Department of Molecular Biology, Faculty of Medicine, University of Cantabria (UC), 39011 Santander, Spain.
Instituto de Investigación Valdecilla (IDIVAL), 39011 Santander, Spain.
Int J Mol Sci. 2023 Jun 16;24(12):10233. doi: 10.3390/ijms241210233.
The coronavirus SARS-CoV-2 has highlighted the criticality of an accurate and rapid diagnosis in order to contain the spread of the virus. Knowledge of the viral structure and its genome is essential for diagnosis development. The virus is still quickly evolving and the global scenario could easily change. Thus, a greater range of diagnostic options is essential to face this threat to public health. In response to the global demand, there has been a rapid advancement in the understanding of current diagnostic methods. In fact, innovative approaches have emerged, leveraging the benefits of nanomedicine and microfluidic technologies. Although this development has been incredibly fast, several key areas require further investigation and optimization, such as sample collection and preparation, assay optimization and sensitivity, cost effectiveness, scalability device miniaturization, and portability and integration with smartphones. Addressing these gaps in the knowledge and these technological challenges will contribute to the development of reliable, sensitive, and user-friendly NAAT-based POCTs for the diagnosis of SARS-CoV-2 and other infectious diseases, facilitating rapid and effective patient management. This review aims to provide an overview of current SARS-CoV-2 detection methods based on nucleic acid detection tests (NAATs). Additionally, it explores promising approaches that combine nanomedicine and microfluidic devices with high sensitivity and relatively fast 'time to answer' for integration into point-of-care testing (POCT).
新型冠状病毒 SARS-CoV-2 突出了准确快速诊断的重要性,以便控制病毒的传播。了解病毒的结构及其基因组对于诊断的发展至关重要。该病毒仍在迅速进化,全球形势可能会轻易改变。因此,为了应对这一公共卫生威胁,需要更多的诊断选择。为了应对全球需求,人们对当前诊断方法的理解取得了快速进展。事实上,已经出现了一些创新方法,利用了纳米医学和微流控技术的优势。尽管这一发展速度非常快,但仍有几个关键领域需要进一步研究和优化,例如样本采集和准备、检测优化和灵敏度、成本效益、可扩展性、设备小型化以及与智能手机的便携性和集成性。解决这些知识空白和技术挑战将有助于开发可靠、敏感和用户友好的基于核酸扩增技术(NAAT)的即时检测(POCT),以用于 SARS-CoV-2 和其他传染病的诊断,从而促进快速有效的患者管理。本综述旨在概述基于核酸检测(NAAT)的当前 SARS-CoV-2 检测方法。此外,它还探讨了有前途的方法,将纳米医学和微流控设备与高灵敏度和相对较快的“答案时间”相结合,以集成到即时检测(POCT)中。