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用于骨再生的生物活性材料:生物分子和递送系统。

Bioactive Materials for Bone Regeneration: Biomolecules and Delivery Systems.

机构信息

Department of Immunology and Infectious Biology, Faculty of Biology and Environmental Protection, University of Lodz, Lodz 90-136, Poland.

Biomaterials Research Group, Lukasiewicz Research Network - Institute of Ceramics and Building Materials, Krakow 31-983, Poland.

出版信息

ACS Biomater Sci Eng. 2023 Sep 11;9(9):5222-5254. doi: 10.1021/acsbiomaterials.3c00609. Epub 2023 Aug 16.

Abstract

Novel tissue regeneration strategies are constantly being developed worldwide. Research on bone regeneration is noteworthy, as many promising new approaches have been documented with novel strategies currently under investigation. Innovative biomaterials that allow the coordinated and well-controlled repair of bone fractures and bone loss are being designed to reduce the need for autologous or allogeneic bone grafts eventually. The current engineering technologies permit the construction of synthetic, complex, biomimetic biomaterials with properties nearly as good as those of natural bone with good biocompatibility. To ensure that all these requirements meet, bioactive molecules are coupled to structural scaffolding constituents to form a final product with the desired physical, chemical, and biological properties. Bioactive molecules that have been used to promote bone regeneration include protein growth factors, peptides, amino acids, hormones, lipids, and flavonoids. Various strategies have been adapted to investigate the coupling of bioactive molecules with scaffolding materials to sustain activity and allow controlled release. The current manuscript is a thorough survey of the strategies that have been exploited for the delivery of biomolecules for bone regeneration purposes, from choosing the bioactive molecule to selecting the optimal strategy to synthesize the scaffold and assessing the advantages and disadvantages of various delivery strategies.

摘要

全球范围内不断在开发新的组织再生策略。骨再生的研究值得关注,因为已经有许多有前途的新方法被记录下来,并且目前正在研究新的策略。正在设计创新性的生物材料,以协调和精确控制骨折和骨丢失的修复,从而减少对自体或同种异体骨移植物的需求。目前的工程技术允许构建具有良好生物相容性的合成、复杂、仿生生物材料,其性能几乎与天然骨一样好。为了确保满足所有这些要求,将生物活性分子与结构支架成分偶联,形成具有所需物理、化学和生物学特性的最终产品。已用于促进骨再生的生物活性分子包括蛋白质生长因子、肽、氨基酸、激素、脂质和类黄酮。已经采用了各种策略来研究将生物活性分子与支架材料偶联以维持活性和允许控制释放的方法。本文全面综述了为骨再生目的而递送生物分子所采用的策略,从选择生物活性分子到选择最佳策略来合成支架,以及评估各种递送策略的优缺点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17d1/10498424/4479c07efa0c/ab3c00609_0001.jpg

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