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解析细胞-生物材料界面的免疫反应并加以利用,以用于组织工程目的。

Unraveling and Harnessing the Immune Response at the Cell-Biomaterial Interface for Tissue Engineering Purposes.

机构信息

Complex Tissue Regeneration Department, MERLN Institute for Technology-Inspired Regenerative Medicine, Maastricht University, Universiteitssingel 40, Maastricht, 6229ER, The Netherlands.

Department of Internal Medicine, Leiden University Medical Center, Albinusdreef 2, Leiden, 2333ZA, The Netherlands.

出版信息

Adv Healthc Mater. 2024 Jul;13(17):e2301939. doi: 10.1002/adhm.202301939. Epub 2024 Apr 5.

Abstract

Biomaterials are defined as "engineered materials" and include a range of natural and synthetic products, designed for their introduction into and interaction with living tissues. Biomaterials are considered prominent tools in regenerative medicine that support the restoration of tissue defects and retain physiologic functionality. Although commonly used in the medical field, these constructs are inherently foreign toward the host and induce an immune response at the material-tissue interface, defined as the foreign body response (FBR). A strong connection between the foreign body response and tissue regeneration is suggested, in which an appropriate amount of immune response and macrophage polarization is necessary to trigger autologous tissue formation. Recent developments in this field have led to the characterization of immunomodulatory traits that optimizes bioactivity, the integration of biomaterials and determines the fate of tissue regeneration. This review addresses a variety of aspects that are involved in steering the inflammatory response, including immune cell interactions, physical characteristics, biochemical cues, and metabolomics. Harnessing the advancing knowledge of the FBR allows for the optimization of biomaterial-based implants, aiming to prevent damage of the implant, improve natural regeneration, and provide the tools for an efficient and successful in vivo implantation.

摘要

生物材料被定义为“工程材料”,包括一系列天然和合成产品,旨在将其引入和与活体组织相互作用。生物材料被认为是再生医学中重要的工具,可以支持组织缺陷的修复并保持生理功能。尽管这些结构在医学领域中被广泛应用,但它们本质上对宿主是异物,并在材料-组织界面引起免疫反应,即异物反应(FBR)。异物反应与组织再生之间存在着密切的联系,适量的免疫反应和巨噬细胞极化对于触发自体组织形成是必要的。该领域的最新发展导致了对免疫调节特性的特征描述,这些特性优化了生物活性、生物材料的整合,并决定了组织再生的命运。这篇综述讨论了多种涉及引导炎症反应的方面,包括免疫细胞相互作用、物理特性、生化线索和代谢组学。利用对 FBR 的深入了解,可以优化基于生物材料的植入物,旨在防止植入物损伤、改善自然再生,并提供有效的体内植入工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dba2/11468937/b839dea675b1/ADHM-13-2301939-g004.jpg

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