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Precision Gels from Collagen-Inspired Triblock Copolymers

机译:源自胶原蛋白的三嵌段共聚物的精密凝胶

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摘要

Gelatin hydrogels find broad medical application. The current materials, however, are from animal sources, and their molecular structure and thermal properties cannot be controlled. This study describes recombinant gelatin- like polymers with a general design that inherently offers independent tuning of the cross-link density, melting temperature, and biocompatibility of the gel. The polymers contain small blocks widi thermoreversible trimerization capacity and defined melting temperature, separated by hydrophilic nontrimerizing blocks defining the distance between the knot-forming domains. As an example, we report the secreted production in yeast at several g/L of two nonhydroxylated ~42 kDa triblock copolymers with terminal trimerizing blocks. Because only the end blocks formed cross-links, the molecular architecture of the gels is much more defined than that of traditional gelatins. The novel hydrogels had a ~37 ? melting temperature, and the dynamic elasticity was independent of the thermal history. The concept allows to produce custom-made precision gels for biomedical applications.
机译:明胶水凝胶在医学上有广泛的应用。但是,当前的材料来自动物,其分子结构和热性能无法控制。这项研究描述了具有一般设计的重组明胶状聚合物,该设计固有地提供了凝胶的交联密度,熔融温度和生物相容性的独立调节。所述聚合物包含具有热可逆三聚能力和限定的熔融温度的小嵌段,其被亲水性非三聚嵌段隔开,所述亲水性非三聚嵌段限定了结形成域之间的距离。例如,我们报道了在酵母菌中,几克/升的两种带有末端三聚嵌段的非羟基化〜42 kDa三嵌段共聚物的分泌产物。因为只有末端嵌段形成交联,所以凝胶的分子结构比传统明胶的分子结构更为明确。新型水凝胶的〜37?熔化温度,动态弹性与热历史无关。该概念允许生产用于生物医学应用的定制精密凝胶。

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