Choudhary Piyush, Singh Vijay K, Dixit Ambesh
Advanced Material and Device (AMAD) Laboratory, Department of Physics, Indian Institute of Technology Jodhpur, Karwar, Jodhpur, Rajasthan 342030, India.
J Phys Condens Matter. 2024 Jul 18;36(41). doi: 10.1088/1361-648X/ad5ee9.
The biosensing industry has seen exponential growth in the past decade. Impact of biosensors in the current scenario cannot be overlooked. Cardiovascular diseases (CvDs) have been recognized as one of the major causes for millions of deaths globally. This mortality can be minimized by early and accurate detection/diagnosis of CvDs with the help of biosensing devices. This also presents a global market opportunity for the development of biosensors for CvDs. A vast variety of biosensing methods and devices have been developed for this problem. Most of commercially available platforms for CvD detection rely on optical (fluorometric and colorimetric analysis) techniques using serum biomarkers since optical testing is the gold standard in medical diagnosis. Field effect transistors-based biosensors, termed as Bio-FETs, are the upcoming devices for blood or serum analyte detection due to excellent sensitivity, low operational voltage, handheld device structure and simple chip-based operation. Further, the discovery of two dimensional (2D) materials and their integration with conventional FETs has improved the overvoltage problem, sensitivity and strict operating conditions as compared to conventional FETs. Graphene-FETs based biosensing devices have been proven as promising candidates due to their attractive properties. Despite the severe threat of CvDs which has further increased in post-covid era, the Bio-FET sensor studies in literature are still rare. In this review, we aim to provide a comprehensive view of all the multidisciplinary concepts related to 2D-BioFETs for CvDs. A critical review of the different platforms has been covered with detailed discussions of related studies to provide a clear concept and present status of 2D-BioFETs based CvD biosensors.
在过去十年中,生物传感行业呈指数级增长。生物传感器在当前形势下的影响不可忽视。心血管疾病(CvDs)已被公认为全球数百万人死亡的主要原因之一。借助生物传感设备对心血管疾病进行早期准确的检测/诊断,可以将这种死亡率降至最低。这也为心血管疾病生物传感器的开发带来了全球市场机遇。针对这一问题,已经开发出了各种各样的生物传感方法和设备。大多数用于心血管疾病检测的商业可用平台依赖于使用血清生物标志物的光学(荧光和比色分析)技术,因为光学检测是医学诊断的金标准。基于场效应晶体管的生物传感器,即生物场效应晶体管(Bio-FETs),由于其出色的灵敏度、低工作电压、手持式设备结构和基于芯片的简单操作,成为用于血液或血清分析物检测的新兴设备。此外,与传统场效应晶体管相比,二维(2D)材料的发现及其与传统场效应晶体管的集成改善了过电压问题、灵敏度和严格的操作条件。基于石墨烯场效应晶体管的生物传感设备因其具有吸引力的特性已被证明是有前途的候选者。尽管心血管疾病的严重威胁在新冠疫情后进一步加剧,但文献中关于生物场效应晶体管传感器的研究仍然很少。在这篇综述中,我们旨在全面介绍与用于心血管疾病的二维生物场效应晶体管相关的所有多学科概念。对不同平台进行了批判性综述,并对相关研究进行了详细讨论,以提供二维生物场效应晶体管基心血管疾病生物传感器的清晰概念和现状。