Biomaterials for Sequestration of Growth Factors and Modulation of Cell Behavior

再生医学 纳米技术 再生(生物学) 适体 生物材料 细胞外基质 合理设计 材料科学 计算生物学 生化工程 细胞生物学 生物 干细胞 工程类 分子生物学
作者
Simão P. B. Teixeira,Rui M. A. Domingues,Mariya Shevchuk,Manuela E. Gomes,Nicholas A. Peppas,Rui L. Reis
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:30 (44) 被引量:72
标识
DOI:10.1002/adfm.201909011
摘要

Abstract Growth factors (GFs) are proteins secreted by cells that regulate a variety of biological processes. Although they have long been proposed as potent therapeutic agents, their administration in a soluble form has proven costly and ineffective due to their short half‐lives in biological environments. Biomaterial‐based approaches are increasingly sought as alternatives to improve the efficacy or, ideally, replace the need for exogenous administration of GFs in regenerative medicine strategies. The means by which these systems evolve from biomaterials for conventional controlled release of GFs to the recent extracellular matrix (ECM)–inspired approaches for sequestering these labile molecules and regulating their spatiotemporal activity and presentation are reviewed. Focus is placed on biomaterials functionalized either with ECM components, which show promiscuous GF binding, or with targeted GF ligands (antibodies, aptamers, or peptides). The potential of synthetic platforms with abiotic affinity as cost‐effective alternatives to the current biological ligands is also discussed. Overall, the various GF sequestering systems developed so far have remarkably improved the activity of GFs at reduced doses and, in some cases, completely avoided the need for their exogenous administration to guide cell fates. These bioinspired concepts thus enable the rational exploration of the full therapeutic potential of GFs in regenerative medicine.
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