Osteoinductive micro-nano guided bone regeneration membrane for in situ bone defect repair

生物医学工程 血管生成 细胞生物学 化学 再生(生物学) 生物相容性 组织工程 骨整合 骨形态发生蛋白2 材料科学 体外 植入 生物 生物化学 医学 癌症研究 外科 有机化学
作者
Bingqian Wang,Xinfang Xie,Wenbin Jiang,Yichen Zhan,Yifan Zhang,Yaqi Guo,Zhen‐Xing Wang,Nengqiang Guo,Ke Guo,Jiaming Sun
出处
期刊:Stem Cell Research & Therapy [BioMed Central]
卷期号:15 (1) 被引量:15
标识
DOI:10.1186/s13287-024-03745-w
摘要

Abstract Background Biomaterials used in bone tissue engineering must fulfill the requirements of osteoconduction, osteoinduction, and osseointegration. However, biomaterials with good osteoconductive properties face several challenges, including inadequate vascularization, limited osteoinduction and barrier ability, as well as the potential to trigger immune and inflammatory responses. Therefore, there is an urgent need to develop guided bone regeneration membranes as a crucial component of tissue engineering strategies for repairing bone defects. Methods The mZIF-8/PLA membrane was prepared using electrospinning technology and simulated body fluid external mineralization method. Its ability to induce biomimetic mineralization was evaluated through TEM, EDS, XRD, FT-IR, zeta potential, and wettability techniques. The biocompatibility, osteoinduction properties, and osteo-immunomodulatory effects of the mZIF-8/PLA membrane were comprehensively evaluated by examining cell behaviors of surface-seeded BMSCs and macrophages, as well as the regulation of cellular genes and protein levels using PCR and WB. In vivo, the mZIF-8/PLA membrane’s potential to promote bone regeneration and angiogenesis was assessed through Micro-CT and immunohistochemical staining. Results The mineralized deposition enhances hydrophilicity and cell compatibility of mZIF-8/PLA membrane. mZIF-8/PLA membrane promotes up-regulation of osteogenesis and angiogenesis related factors in BMSCs. Moreover, it induces the polarization of macrophages towards the M2 phenotype and modulates the local immune microenvironment. After 4-weeks of implantation, the mZIF-8/PLA membrane successfully bridges critical bone defects and almost completely repairs the defect area after 12-weeks, while significantly improving the strength and vascularization of new bone. Conclusions The mZIF-8/PLA membrane with dual osteoconductive and immunomodulatory abilities could pave new research paths for bone tissue engineering.
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