Ceccarelli Jacob, Putnam Andrew J
Department of Biomedical Engineering, University of Michigan, 2154 Lurie Biomedical Engineering Building, 1101 Beal Ave, Ann Arbor, MI 48109, USA.
Department of Biomedical Engineering, University of Michigan, 2154 Lurie Biomedical Engineering Building, 1101 Beal Ave, Ann Arbor, MI 48109, USA.
Acta Biomater. 2014 Apr;10(4):1515-23. doi: 10.1016/j.actbio.2013.07.043. Epub 2013 Aug 7.
Fibrin is the primary extracellular constituent of blood clots, and plays an important role as a provisional matrix during wound healing and tissue remodeling. Fibrin-based biomaterials have proven their utility as hemostatic therapies, scaffolds for tissue engineering, vehicles for controlled release, and platforms for culturing and studying cells in three dimensions. Nevertheless, fibrin presents a complex milieu of signals to embedded cells, many of which are not well understood. Synthetic extracellular matrices (ECMs) provide a blank slate that can ostensibly be populated with specific bioactive cues, including growth factors, growth factor binding motifs, adhesive peptides and peptide crosslinks susceptible to proteases, thereby enabling a degree of customization for specific applications. However, the continued evolution and improvement of synthetic ECMs requires parallel efforts to deconstruct native ECMs and decipher the cues they provide to constituent cells. The objective of this review is to reintroduce fibrin, a protein with a well-characterized structure and biochemistry, and its ability to support angiogenesis specifically. Although fibrin's structure-function relationships have been studied for decades, opportunities to engineer new and improved synthetic hydrogels can be realized by further exploiting fibrin's inspiring design.
纤维蛋白是血凝块的主要细胞外成分,在伤口愈合和组织重塑过程中作为临时基质发挥重要作用。基于纤维蛋白的生物材料已证明其作为止血疗法、组织工程支架、控释载体以及三维细胞培养和研究平台的效用。然而,纤维蛋白向嵌入其中的细胞呈现出复杂的信号环境,其中许多信号尚未得到充分理解。合成细胞外基质(ECM)提供了一个表面上可以填充特定生物活性线索的空白画布,这些线索包括生长因子、生长因子结合基序、粘附肽以及易受蛋白酶作用的肽交联,从而能够针对特定应用进行一定程度的定制。然而,合成ECM的持续发展和改进需要同时努力解构天然ECM并解读它们向组成细胞提供的线索。本综述的目的是重新介绍纤维蛋白,一种具有明确结构和生物化学特性的蛋白质,以及它特别支持血管生成的能力。尽管纤维蛋白的结构 - 功能关系已经研究了几十年,但通过进一步利用纤维蛋白令人鼓舞的设计,仍有机会设计出新的和改进的合成水凝胶。