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首页> 外文期刊>International Journal of Nanomedicine >Rapid mineralization of hierarchical poly(l-lactic acid)/poly(ε-caprolactone) nanofibrous scaffolds by electrodeposition for bone regeneration
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Rapid mineralization of hierarchical poly(l-lactic acid)/poly(ε-caprolactone) nanofibrous scaffolds by electrodeposition for bone regeneration

机译:通过电沉积快速矿化分级聚(l-乳酸)/聚(ε-己内酯)纳米纤维支架

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Introduction: Hierarchical nanofibrous scaffolds are emerging as a promising bone repair material due to their high cell adhesion activity and nutrient permeability. However, the existing method for hierarchical nanofibrous scaffolds fabrication is complicated and not perfectly suitable for further biomedical application in view of both structure and function. In this study, we constructed a hierarchical nanofibrous poly (l-lactic acid)/poly(?-caprolactone) (PLLA/PCL) scaffold and further evaluated its bone healing ability. Methods: The hierarchical PLLA/PCL nanofibrous scaffold (PLLA/PCL) was prepared by one-pot TIPS and then rapidly mineralized at room temperature by an electrochemical deposition technique. After electrode-positioning at 2 V for 2 hrs, a scaffold coated with hydroxyapatite (M-PLLA/PCL) could be obtained. Results: The pore size of the M-PLLA/PCL scaffold was hierarchically distributed so as to match the biophysical structure for osteoblast growth. The M-PLLA/PCL scaffold showed better cell proliferation and osteogenesis activity compared to the PLLA/PCL scaffold. Further in vivo bone repair studies indicated that the M-PLLA/PCL scaffold could accelerate defect healing in 12 weeks. Conclusion: The results of this study implied that the as-prepared hydroxyapatite coated hierarchical PLLA/PCL nanofibrous scaffolds could be developed as a promising material for efficient bone tissue repair after carefully tuning the TIPS and electrodeposition parameters.
机译:简介:多层纳米纤维支架由于其高的细胞粘附活性和营养通透性而成为一种有前途的骨修复材料。然而,考虑到结构和功能,用于分层纳米纤维支架制造的现有方法是复杂的,并且不完全适合于进一步的生物医学应用。在这项研究中,我们构建了分层的纳米纤维聚(l-乳酸)/聚(ε-己内酯)(PLLA / PCL)支架,并进一步评估了其骨愈合能力。方法:通过一锅式TIPS制备分层的PLLA / PCL纳米纤维支架(PLLA / PCL),然后通过电化学沉积技术在室温下快速矿化。在2 V电压下放置2小时后,可以获得涂有羟基磷灰石(M-PLLA / PCL)的支架。结果:M-PLLA / PCL支架的孔径是分层分布的,以匹配成骨细胞生长的生物物理结构。与PLLA / PCL支架相比,M-PLLA / PCL支架显示出更好的细胞增殖和成骨活性。进一步的体内骨修复研究表明,M-PLLA / PCL支架可以在12周内加速缺陷愈合。结论:这项研究的结果表明,经过精心调整TIPS和电沉积参数后,可以将制备好的羟基磷灰石涂层的分层PLLA / PCL纳米纤维支架开发为有效修复骨组织的有希望的材料。

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