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A portable measuring system for a competitive binding glucose biosensor

机译:用于竞争性结合葡萄糖生物传感器的便携式测量系统

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Central to minimizing the long- and short-term complications associated with diabetes is careful monitoring and maintenance of blood glucose at normal levels. Towards replacing conventionally used finger-prick glucose testing, indwelling continuous glucose monitors (CGMs) based on amperometric electrodes have been introduced to the market. Envisioned to lead to a CGM with an increased lifetime, we report herein a fluorescently-labeled competitive binding assay contained within a hydrogel membrane whose glucose response is measured via a novel portable system. The optical system design included a laser source, bifurcated fiber, laser filter and simple fiber coupled spectrometer to obtain the change in FRET pair ratio of the assay. Glucose response of the assay in free solution was measured using this system across the physiologic range (0-200 mg/dL). The FRET pair ratio signal was seen to increase with glucose and the standard error of calibration was 22.42 mg/dL with a MARD value of 14.85%. When the assay was contained within the hydrogel membrane's central cavity and similarly analyzed, the standard error increased but the assay maintained its reversibility.
机译:最大限度地减少与糖尿病相关的长期和短期并发症的关键是仔细监测和维持正常血糖水平。为了替代传统上使用的手指刺入式葡萄糖测试,基于安培电极的留置式连续血糖监测仪(CGM)已投放市场。考虑到导致CGM具有增加的寿命,我们在本文中报道了包含在水凝胶膜中的荧光标记的竞争性结合测定法,其葡萄糖反应是通过新型便携式系统测量的。光学系统设计包括激光源,分叉光纤,激光滤光片和简单光纤耦合光谱仪,以获取测定中FRET对比率的变化。使用该系统在整个生理范围(0-200 mg / dL)中测量了游离溶液中测定的葡萄糖响应。观察到FRET对比率信号随葡萄糖增加,校准的标准误差为22.42 mg / dL,MARD值为14.85%。当测定包含在水凝胶膜的中央腔内并进行类似分析时,标准误增加,但测定保持可逆性。

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