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首页> 外文期刊>Biomacromolecules >Synthesis of Silk Fibroin-Glycopolypeptide Conjugates and Their Recognition with Lectin
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Synthesis of Silk Fibroin-Glycopolypeptide Conjugates and Their Recognition with Lectin

机译:丝素蛋白-糖多肽缀合物的合成及其与凝集素的识别

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Silk fibroin (SF), the natural fibrous protein created by the Bomhyx mori silk worm, is being increasingly explored as a biomaterial for tissue engineering due to its excellent mechanical strength, high oxygen/water permeability, and biocompatibility. It is also well known that surface modification of SF with organic ligands such as the extracellular protein binding Arg-Gly-Asp (RGD) peptides help adhesion and proliferation of cells better-a key requirement for it to function as extracellular matrices. this work, we have conjugated synthetic glycopolypep tides (GPs) that were synthesized by controlled ring-opening polymerization of a-mannoAys N-carboxyanhydrides (NCAs) onto SF by using Cu catalyzed click reaction to synthesize a new hybrid material (SF-GP), which we believe will have both the mechanical properties of native SF and the molecular recognition property of the carbohydrates in the GP. By controlling the amount of GP grafted onto SF, we have made three SF-GP conjugates that differ in their ability to assemble into films. SF-GP conjugates having a very high content of GP formed completely water-soluble brush-like polymer that displayed very high affinity toward the lectin concanavalin-A (Con-A). Films cast from SF-GP conjugates using lower amounts of grafted GP were more stable in water, and the stability can be modulated by varying the amount of GP grafted. The water-insoluble film SF-GP_(25) was also found to bind to fluorescently labeled Con-A, as was seen by confocal microscopy. Such SF-GP hybrid films may be useful as mimics of extracellular matrices for tissue engineering.
机译:蚕丝蛋白(SF)是由家蚕(Bombyx mori)蠕虫产生的天然纤维蛋白,由于其优异的机械强度,高的氧/水渗透性和生物相容性而被越来越多地探索为组织工程的生物材料。还众所周知,用有机配体例如细胞外蛋白结合的Arg-Gly-Asp(RGD)肽对SF进行表面修饰可以更好地帮助细胞粘附和增殖,这是其作为细胞外基质发挥作用的关键条件。 n在这项工作中,我们通过使用Cu催化的点击反应合成了一种新型杂化材料(SF-,通过将a-甘露聚糖N-羧基酐(NCA)受控开环聚合到SF上而合成的共轭合成糖多肽(GPs) GP),我们相信它既具有天然SF的机械性能,又具有GP中碳水化合物的分子识别性能。通过控制嫁接到SF的GP的数量,我们制备了三种SF-GP共轭物,它们的组装能力不同。 GP含量非常高的SF-GP共轭物形成了完全水溶性的刷状聚合物,对凝集素伴刀豆球蛋白A(Con-A)表现出很高的亲和力。使用较少量的接枝GP从SF-GP共轭物浇铸的薄膜在水中更稳定,并且可以通过改变GP接枝量来调节稳定性。如共聚焦显微镜所见,还发现水不溶性膜SF-GP_(25)与荧光标记的Con-A结合。此类SF-GP杂化膜可用作组织工程的细胞外基质的模拟物。

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