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Biohybrid Networks of Selectively Desulfated Glycosaminoglycans for Tunable Growth Factor Delivery

机译:选择性脱硫的糖胺聚糖的可调节生长因子传递的生物杂交网络。

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Sulfation patterns of glycosaminoglycans (GAG) govern the electrostatic complexation of biomolecules and thus allow for modulating the release profiles of growth factors from GAG-based hydrogels. To explore options related to this, selectively desulfated heparin derivatives were prepared, thoroughly characterized, and covalently converted with star-shaped poly(ethylene glycol) into binary polymer networks. The impact of the GAG sulfation pattern on the network characteristics of the obtained hydrogels was theoretically evaluated by mean field methods and experimentally analyzed by rheometry and swelling measurements. Sulfation-dependent differences of reactivity and miscibility of the heparin derivatives were shown to determine network formation. A theory-based design concept for customizing growth factor affinity and physical characteristics was introduced and validated by quantifying the release of fibroblast growth factor 2 from a set of biohybrid gels. The resulting new class of cell-instructive polymer matrices with tunable GAG sulfation will be instrumental for multiple applications in biotechnology and medicine.
机译:糖胺聚糖(GAG)的硫酸化模式控制着生物分子的静电络合,因此可以调节基于GAG的水凝胶中生长因子的释放曲线。为了探索与此相关的选择,制备了选择性脱硫的肝素衍生物,对其进行了充分表征,并与星形聚乙二醇共价转化为二元聚合物网络。 GAG硫酸化模式对所得水凝胶网络特性的影响通过均场法进行了理论评估,并通过流变法和溶胀测量进行了实验分析。肝素衍生物的反应性和混溶性的硫酸盐依赖性差异显示出确定网络的形成。引入了一种基于理论的设计概念,用于定制生长因子亲和力和物理特性,并通过量化一组生物杂交凝胶中成纤维细胞生长因子2的释放进行了验证。产生的具有可调节GAG硫酸盐化作用的新型细胞指示性聚合物基质将在生物技术和医学中的多种应用中发挥作用。

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