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Self-assembled thin-layer glycomaterials with an appropriate shell thickness for targeted and activatable cell imaging

机译:具有适当外壳厚度的自组装薄层糖材料,用于靶向和可激活的细胞成像

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The construction of targeted and activatable materials can largely improve the precision of disease diagnosis and therapy. However, the currently developed systems either target a transmembrane antigen or are activatable to release imaging and/or therapeutic reagents intracellularly. Here we develop a simple thin-layer glycomaterial through the self-assembly between fluorescent glycoprobes, in which the carbohydrate targeting reagent and the fluorophore are linked to each other by polyethlene glycol with a suitable chain length, and thin-layer manganese dioxide. The fluorogenic material developed is both capable of targeting a transmembrane glycoprotein receptor ‘and’ fluorescently activatable by intracellular biothiols. The shell thickness of the material was determined to be important for achieving the biothiol-induced activation of fluorescence. This research might provide insight into the development of precision-enhanced self-assembled materials for disease theranostics.
机译:靶向和可激活材料的构建可以大大提高疾病诊断和治疗的精度。但是,当前开发的系统靶向跨膜抗原或可被激活以在细胞内释放成像和/或治疗剂。在这里,我们通过荧光糖探针之间的自组装,开发了一种简单的薄层糖材料,其中碳水化合物靶向剂和荧光团通过具有合适链长的聚乙二醇和薄层二氧化锰相互连接。所开发的荧光物质既能够靶向跨膜糖蛋白受体,又能够被细胞内的生物硫醇进行荧光激活。确定材料的壳厚度对于实现生物硫醇诱导的荧光激活很重要。这项研究可能为深入研究疾病治疗诊断学的精密增强自组装材料提供参考。

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