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Functional graphene-gold nanoparticle hybrid system for enhanced electrochemical biosensing of free cholesterol

机译:功能性石墨烯-金纳米颗粒混合体系,用于增强游离胆固醇的电化学生物传感

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Realizing the unavailability of fast and reliable diagnostic techniques, especially for cholesterol measurement, the present work reports the development of cost effective bioelectrodes based on a reduced graphene oxide-functionalized gold nanoparticle (similar to 25 nm) hybrid system (RGO-Fn Au NPs). The electrodes fabricated by the electrophoretic deposition technique attest a synergistically enhanced electrochemical sensing ability of 193.4 mu A mM(-1) cm(-2) for free cholesterol detection, which is much higher than that of the traditional RGO system. The electrochemical impedance studies (EIS) show low charge transfer resistance, R-CT, for the hybrid system which is 57% and 60% lower than those of RGO and Au NPs respectively. Also higher loading capacity and enhanced kinetics have been realized for the hybrid system, owing to lower K-m value (0.005 mM) and enhanced rate constant (3.8 x 10(-4) cm s(-1)) in comparison with RGO and Au NPs. Moreover, the RGO-Fn Au NP platform promises a wider range of cholesterol detection (0.65-12.93 mM), while simultaneously being capable of detecting as low as 0.34 mM of free cholesterol. Apart from better sensitivity, loading capacity, kinetics and detection range, the system also has appreciable selectivity and stability. This supports its potential to be brought on field in the near future for cost effective and reliable detection from the complex system of human serum.
机译:由于缺乏快速可靠的诊断技术,尤其是对于胆固醇测量,目前的工作报告了基于减少的氧化石墨烯官能化的金纳米颗粒(类似于25 nm)混合系统(RGO-Fn Au NPs)的具有成本效益的生物电极的开发。 。通过电泳沉积技术制造的电极证明了193.4μA mM(-1)cm(-2)协同增强的电化学感应能力,可用于游离胆固醇检测,远高于传统RGO系统。电化学阻抗研究(EIS)显示,混合系统的电荷转移电阻R-CT低,分别比RGO和Au NPs低57%和60%。与RGO和Au NPs相比,由于具有更低的Km值(0.005 mM)和增强的速率常数(3.8 x 10(-4)cm s(-1)),该混合系统还实现了更高的负载能力和增强的动力学性能。此外,RGO-Fn Au NP平台有望实现更广泛的胆固醇检测范围(0.65-12.93 mM),同时能够检测低至0.34 mM的游离胆固醇。除了更好的灵敏度,负载能力,动力学和检测范围外,该系统还具有明显的选择性和稳定性。这支持了其在不久的将来投入应用的潜力,从而可以从复杂的人血清系统中进行经济高效且可靠的检测。

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