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电化学生物传感器检测 COVID-19 相关生物标志物及其在个性化医学背景下用于诊断、预后和预测疾病进程的潜力。

Detection of COVID-19-related biomarkers by electrochemical biosensors and potential for diagnosis, prognosis, and prediction of the course of the disease in the context of personalized medicine.

机构信息

Max Planck Tandem Group in Nanobioengineering, Institute of Chemistry, Faculty of Natural and Exact Sciences, University of Antioquia, Complejo Ruta N, Calle 67 N° 52-20, Medellín, 050010, Colombia.

出版信息

Anal Bioanal Chem. 2023 Mar;415(6):1003-1031. doi: 10.1007/s00216-022-04237-7. Epub 2022 Aug 16.

Abstract

As a more efficient and effective way to address disease diagnosis and intervention, cutting-edge technologies, devices, therapeutic approaches, and practices have emerged within the personalized medicine concept depending on the particular patient's biology and the molecular basis of the disease. Personalized medicine is expected to play a pivotal role in assessing disease risk or predicting response to treatment, understanding a person's health status, and, therefore, health care decision-making. This work discusses electrochemical biosensors for monitoring multiparametric biomarkers at different molecular levels and their potential to elucidate the health status of an individual in a personalized manner. In particular, and as an illustration, we discuss several aspects of the infection produced by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) as a current health care concern worldwide. This includes SARS-CoV-2 structure, mechanism of infection, biomarkers, and electrochemical biosensors most commonly explored for diagnostics, prognostics, and potentially assessing the risk of complications in patients in the context of personalized medicine. Finally, some concluding remarks and perspectives hint at the use of electrochemical biosensors in the frame of other cutting-edge converging/emerging technologies toward the inauguration of a new paradigm of personalized medicine.

摘要

作为一种更高效、更有效的疾病诊断和干预方法,基于特定患者的生物学和疾病的分子基础,个性化医学概念中出现了前沿技术、设备、治疗方法和实践。个性化医学有望在评估疾病风险或预测治疗反应、了解个人健康状况以及因此进行医疗保健决策方面发挥关键作用。本文讨论了用于监测不同分子水平的多参数生物标志物的电化学生物传感器,以及它们以个性化方式阐明个体健康状况的潜力。特别是,作为一个例证,我们讨论了由严重急性呼吸系统综合征冠状病毒 2 (SARS-CoV-2) 引起的感染的几个方面,这是目前全球范围内关注的一个健康问题。其中包括 SARS-CoV-2 的结构、感染机制、生物标志物以及最常用于诊断、预后以及潜在评估患者在个性化医学背景下并发症风险的电化学生物传感器。最后,一些结论和观点暗示了在其他前沿融合/新兴技术的框架内使用电化学生物传感器,以开创个性化医学的新模式。

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