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Engineered 3D hydrogels with full-length fibronectin that sequester and present growth factors

机译:具有全长纤连蛋白的设计3D水凝胶,螯合和呈现生长因子

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Extracellular matrix (ECM)-derived matrices such as Matrigel are used to culture numerous cell types in vitro as they recapitulate ECM properties that support cell growth, organisation, migration and differentiation. These ECM-derived matrices contain various growth factors which make them highly bioactive. However, they suffer lot-to-lot variability, undefined composition and lack of controlled physical properties. There is a need to develop rationally designed biomaterials that can also recapitulate ECM roles. Here, we report the development of fibronectin (FN)-based 3D hydrogels of controlled stiffness and degradability that incorporate full-length FN to enable solid-phase presentation of growth factors in a physiological manner. We demonstrate, in vitro and in vivo, the effect of incorporating vascular endothelial growth factor (VEGF) and bone morphogenetic protein 2 (BMP2) in these hydrogels to enhance angiogenesis and bone regeneration, respectively. These hydrogels represent a step-change in the design of well-defined, reproducible, synthetic microenvironments for 3D cell culture that incorporate growth factors to achieve functional effects.
机译:如Matrigel的细胞外基质(ECM)的基质(例如matrigel)用于培养多种细胞类型,因为它们重新承载支持细胞生长,组织,迁移和分化的ECM性能。这些ECM衍生的矩阵含有各种生长因子,使它们具有高度生物活性。然而,它们遭受批量达到批次的可变性,未定义的组成和缺乏受控的物理性质。需要开发合理设计的生物材料,还可以重新承载ECM角色。在这里,我们报告了基于受控刚度和可降解性的基于3D水凝胶的纤连蛋白(Fn)的发展,其包含全长Fn,以使生长因子的固相管呈现生长因子。我们在体外和体内示出,在这些水凝胶中掺入血管内皮生长因子(VEGF)和骨形态发生蛋白2(BMP2)以增强血管生成和骨再生的效果。这些水凝胶代表了用于3D细胞培养的明确,可重复,合成的微环境的设计的阶跃变化,其掺入生长因子以实现功能效应。

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