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首页> 外文期刊>Bioorganic and medicinal chemistry >Immobilisation on polystyrene of diazirine derivatives of mono- and disaccharides: biological activities of modified surfaces.
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Immobilisation on polystyrene of diazirine derivatives of mono- and disaccharides: biological activities of modified surfaces.

机译:单糖和双糖的二嗪衍生物在聚苯乙烯上的固定:修饰表面的生物活性。

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The potential of surface glycoengineering for biomaterials and biosensors originates from the importance of carbohydrate-protein interactions in biological systems. The strategy employed here utilises carbene generated by illumination of diazirine to achieve covalent bonding of carbohydrates. Here, we describe the synthesis of an aryl diazirine containing a disaccharide (lactose). Surface analysis techniques [X-ray photoelectron spectroscopy (XPS) and time of flight secondary ion mass spectroscopy (ToF-SIMS)] demonstrate its successful surface immobilisation on polystyrene (PS). Results are compared to those previously obtained with an aryl diazirine containing a monosaccharide (galactose). The biological activity of galactose- or lactose-modified PS samples is studied using rat hepatocytes, Allo A lectin and solid-phase semi-synthesis with alpha-2,6-sialyltransferase. Allo A shows some binding to galactose-modified PS but none to lactose-modified surfaces. Similar results are obtained with rat hepatocytes. In contrast, sialylation of lactose-modified PS is achieved but not with galactose-modified surfaces. The different responses indicate that the biological activity depends not only on the carbohydrate per se but also on the structure and length of the spacer.
机译:生物材料和生物传感器的表面糖工程技术的潜力源于生物系统中碳水化合物与蛋白质相互作用的重要性。此处采用的策略利用了通过重氮化生成的卡宾来实现碳水化合物的共价键合。在这里,我们描述了含有二糖(乳糖)的芳基重氮基的合成。表面分析技术[X射线光电子能谱(XPS)和飞行时间二次离子质谱(ToF-SIMS)]证明了其在聚苯乙烯(PS)上的成功表面固定。将结果与先前使用含单糖(半乳糖)的芳基二嗪胺获得的结果进行比较。半乳糖或乳糖修饰的PS样品的生物活性使用大鼠肝细胞,同种A凝集素和含α-2,6-唾液酸转移酶的固相半合成进行了研究。异源A显示出与半乳糖修饰的PS的一些结合,但没有与乳糖修饰的表面的结合。用大鼠肝细胞获得相似的结果。相反,实现了乳糖修饰的PS的唾液酸化,但半乳糖修饰的表面未实现。不同的响应表明生物活性不仅取决于碳水化合物本身,而且取决于间隔基的结构和长度。

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