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Chimeric Aptamer-Gelatin Hydrogels as an Extracellular Matrix Mimic for Loading Cells and Growth Factors

机译:嵌合的适体-明胶水凝胶作为细胞外基质模拟加载细胞和生长因子。

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摘要

It is important to synthesize materials to recapitulate critical functions of biological systems for a variety of applications such as tissue engineering and regenerative medicine. The purpose of this study was to synthesize a chimeric hydrogel as a promising extracellular matrix (ECM) mimic using gelatin, a nucleic acid aptamer and polyethylene glycol (PEG). This hydrogel had a macroporous structure that was highly permeable for fast molecular transport. Despite its high permeability, it could strongly sequester and sustainably release growth factors with high bioactivity. Notably, growth factors retained in the hydrogel could maintain ~50% bioactivity during a 14-day release test. It also provided cells with effective binding sites, which led to high efficiency of cell loading into the macroporous hydrogel matrix. When cells and growth factors were co-loaded into the chimeric hydrogel, living cells could still be observed by day 14 in a static serum-reduced culture condition. Thus, this chimeric aptamer-gelatin hydrogel constitutes a promising biomolecular ECM mimic for loading cells and growth factors.
机译:重要的是合成用于概括生物系统关键功能的材料,以用于各种应用,例如组织工程和再生医学。这项研究的目的是使用明胶,核酸适体和聚乙二醇(PEG)合成嵌合水凝胶,作为有希望的细胞外基质(ECM)模拟物。该水凝胶具有大孔结构,具有高渗透性,可以快速进行分子运输。尽管它具有高渗透性,但它仍可以强烈隔离并可持续释放具有高生物活性的生长因子。值得注意的是,保留在水凝胶中的生长因子可以在14天的释放测试中保持约50%的生物活性。它还为细胞提供了有效的结合位点,从而导致细胞高效加载到大孔水凝胶基质中。当将细胞和生长因子共同加载到嵌合水凝胶中时,在静态降低血清的培养条件下,仍可在第14天观察到活细胞。因此,这种嵌合的适体-明胶水凝胶构成了一种有前途的生物分子ECM模拟物,用于加载细胞和生长因子。

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