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Investigation of pH and temperature effects on FRET systems for glucose sensing

机译:pH和温度对FRET葡萄糖传感系统影响的研究

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Glucose monitoring is of critical importance in the life of Type Ⅰ and many Type Ⅱ diabetics. This research furthers work toward a minimally invasive implantable glucose sensor based on fluorescence detection. Current experimental models use heterogeneous fluorescence resonance energy transfer (FRET) systems for sensing; ideally, the response of one fluorophore bound to a large polysaccharide is enhanced greatly in the presence of glucose while the other fluorophore bound to a glucose sensitive protein is diminished or unaffected. Many fluorophores are affected by environmental factors such as pH and temperature. FRET experiments using two fluorophores, tetramethylrodamine isothiocyanate (TRITC) and fluoroscein isothiocyanate (FITC), are performed evaluating the effects of fluctuations over the range of pH 4-8 and temperature 25-45℃ for various concentrations of glucose in a flow cell. TRITC is bound to the lectin Concanavalin A (Con A), and FITC is bound to dextran molecules of varying sizes.
机译:葡萄糖监测对于Ⅰ型和许多Ⅱ型糖尿病患者的生命至关重要。这项研究进一步致力于基于荧光检测的微创植入式葡萄糖传感器。当前的实验模型使用异质荧光共振能量转移(FRET)系统进行传感;理想地,在葡萄糖的存在下,与大多糖结合的一种荧光团的响应大大增强,而与葡萄糖敏感蛋白结合的另一种荧光团则减少或不受影响。许多荧光团受诸如pH和温度等环境因素的影响。使用两个荧光团异硫氰酸四甲基罗丹明(TRITC)和异硫氰酸荧光素(FITC)进行了FRET实验,评估了流通池中各种浓度的葡萄糖在pH 4-8和温度25-45℃范围内波动的影响。 TRITC与凝集素伴刀豆球蛋白A(Con A)结合,而FITC与不同大小的葡聚糖分子结合。

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