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首页> 外文期刊>Analytical and bioanalytical chemistry >Competitive capacitive biosensing technique (CCBT): A novel technique for monitoring low molecular mass analytes using glucose assay as a model study
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Competitive capacitive biosensing technique (CCBT): A novel technique for monitoring low molecular mass analytes using glucose assay as a model study

机译:竞争性电容式生物传感技术(CCBT):使用葡萄糖测定作为模型研究来监测低分子量分析物的新技术

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摘要

A novel technique for monitoring of low molecular mass analytes using a flow-injection capacitive biosensor is presented. The method is based on the ability of a small molecular mass analyte to displace a large analyte-carrier conjugate from the binding sites of an immobilized biorecognition element with weak affinity to both compounds. A model study was performed on glucose as the small molecular mass analyte. In the absence of glucose, binding of a glucose polymer or a glycoconjugate to concanavalin A results in a capacitance decrease. Upon introduction of glucose, it displaces a part of the bound glucose polymer or glycoconjugate leading to a partial restoration of capacitance. Experimental results show that the change in capacitance depends linearly on glucose concentration within the range from 1.0×10~(-5) to 1.0×10~(-1) M, corresponding to 1.8 μg ml~(-1) to 18 mg ml~(-1) in a logarithmic plot, with a detection limit of 1.0×10~(-6) (0.18 μg ml~(-1)) under optimized conditions. In addition, by modifying the molecular mass of the glucose polymer, amount of biorecognition element, and buffer composition, we were able to tune the analyte-sensing range. The developed technique has the benefits of expanded dynamic range, high sensitivity, and excellent reusability.
机译:提出了一种使用流动注射电容式生物传感器监测低分子量分析物的新技术。该方法基于小分子量分析物从固定的生物识别元件的结合位点对两种化合物均具有弱亲和力置换大的分析物-载体共轭物的能力。对葡萄糖作为小分子分析物进行了模型研究。在没有葡萄糖的情况下,葡萄糖聚合物或糖缀合物与伴刀豆球蛋白A的结合导致电容降低。引入葡萄糖后,它置换了一部分结合的葡萄糖聚合物或糖缀合物,导致部分恢复电容。实验结果表明,电容的变化与葡萄糖浓度在1.0×10〜(-5)至1.0×10〜(-1)M范围内线性相关,对应于1.8μgml〜(-1)至18 mg ml在对数图中的〜(-1),在优化条件下的检出限为1.0×10〜(-6)(0.18μgml〜(-1))。此外,通过修改葡萄糖聚合物的分子量,生物识别元素的数量和缓冲液组成,我们能够调整分析物的感应范围。所开发的技术具有扩展的动态范围,高灵敏度和出色的可重用性的优点。

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