促进骨愈合的生物活性因子印迹支架载体:临床生产的潜在策略和面临的挑战

Pengpeng Xue, J. Yuan, Qing Yao, Ying-zheng Zhao, Helin Xu
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引用次数: 13

摘要

骨创伤修复是一个复杂的多步骤过程,包括炎症、血管生成、骨痂形成和骨重塑。许多生物活性因子(BFs)包括细胞因子和生长因子(GFs)已被报道参与调节骨创面愈合,一些外源性BFs如骨形态发生蛋白(BMPs)被证明有助于促进骨愈合。在这方面,报道的促进骨修复的BFs最初是根据其调节机制进行分类的。因此,这些外源性BFs在骨愈合中的半衰期短、稳定性差、酶降解和失活快等挑战在本文中被仔细概述。针对这些问题,最近有报道称,BFs印迹支架载体可促进BFs的稳定性并延长其体内半衰期。本文主要综述了将BFs与各种形式的骨组织工程应用的调节生物材料的结合:首先,使用刚性骨移植替代品(BGSs)来压印BFs进行大规模骨缺损修复;其次,讨论了承载BFs的海绵状软支架作为骨缺损腔的填充材料;第三,各种可注射载体,包括水凝胶、纳米颗粒和微球,也被引入到不规则骨折的修复中。同时,本文也分析了bfs印迹脚手架车所面临的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioactive Factors-imprinted Scaffold Vehicles for Promoting Bone Healing: The Potential Strategies and the Confronted Challenges for Clinical Production
Abstract Wound repair of bone is a complicated multistep process orchestrated by inflammation, angiogenesis, callus formation, and bone remodeling. Many bioactive factors (BFs) including cytokine and growth factors (GFs) have previously been reported to be involved in regulating wound healing of bone and some exogenous BFs such as bone morphogenetic proteins (BMPs) were proven to be helpful for improving bone healing. In this regard, the BFs reported for boosting bone repair were initially categorized according to their regulatory mechanisms. Thereafter, the challenges including short half-life, poor stability, and rapid enzyme degradation and deactivation for these exogenous BFs in bone healing are carefully outlined in this review. For these issues, BFs-imprinted scaffold vehicles have recently been reported to promote the stability of BFs and enhance their half-life in vivo. This review is focused on the incorporation of BFs into the modulated biomaterials with various forms of bone tissue engineering applications: firstly, rigid bone graft substitutes (BGSs) were used to imprint BFs for large scale bone defect repair; secondly, the soft sponge-like scaffold carrying BFs is discussed as filling materials for the cavity of bone defects; thirdly, various injectable vehicles including hydrogel, nanoparticles, and microspheres for the delivery of BFs were also introduced for irregular bone fracture repair. Meanwhile, the challenges for BFs-imprinted scaffold vehicles are also analyzed in this review.
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CiteScore
5.40
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