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Porous Alginate Hydrogel Functionalized with Virus as Three-Dimensional Scaffolds for Bone Differentiation

机译:病毒作用的藻酸盐多孔水凝胶作为三维支架进行骨分化

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摘要

In regenerative medicine, a synthetic extracellular matrix is crucial for supporting stem cells during its differentiation process to integrate into surrounding tissues. Hydrogels are used extensively in biomaterials as synthetic matrices to support the cells. However, to mimic the biological niche of a functional tissue, various chemical functionalities are necessary. We present here, a method of functionalizing a highly porous hydrogel with functional groups by mixing the hydrogel with a plant virus, tobacco mosaic virus (TMV), and its mutant. The implication of this process resides with the three important features of TMV: its well-defined genetic/chemical modularity, its multivalency (TMV capsid is composed of 2130 copies of identical subunits), and its well-defined structural features. Previous studies utilizing the native TMV on two-dimensional supports accelerated mesenchymal stem cell differentiation, and surfaces modified with genetically modified viral particles further enhanced cell attachment and differentiation. Herein we demonstrate that functionalization of a porous alginate scaffold can be achieved by the addition of viral particles with minimal processing and downstream purifications, and the cell attachment and differentiation within the macroporous scaffold can be effectively manipulated by altering the peptide or small molecule displayed on the viral particles.
机译:在再生医学中,合成的细胞外基质对于在分化过程中支持干细胞整合到周围组织中至关重要。水凝胶在生物材料中广泛用作合成基质以支持细胞。然而,为了模仿功能组织的生物学位置,各种化学功能是必需的。我们在这里介绍一种通过将水凝胶与植物病毒,烟草花叶病毒(TMV)及其突变体混合来使具有功能基团的高度多孔水凝胶功能化的方法。该过程的含义在于TMV的三个重要特征:其明确定义的遗传/化学模块性,其多价(TMV衣壳由2130个相同亚基的拷贝组成)及其明确定义的结构特征。先前在二维上利用天然TMV的研究支持了间充质干细胞的分化,而用基因修饰的病毒颗粒修饰的表面进一步增强了细胞的附着和分化。在本文中,我们证明了多孔藻酸盐支架的功能化可以通过以最少的加工和下游纯化来添加病毒颗粒来实现,并且大孔支架内的细胞附着和分化可以通过改变展示在其上的肽或小分子而被有效地操纵。病毒颗粒。

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