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载 miR-29a 丰富的 BMSCs 衍生外泌体的多功能可注射水凝胶微球通过调节成骨和血管生成增强骨再生。

Multifunctional Injectable Hydrogel Microparticles Loaded with miR-29a Abundant BMSCs Derived Exosomes Enhanced Bone Regeneration by Regulating Osteogenesis and Angiogenesis.

机构信息

Department of Orthopaedics, Nanjing First Hospital, Nanjing Medical University, 68 Changle Road, Nanjing, 210006, P. R. China.

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, 30 Puzhu South Road, Nanjing, 211816, P. R. China.

出版信息

Small. 2024 Apr;20(16):e2306721. doi: 10.1002/smll.202306721. Epub 2023 Nov 28.

Abstract

The study investigated whether both the osteogenic and angiogenic potential of Exos (Exosomes) can be enhanced by overexpression of exosomal miRNA (microRNA) and to confirm whether Exos loaded in HMPs (Hydrogel microparticles) exert long-term effects during new bone formation. BMSCs and Exos are successfully obtained. In vitro and in vivo experiments confirmed that HDAC4 (Histone deacetylase 4) is inhibited by miR-29a overexpression accompanied by the upregulation of RUNX2 (Runt-related transcription factor 2) and VEGF (Vascular Endothelial Growth Factor), thereby enhancing osteogenic and angiogenic capabilities. The HMP@Exo system is synthesized from HB-PEGDA (Hyperbranched Poly Ethylene Glycol Diacrylate)- and SH-HA (Sulfhydryl-Modified Hyaluronic Acid)-containing Exos using a microfluidic technique. The HMP surface is modified with RGD (Arg-Gly-Asp) peptides to enhance cell adhesion. The system demonstrated good injectability, remarkable compatibility, outstanding cell adhesion properties, and slow degradation capacity, and the sustained release of Agomir-29a-Exos (Exosomes derived from Agomir-29a transfected BMSCs) from HMPs enhanced the proliferation and migration of BMSCs and HUVECs (Human Umbilical Vein Endothelial Cells) while promoting osteogenesis and angiogenesis. Overall, the findings demonstrate that the HMP@Exo system can effectively maintain the activity and half-life of Exos, accompanied by overexpression of miR-29a (microRNA-29a). The injectable system provides an innovative approach for accelerating fracture healing by coupling osteogenesis and angiogenesis.

摘要

该研究旨在探讨通过过表达外泌体 miRNA(微小 RNA)是否可以增强 Exos(外泌体)的成骨和成血管潜力,并证实负载在 HMPs(水凝胶微球)中的 Exos 在新骨形成过程中是否发挥长期作用。成功获得了 BMSCs 和 Exos。体外和体内实验证实,miR-29a 的过表达抑制了 HDAC4(组蛋白去乙酰化酶 4),同时上调了 RUNX2(Runt 相关转录因子 2)和 VEGF(血管内皮生长因子),从而增强了成骨和成血管能力。HMP@Exo 系统是使用微流控技术由含有 HB-PEGDA(超支化聚乙二醇二丙烯酸酯)和 SH-HA(巯基修饰透明质酸)的 Exos 合成的。HMP 表面用 RGD(精氨酸-甘氨酸-天冬氨酸)肽进行修饰以增强细胞黏附性。该系统表现出良好的可注射性、显著的相容性、出色的细胞黏附特性和缓慢的降解能力,并且 HMP 从 Agomir-29a-Exos(源自转染了 Agomir-29a 的 BMSCs 的外泌体)中持续释放 Agomir-29a-Exos 能够增强 BMSCs 和 HUVECs(人脐静脉内皮细胞)的增殖和迁移,同时促进成骨和成血管。总体而言,这些发现表明 HMP@Exo 系统可以有效地维持 Exos 的活性和半衰期,同时过表达 miR-29a(microRNA-29a)。这种可注射系统通过成骨和成血管的结合为加速骨折愈合提供了一种创新方法。

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