基于石墨烯纳米材料的唾液生物标志物检测电化学生物传感器:口腔癌诊断的转化方法

D. Mahalakshmi , J. Nandhini , G. Meenaloshini , E. Karthikeyan , KK Karthik , J. Sujaritha , Vandhana V , C. Ragavendran
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引用次数: 0

摘要

基于石墨烯的电化学生物传感器已经成为通过唾液生物标志物分析早期检测和监测口腔癌的有前途的工具。石墨烯的特殊性能,包括高表面积,优越的导电性和优异的机械强度,使高灵敏度和特异性生物传感器的发展成为可能。本文综述了目前基于石墨烯的电化学生物传感器用于口腔癌唾液生物标志物检测的最新进展。我们讨论了唾液作为诊断介质的独特优势,并强调了与口腔癌相关的关键唾液生物标志物,包括蛋白质、DNA和RNA。各种电化学检测技术,如循环伏安法、差分脉冲伏安法、电化学阻抗谱、场效应晶体管、安培法、计时安培法和光电化学方法,在石墨烯基生物传感器的背景下进行了探索。与这些生物传感器的开发和临床转化相关的挑战也得到了解决,强调需要改进功能化策略,增强稳定性和标准化验证方案。最后,我们对基于石墨烯的生物传感器与人工智能、微流体和远程医疗平台的集成进行了未来展望,以实现个性化诊断和治疗监测。随着传感器技术和计算工具的不断进步,基于石墨烯的电化学生物传感器有可能彻底改变口腔癌的管理,改善患者的预后和生活质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Graphene nanomaterial-based electrochemical biosensors for salivary biomarker detection: A translational approach to oral cancer diagnostics
Graphene-based electrochemical biosensors have emerged as promising tools for the early detection and monitoring of oral cancer through salivary biomarker analysis. Graphene's exceptional properties, including high surface area, superior electrical conductivity, and excellent mechanical strength, enable the development of highly sensitive and specific biosensors. This review provides a comprehensive overview of the current state-of-the-art in graphene-based electrochemical biosensors for salivary biomarker detection in oral cancer. We discuss the unique advantages of saliva as a diagnostic medium and highlight the key salivary biomarkers associated with oral cancer, including proteins, DNA, and RNA. Various electrochemical detection techniques, such as cyclic voltammetry, differential pulse voltammetry, electrochemical impedance spectroscopy, field-effect transistors, amperometry, chronoamperometry, and photoelectrochemical methods, are explored in the context of graphene-based biosensors. The challenges associated with the development and clinical translation of these biosensors are also addressed, emphasizing the need for improved functionalization strategies, enhanced stability, and standardized validation protocols. Finally, we present a futuristic outlook on the integration of graphene-based biosensors with artificial intelligence, microfluidics, and telemedicine platforms to enable personalized diagnostics and treatment monitoring. With continued advancements in sensor technology and computational tools, graphene-based electrochemical biosensors have the potential to revolutionize oral cancer management, improving patient outcomes and quality of life.
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