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Synthesis and characterisation of glucose-functional glycopolymers and gold nanoparticles: study of their potential interactions with ovine red blood cells

机译:葡萄糖功能糖聚合物和金纳米颗粒的合成和表征:它们与羊红细胞潜在相互作用的研究

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摘要

Carbohydrate-protein interactions can assist with the targeting of polymer- and nano-delivery systems. However, some potential protein targets are not specific to a single cell type, resulting in reductions in their efficacy due to undesirable non-specific cellular interactions. The glucose transporter 1 (GLUT-1) is expressed to different extents on most cells in the vasculature, including human red blood cells and on cancerous tissue. Glycosylated nanomaterials bearing glucose (or related) carbohydrates, therefore, could potentially undergo unwanted interactions with these transporters, which may compromise the nanomaterial function or lead to cell agglutination, for example. Here, RAFT polymerisation is employed to obtain well-defined glucose-functional glycopolymers as well as glycosylated gold nanoparticles. Agglutination and binding assays did not reveal any significant binding to ovine red blood cells, nor any haemolysis. These data suggest that gluco-functional nanomaterials are compatible with blood, and their lack of undesirable interactions highlights their potential for delivery and imaging applications. (C) 2014 Elsevier Ltd. All rights reserved.
机译:碳水化合物与蛋白质的相互作用可以帮助靶向聚合物和纳米递送系统。但是,某些潜在的蛋白质靶标并非对单个细胞类型具有特异性,由于不希望的非特异性细胞相互作用而导致其功效降低。葡萄糖转运蛋白1(GLUT-1)在脉管系统中的大多数细胞(包括人红细胞)和癌组织上表达的程度不同。因此,带有葡萄糖(或相关)碳水化合物的糖基化纳米材料可能与这些转运蛋白发生有害的相互作用,例如,这可能会损害纳米材料的功能或导致细胞凝集。在这里,RAFT聚合用于获得定义明确的葡萄糖功能糖聚合物以及糖基化的金纳米颗粒。凝集和结合测定未显示出与绵羊红细胞的任何显着结合,也未发现任何溶血作用。这些数据表明,具有葡萄糖功能的纳米材料与血液相容,并且它们缺乏不良的相互作用,突出了其在递送和成像应用中的潜力。 (C)2014 Elsevier Ltd.保留所有权利。

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