DNA Tetrahedron Delivering miR-21-5p Promotes Senescent Bone Defects Repair through Synergistic Regulation of Osteogenesis and Angiogenesis.

IF 10 2区 医学 Q1 ENGINEERING, BIOMEDICAL Advanced Healthcare Materials Pub Date : 2024-07-09 DOI:10.1002/adhm.202401275
Lei Qi, Shebin Hong, Tong Zhao, Jinge Yan, Weiwen Ge, Jing Wang, Xin Fang, Weidong Jiang, Steve Gf Shen, Lei Zhang
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Abstract

Compromised osteogenesis and angiogenesis is the character of stem cell senescence, which brought difficulties for bone defects repairing in senescent microenvironment. As the most abundant bone-related miRNA, miRNA-21-5p plays a crucial role in inducing osteogenic and angiogenic differentiation. However, highly efficient miR-21-5p delivery still confronts challenges including poor cellular uptake and easy degradation. Herein, TDN-miR-21-5p nanocomplex is constructed based on DNA tetrahedral (TDN) and has great potential in promoting osteogenesis and alleviating senescence of senescent bone marrow stem cells (O-BMSCs), simultaneously enhancing angiogenic capacity of senescent endothelial progenitor cells (O-EPCs). Of note, the activation of AKT and Erk signaling pathway may direct regulatory mechanism of TDN-miR-21-5p mediated osteogenesis and senescence of O-BMSCs. Also, TDN-miR-21-5p can indirectly mediate osteogenesis and senescence of O-BMSCs through pro-angiogenic growth factors secreted from O-EPCs. In addition, gelatin methacryloyl (GelMA) hydrogels are mixed with TDN and TDN-miR-21-5p to fabricate delivery scaffolds. TDN-miR-21-5p@GelMA scaffold exhibits greater bone repair with increased expression of osteogenic- and angiogenic-related markers in senescent critical-size cranial defects in vivo. Collectively, TDN-miR-21-5p can alleviate senescence and induce osteogenesis and angiogenesis in senescent microenvironment, which provides a novel candidate strategy for senescent bone repair and widen clinical application of TDNs-based gene therapy.

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DNA Tetrahedron Delivering miR-21-5p 通过协同调控骨生成和血管生成促进衰老骨缺陷修复
成骨和血管生成障碍是干细胞衰老的特征,这给衰老微环境中的骨缺损修复带来了困难。作为最丰富的骨相关 miRNA,miRNA-21-5p 在诱导成骨和血管生成分化中起着至关重要的作用。然而,miR-21-5p 的高效递送仍面临着细胞吸收率低、易降解等挑战。在此,基于DNA四面体(TDN)构建的TDN-miR-21-5p纳米复合物在促进成骨和缓解衰老骨髓干细胞(O-BMSCs)衰老、同时增强衰老内皮祖细胞(O-EPCs)血管生成能力方面具有巨大潜力。值得注意的是,AKT 和 Erk 信号通路的激活可能是 TDN-miR-21-5p 介导的骨髓干细胞成骨和衰老的直接调控机制。同时,TDN-miR-21-5p 还可通过 O-EPCs 分泌的促血管生成生长因子间接介导 O-BMSCs 的成骨和衰老。此外,明胶甲基丙烯酰(GelMA)水凝胶与 TDN 和 TDN-miR-21-5p 混合制成输送支架。TDN-miR-21-5p@GelMA 支架在体内衰老的临界大小颅骨缺损中表现出更强的骨修复能力,成骨和血管生成相关标记物的表达也有所增加。总之,TDN-miR-21-5p 能缓解衰老,诱导衰老微环境中的成骨和血管生成,为衰老骨修复提供了一种新的候选策略,并拓宽了基于 TDNs 的基因治疗的临床应用。
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来源期刊
Advanced Healthcare Materials
Advanced Healthcare Materials 工程技术-生物材料
CiteScore
14.40
自引率
3.00%
发文量
600
审稿时长
1.8 months
期刊介绍: Advanced Healthcare Materials, a distinguished member of the esteemed Advanced portfolio, has been dedicated to disseminating cutting-edge research on materials, devices, and technologies for enhancing human well-being for over ten years. As a comprehensive journal, it encompasses a wide range of disciplines such as biomaterials, biointerfaces, nanomedicine and nanotechnology, tissue engineering, and regenerative medicine.
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