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Dual-modality microfluidic biosensor based on nanoengineered mesoporous graphene hydrogels

机译:基于纳米工程中介孔石墨烯水凝胶的双模态微流体传感器

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摘要

A dual-modality microfluidic biosensor is fabricated using a mesoporous nanostructured cysteine-graphene hydrogel for the quantification of human cardiac myoglobin (cMb). In this device, the nanoengineered mesoporous l-cysteine-graphene (Cys-RGO) hydrogel performs the role of a dual-modality sensing electrode for the measurements conducted using differential pulse voltammetry and surface plasmon resonance (SPR) techniques. High surface reactivity, mesoporous structure and fast electron transfer combined with good reaction kinetics of the graphene hydrogel in this device indicate excellent performance for the detection of human cardiac myoglobin in serum samples. In electrochemical modality, this microfluidic chip exhibits a high sensitivity of 196.66 mu A ng(-1) mL cm(-2) for a linear range of concentrations (0.004-1000 ng mL(-1)) with a low limit of detection (LOD) of 4 pg mL(-1) while the SPR technique shows a LOD of 10 pg mL(-1) for cMb monitoring in the range 0.01-1000 ng mL(-1). The intra-assay coefficient of variation was less than 8% for standard samples and 9% for real serum samples, respectively. This Cys-RGO hydrogel-based microfluidic SPR chip allows real-time dynamic tracking of cMb molecules with a high association constant of 4.93 +/- 0.2 x 10(5) M-1 s(-1) and a dissociation constant of 1.37 +/- 0.08 x 10(-4) s(-1), self-verification, reduced false readout, and improved detection reliability.
机译:使用介孔纳米结构半胱氨酸 - 石墨烯水凝胶制造双模型微流体传感器,用于定量人心肌肌球蛋白(CMB)。在该装置中,纳米工程化介孔L-半胱氨酸 - 石墨烯(Cys-Rgo)水凝胶在使用差分脉冲伏安法和表面等离子体谐振(SPR)技术进行的测量中执行​​双模态感测电极的作用。高表面反应性,介孔结构和快速电子转移与石墨烯水凝胶的良好反应动力学联合在该装置中,表明在血清样品中检测人心肌肌红蛋白的优异性能。在电化学模态中,该微流体芯片具有196.66μg(-1)mlcm(-2)的高灵敏度,用于线性范围的浓度(0.004-1000 ng(-1)),检测限不到( LOD)4pg ml(-1),而SPR技术显示10 pg ml(-1)的床位,用于CMB监测在0.01-1000ng ml(-1)范围内。对于标准样品的测定内变异系数分别小于8%,分别为真实血清样品的9%。该Cys-Rgo水凝胶基微流体SPR芯片允许实时动态跟踪CMB分子,高结合常数为4.93 +/- 0.2×10(5)m-1 s(-1),并分解常数为1.37 + / - 0.08 x 10(-4)S(-1),自验证,减少错误读数,改善的检测可靠性。

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