Abstract

Adipose-derived mesenchymal stem cells (ADSCs) are promising candidate for regenerative medicine to repair non-healing bone defects due to their high and easy availability. However, the limited osteogenic differentiation potential greatly hinders the clinical application of ADSCs in bone repair. Accumulating evidences demonstrate that circular RNAs (circRNAs) are involved in stem/progenitor cell fate determination, but their specific role in stem/progenitor cell osteogenesis, remains mostly undescribed. Here, we show that circRNA-vgll3 originating from the vgll3 locus markedly enhances osteogenic differentiation of ADSCs; nevertheless, silencing of circRNA-vgll3 dramatically attenuates ADSC osteogenesis. Furthermore, we validate that circRNA-vgll3 functions in ADSC osteogenesis through a circRNA-vgll3/miR-326-5p/integrin α5 (Itga5) pathway. Itga5 promotes ADSC osteogenic differentiation and miR-326-5p suppresses Itga5 translation. CircRNA-vgll3 directly sequesters miR-326-5p in the cytoplasm and inhibits its activity to promote osteogenic differentiation. Moreover, the therapeutic potential of circRNA-vgll3-modified ADSCs with calcium phosphate cement (CPC) scaffolds was systematically evaluated in a critical-sized defect model in rats. Our results demonstrate that circRNA-vgll3 markedly enhances new bone formation with upregulated bone mineral density, bone volume/tissue volume, trabeculae number, and increased new bone generation. This study reveals the important role of circRNA-vgll3 during new bone biogenesis. Thus, circRNA-vgll3 engineered ADSCs may be effective potential therapeutic targets for bone regenerative medicine.

Highlights

  • These authors contributed : Dandan Zhang, Ni Ni, Yuyao WangEdited by E

  • Adipose-derived mesenchymal stem cells (ADSCs) were identified by flow cytometry and showed high expression of CD29 and CD90 and hardly express CD45 and CD31 (Supplementary Fig. 1)

  • In order to address whether the RNAs have function for ADSC osteogenic differentiation at endogenous levels, we investigated the relative expression of circRNA-vgll3, miR326-5p and the osteogenic makers Runx2, OPN by Quantitative polymerase chain reaction (qPCR) analyses during the differentiation of ADSCs without transfections

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Summary

Objectives

The purpose of this study was to uncover the modulatory factors in osteogenic differentiation of ADSCs and lay a foundation for further application of ADSCs in bone regeneration

Methods
Results
Conclusion
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