Department of Chemistry, Indian Institute of Technology Palakkad, Palakkad, Kerala 678 557, India.
Department of Medicine, Case Western Reserve University, Cleveland, OH 44106, USA.
Bioelectrochemistry. 2024 Apr;156:108594. doi: 10.1016/j.bioelechem.2023.108594. Epub 2023 Nov 13.
Viral pandemic diseases have disruptive global consequences leading to millions of deaths and a severe impact on the global economy. Inadequate preventative protocols have led to an overwhelming demand for intensive care leading to uncontrollable burdens and even breakdown of healthcare sectors across many countries. The rapid detection of viral disease helps in the understanding of the relevant intricacies, helping to tackle infection with improved guidelines. Portable biosensor devices offer promising solutions by facilitating on-site detection of viral pathogens. This review summarizes the latest innovative strategies reported using electroanalytical methods for the screening of viral antigens. The structural components of viruses and their categories are presented followed by the various recognition elements and transduction techniques involved in biosensors. Core sections focus on biosensors reported for viral genomic detection(DNA and RNA) and antigenic capsid protein. Strategies for addressing the challenges of electroanalytical biosensing of viral components are also presented. The advantages, and disadvantages of biorecognition elements and nanozymes for the detection of viral disease are highlighted. Such technical insights will help researchers working in chemistry, and biochemistry as well as clinicians working in medical diagnostics.
病毒性流行疾病具有全球破坏性影响,导致数百万人死亡,并对全球经济造成严重影响。预防措施不足导致对重症监护的需求过大,导致许多国家的医疗保健部门不堪重负,甚至崩溃。病毒疾病的快速检测有助于了解相关的复杂性,有助于通过改进的指南来应对感染。便携式生物传感器设备通过促进现场检测病毒病原体提供了有希望的解决方案。本综述总结了使用电化学生物分析方法筛选病毒抗原的最新创新策略。介绍了病毒的结构组成及其类别,以及生物传感器中涉及的各种识别元件和转导技术。核心部分重点介绍了用于病毒基因组检测(DNA 和 RNA)和抗原壳蛋白的生物传感器报告。还提出了解决电化学生物传感器中病毒成分检测挑战的策略。强调了用于检测病毒疾病的生物识别元件和纳米酶的优点和缺点。这些技术见解将有助于从事化学和生物化学研究的研究人员以及从事医学诊断的临床医生。