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Stabilization of glucose-oxidase in the graphene paste for screen-printed glucose biosensor

机译:丝网印刷葡萄糖生物传感器中石墨烯糊中葡萄糖氧化酶的稳定性

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Various methods and materials for enzyme stabilization within screen-printed graphene sensor were analyzed. Main goal was to develop technology allowing immediate printing of the biosensors in single printing process. Factors being considered were: toxicity of the materials used, ability of the material to be screen-printed (squeezed through the printing mesh) and temperatures required in the fabrication process. Performance of the examined sensors was measured using chemical amperometry method, then appropriate analysis of the measurements was conducted. The analysis results were then compared with the medical requirements. Parameters calculated were: correlation coefficient between concentration of the analyte and the measured electrical current (0.986) and variation coefficient for the particular concentrations of the analyte used as the calibration points. Variation of the measured values was significant only in ranges close to 0, decreasing for the concentrations of clinical importance. These outcomes justify further development of the graphene-based biosensors fabricated through printing techniques.
机译:分析了丝网印刷石墨烯传感器中用于酶稳定化的各种方法和材料。主要目标是开发允许在单个打印过程中立即打印生物传感器的技术。考虑的因素包括:所用材料的毒性,丝网印刷材料(通过印刷网挤压)的能力以及制造过程中所需的温度。使用化学安培法测量被检查传感器的性能,然后对测量值进行适当的分析。然后将分析结果与医疗要求进行比较。计算的参数为:分析物浓度与测得的电流之间的相关系数(0.986),以及用作校准点的特定分析物浓度的变化系数。测量值的变化仅在接近0的范围内才显着,对于临床重要性浓度降低。这些结果证明了通过印刷技术制造的基于石墨烯的生物传感器的进一步发展是合理的。

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