Dhavalikar Prachi, Robinson Andrew, Lan Ziyang, Jenkins Dana, Chwatko Malgorzata, Salhadar Karim, Jose Anupriya, Kar Ronit, Shoga Erik, Kannapiran Aparajith, Cosgriff-Hernandez Elizabeth
Department of Biomedical Engineering, University of Texas at Austin, Austin, TX, 78712, USA.
Adv Healthc Mater. 2020 Dec;9(23):e2000795. doi: 10.1002/adhm.202000795. Epub 2020 Sep 16.
The ability to direct cell behavior has been central to the success of numerous therapeutics to regenerate tissue or facilitate device integration. Biomaterial scientists are challenged to understand and modulate the interactions of biomaterials with biological systems in order to achieve effective tissue repair. One key area of research investigates the use of extracellular matrix-derived ligands to target specific integrin interactions and induce cellular responses, such as increased cell migration, proliferation, and differentiation of mesenchymal stem cells. These integrin-targeting proteins and peptides have been implemented in a variety of different polymeric scaffolds and devices to enhance tissue regeneration and integration. This review first presents an overview of integrin-mediated cellular processes that have been identified in angiogenesis, wound healing, and bone regeneration. Then, research utilizing biomaterials are highlighted with integrin-targeting motifs as a means to direct these cellular processes to enhance tissue regeneration. In addition to providing improved materials for tissue repair and device integration, these innovative biomaterials provide new tools to probe the complex processes of tissue remodeling in order to enhance the rational design of biomaterial scaffolds and guide tissue regeneration strategies.
引导细胞行为的能力一直是众多用于组织再生或促进器械整合的治疗方法取得成功的关键。生物材料科学家面临的挑战是理解并调节生物材料与生物系统之间的相互作用,以实现有效的组织修复。一个关键的研究领域是研究使用细胞外基质衍生的配体来靶向特定的整合素相互作用并诱导细胞反应,例如增加间充质干细胞的细胞迁移、增殖和分化。这些靶向整合素的蛋白质和肽已被应用于各种不同的聚合物支架和器械中,以增强组织再生和整合。本综述首先概述了在血管生成、伤口愈合和骨再生中已确定的整合素介导的细胞过程。然后,重点介绍了利用具有靶向整合素基序的生物材料作为引导这些细胞过程以增强组织再生的手段的研究。除了为组织修复和器械整合提供改良材料外,这些创新的生物材料还提供了新的工具来探究组织重塑的复杂过程,以增强生物材料支架的合理设计并指导组织再生策略。