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Implantable fluorescence-based glucose sensor development

机译:植入式荧光葡萄糖传感器的开发

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摘要

An implantable sensor is being created that allows measurement of blood glucose through fluorescent detection of an embedded chemical assay. The sensor is based on the competitive binding reaction between the protein Concanavalin A and various saccharide molecules, specifically a glycodendrimer and glucose. Previous studies have shown the ability of an embedded chemical assay using Con A and dextran with shorter wavelength dyes to both sense changes in glucose and generate sufficient fluorescent emission to pass through the dermal tissue. However, due to the chemical constituents of the assay, multivalent binding was evident resulting in poor spectral change due to glucose within the biological range. Use of a glycodendrimer and longer wavelength dyes has improved the sensor's spectral change due to glucose and the overall signal to noise ratio of the sensor. In this work, a description of this sensor and the results obtained from it will be presented showing a large dynamic range of fluorescence with glucose.
机译:正在创建一种可植入传感器,该传感器可通过嵌入式化学分析的荧光检测来测量血糖。该传感器基于蛋白伴刀豆球蛋白A与各种糖分子,特别是糖类树状大分子和葡萄糖之间的竞争性结合反应。先前的研究表明,使用Con A和右旋糖酐以及较短波长的染料进行嵌入式化学分析的能力,既可以感知葡萄糖的变化,又可以产生足够的荧光发射以通过皮肤组织。但是,由于测定的化学成分,由于在生物范围内存在葡萄糖,因此多价结合很明显,导致光谱变化较差。由于葡萄糖和传感器的整体信噪比,使用糖类树状聚合物和更长波长的染料可以改善传感器的光谱变化。在这项工作中,将对这种传感器以及从中获得的结果进行描述,显示出葡萄糖具有很大的动态荧光范围。

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