Department of Biomedical Engineering, National Cheng Kung University, Tainan 701, Taiwan.
Department of Medical Laboratory Science and Biotechnology, China Medical University, Taichung 404, Taiwan.
Biosensors (Basel). 2022 Nov 23;12(12):1068. doi: 10.3390/bios12121068.
Seeking optimized infectious pathogen detection tools is of primary importance to lessen the spread of infections, allowing prompt medical attention for the infected. Among nucleic-acid-based sensing techniques, loop-mediated isothermal amplification is a promising method, as it provides rapid, sensitive, and specific detection of microbial and viral pathogens and has enormous potential to transform current point-of-care molecular diagnostics. In this review, the advances in LAMP-based point-of-care diagnostics assays developed during the past few years for rapid and sensitive detection of infectious pathogens are outlined. The numerous detection methods of LAMP-based biosensors are discussed in an end-point and real-time manner with ideal examples. We also summarize the trends in LAMP-on-a-chip modalities, such as classical microfluidic, paper-based, and digital LAMP, with their merits and limitations. Finally, we provide our opinion on the future improvement of on-chip LAMP methods. This review serves as an overview of recent breakthroughs in the LAMP approach and their potential for use in the diagnosis of existing and emerging diseases.
寻求优化的传染病病原体检测工具对于减少感染传播至关重要,以便及时为感染者提供医疗关注。在基于核酸的传感技术中,环介导等温扩增是一种很有前途的方法,因为它可以快速、灵敏、特异地检测微生物和病毒病原体,并且具有极大的潜力改变当前的即时分子诊断。在本文中,我们综述了过去几年中基于 LAMP 的即时诊断检测方法在快速灵敏检测传染病病原体方面的进展。我们以理想的例子以终点法和实时法讨论了基于 LAMP 的生物传感器的众多检测方法。我们还总结了基于 LAMP 的芯片模式的趋势,例如经典的微流控、纸质和数字 LAMP,及其优缺点。最后,我们对芯片上 LAMP 方法的未来改进提出了看法。本文综述了 LAMP 方法的最新突破及其在现有和新兴疾病诊断中的应用潜力。