨内与软骨间分化至关重要。我们的研究表明,利用miRNAs转导修饰RMCs可能是治疗软骨缺损的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb5a/11705092/6f02a20beb2d/fvets-11-1500969-g001.jpg

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