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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Glycosylation of the polypropylene membrane surface via thiol-yne click chemistry for lectin adsorption
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Glycosylation of the polypropylene membrane surface via thiol-yne click chemistry for lectin adsorption

机译:通过硫醇炔点击化学对聚丙烯膜表面的糖基化进行凝集素吸附

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Glycosylated membrane, as one of the most important affinity membranes, permits affinity separation/purification of proteins based on carbohydrate-protein interactions. It is an important scientific issue to screen facile method for fabricating the glycosylated membrane surface with high glycosyl density. Such a surface can be fabricated by the direct covalent immobilization of carbohydrate ligands on the surfaces of microporous polypropylene membrane (MPPM). First, alkyne-functionalized membrane surface was fabricated by plasma pretreatment combined with UV-induced graft polymerization of 3-(trimethylsilyl) propargyl methacrylate. Then, the glycosylated membrane surface was directly fabricated with the thiol-yne click reaction to ensure rapid process, improved efficiency, and high glycosyl density. Chemical and physical properties of the membrane surface were characterized by ATR/FT-IR, XPS, FESEM and water contact angle measurement. Static lectin adsorption indicates that the glycosylated membrane can specifically adsorb lectin concanavalin A (Con A) other than peanut agglutinin (PNA). Break through curves from dynamic Con A adsorption show the membrane has unique properties such as strong specificity, high adsorption capacity, and reversible binding capability. We suggest that the prepared glycosylated membrane is of great potentials in affinity membrane chromatography for rapid and high-resolution separation/purification of lectins.
机译:糖基化膜作为最重要的亲和膜之一,可基于糖-蛋白相互作用来亲和分离/纯化蛋白。筛选用于制备具有高糖基密度的糖基化膜表面的简便方法是重要的科学问题。这种表面可以通过将碳水化合物配体直接共价固定在微孔聚丙烯膜(MPPM)的表面上制成。首先,通过等离子体预处理与紫外线诱导的甲基丙烯酸3-(三甲基甲硅烷基)炔丙基酯的接枝聚合反应,制备炔烃官能化膜表面。然后,通过硫醇-炔点击反应直接制备糖基化膜表面,以确保快速过程,提高效率和高糖基密度。通过ATR / FT-IR,XPS,FESEM和水接触角测量来表征膜表面的化学和物理性质。静态凝集素吸附表明糖基化膜可特异性吸附除花生凝集素(PNA)以外的凝集素伴刀豆球蛋白A(Con A)。动态Con A吸附​​的突破曲线表明该膜具有独特的特性,例如强特异性,高吸附能力和可逆结合能力。我们建议,制备的糖基化膜在亲和膜色谱中具有巨大潜力,可快速,高分辨率地分离/纯化凝集素。

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