Department of Mechanical Engineering , Ulsan National Institute of Science and Technology (UNIST), 50 UNIST-gil, Ulsan 44919, Korea.
Sensors (Basel). 2017 Sep 15;17(9):2128. doi: 10.3390/s17092128.
We developed a versatile and highly sensitive biosensor platform. The platform is based on electrochemical-enzymatic redox cycling induced by selective enzyme immobilization on nano-sized carbon interdigitated electrodes (IDEs) decorated with gold nanoparticles (AuNPs). Without resorting to sophisticated nanofabrication technologies, we used batch wafer-level carbon microelectromechanical systems (C-MEMS) processes to fabricate 3D carbon IDEs reproducibly, simply, and cost effectively. In addition, AuNPs were selectively electrodeposited on specific carbon nanoelectrodes; the high surface-to-volume ratio and fast electron transfer ability of AuNPs enhanced the electrochemical signal across these carbon IDEs. Gold nanoparticle characteristics such as size and morphology were reproducibly controlled by modulating the step-potential and time period in the electrodeposition processes. To detect cholesterol selectively using AuNP/carbon IDEs, cholesterol oxidase (ChOx) was selectively immobilized via the electrochemical reduction of the diazonium cation. The sensitivity of the AuNP/carbon IDE-based biosensor was ensured by efficient amplification of the redox mediators, ferricyanide and ferrocyanide, between selectively immobilized enzyme sites and both of the combs of AuNP/carbon IDEs. The presented AuNP/carbon IDE-based cholesterol biosensor exhibited a wide sensing range (0.005-10 mM) and high sensitivity (~993.91 µA mM cm; limit of detection (LOD) ~1.28 µM). In addition, the proposed cholesterol biosensor was found to be highly selective for the cholesterol detection.
我们开发了一种通用且高灵敏度的生物传感器平台。该平台基于电化学-酶促氧化还原循环,通过选择性地将酶固定在纳米级碳交错电极(IDE)上,并在其表面修饰金纳米粒子(AuNPs)来实现。我们没有采用复杂的纳米制造技术,而是使用批处理晶圆级碳微机电系统(C-MEMS)工艺来重复、简单且经济高效地制造 3D 碳 IDE。此外,AuNPs 被选择性地电沉积在特定的碳纳米电极上;AuNPs 的高表面积与体积比和快速电子转移能力增强了这些碳 IDE 的电化学信号。通过调节电沉积过程中的阶跃电位和时间,可以重复控制 AuNP 的尺寸和形态等特性。为了使用 AuNP/碳 IDE 选择性地检测胆固醇,通过电化学还原重氮阳离子将胆固醇氧化酶(ChOx)选择性地固定在电极上。通过在选择性固定的酶位之间以及 AuNP/碳 IDE 的梳齿之间有效地放大氧化还原介质(铁氰化物和亚铁氰化物),保证了 AuNP/碳 IDE 基生物传感器的灵敏度。所提出的 AuNP/碳 IDE 基胆固醇生物传感器具有较宽的检测范围(0.005-10 mM)和高灵敏度(993.91 µA mM cm;检测限(LOD)1.28 µM)。此外,该胆固醇生物传感器还表现出对胆固醇检测的高度选择性。