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Competitive Binding Assay for Glucose Based on Glycodendrimer-Fluorophore Conjugates

机译:基于Glycodendrimer-Fluorophore共轭物的葡萄糖竞争性结合测定

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摘要

A new fluorescent glucose assay has been created using Alexa Fluor 647-labeled concanavalin A (Con A) and a fourth-generation PAMAM Alexa Fluor 594-labeled glycodendrimer. This assay has been shown to have a large response to glucose within the biological range and to be capable of functioning within a polymer hydrogel. In this paper, the glucose response is shown to be a single fluorophore-based quenching reaction. Data showing that the sensor is fully reversible and specific through competitive binding between the dendrimer and glucose with Con A are presented. Overall, the assay is shown to have potential over the traditional dextran-based assay because it has a larger dynamic response to physiological glucose concentrations, incorporates longer wavelength dyes that improve signal penetration through dermal tissue, and provides an internal reference in the form of a nonreactive fluorescent label.
机译:使用Alexa Fluor 647标记的伴刀豆球蛋白A(Con A)和第四代PAMAM Alexa Fluor 594标记的糖树状聚合物,创建了一种新的荧光葡萄糖测定法。已经表明该测定法对生物学范围内的葡萄糖具有大的响应,并且能够在聚合物水凝胶中起作用。在本文中,葡萄糖反应显示为单个基于荧光团的猝灭反应。数据表明传感器是完全可逆的,并且通过树枝状聚合物和葡萄糖与Con A的竞争性结合具有特异性。总体而言,与传统的基于葡聚糖的分析相比,该方法具有更大的潜力,因为它对生理性葡萄糖浓度具有更大的动态响应,并掺入了更长波长的染料,从而改善了信号通过皮肤组织的渗透率,并提供了一种内参的形式。非反应性荧光标记。

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