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生物活性材料的生物相容性途径及机制:

Biocompatibility pathways and mechanisms for bioactive materials: .

作者信息

Williams David F

机构信息

Wake Forest Institute of Regenerative Medicine, 391 Technology Way. Winston-Salem, North Carolina, 27101, USA.

出版信息

Bioact Mater. 2021 Aug 26;10:306-322. doi: 10.1016/j.bioactmat.2021.08.014. eCollection 2022 Apr.

Abstract

This essay analyzes the scientific evidence that forms the basis of bioactive materials, covering the fundamental understanding of bioactivity phenomena and correlation with the mechanisms of biocompatibility of biomaterials. This is a detailed assessment of performance in areas such as bone-induction, cell adhesion, immunomodulation, thrombogenicity and antimicrobial behavior. Bioactivity is the modulation of biological activity by characteristics of the interfacial region that incorporates the material surface and the immediate local host tissue. Although the term 'bioactive material' is widely used and has a well understood general meaning, it would be useful now to concentrate on this interfacial region, considered as '. Bioactivity phenomena are either due to topographical/micromechanical characteristics, or to biologically active species that are presented in the bioactivity zone. Examples of topographical/micromechanical effects are the modulation of the osteoblast - osteoclast balance, nanotopographical regulation of cell adhesion, and bactericidal nanostructures. Regulation of bioactivity by biologically active species include their influence, especially of metal ions, on signaling pathways in bone formation, the role of cell adhesion molecules and bioactive peptides in cell attachment, macrophage polarization by immunoregulatory molecules and antimicrobial peptides. While much experimental data exists to demonstrate the potential of such phenomena, there are considerable barriers to their effective clinical translation. This essay shows that there is solid scientific evidence of the existence of bioactivity mechanisms that are associated with some types of biomaterials, especially when the material is modified in a manner designed to specifically induce that activity.

摘要

本文分析了构成生物活性材料基础的科学证据,涵盖了对生物活性现象的基本理解以及与生物材料生物相容性机制的相关性。这是对骨诱导、细胞粘附、免疫调节、血栓形成和抗菌行为等领域性能的详细评估。生物活性是由包含材料表面和紧邻局部宿主组织的界面区域特性对生物活性的调节。尽管“生物活性材料”一词被广泛使用且具有广为人知的一般含义,但现在集中关注这个被视为“……”的界面区域会很有帮助。生物活性现象要么归因于拓扑学/微机械特性,要么归因于生物活性区域中呈现的生物活性物质。拓扑学/微机械效应的例子有成骨细胞 - 破骨细胞平衡的调节、细胞粘附的纳米拓扑调节以及杀菌纳米结构。生物活性物质对生物活性的调节包括它们,尤其是金属离子,对骨形成信号通路的影响、细胞粘附分子和生物活性肽在细胞附着中的作用、免疫调节分子和抗菌肽对巨噬细胞极化的作用。虽然有大量实验数据证明此类现象的潜力,但它们有效转化为临床应用存在相当大的障碍。本文表明,存在与某些类型生物材料相关的生物活性机制的坚实科学证据,特别是当材料以专门设计用于诱导该活性的方式进行改性时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0140/8636667/ef4f24c6b0a0/gr1.jpg

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