Udourioh Godwin A, Solomon Moses M, Epelle Emmanuel I
Analytical/Material Chemistry Laboratory, Department of Pure and Applied Chemistry, Faculty of Natural and Applied Sciences, Veritas University, Abuja, P.O.Box 6523, Garki, Abuja Nigeria.
Department of Chemistry, College of Science and Technology, Covenant University, Canaanland, Km10, Idiroko Road, Ota, Ogun State Nigeria.
Cell Mol Bioeng. 2021 Jul 6;14(6):535-553. doi: 10.1007/s12195-021-00686-9. eCollection 2021 Dec.
The novel coronavirus disease (COVID-19) pandemic outbreak is the most startling public health crises with attendant global socio-economic burden ever experienced in the twenty-first century. The level of devastation by this outbreak is such that highly impacted countries will take years to recover. Studies have shown that timely detection based on accelerated sample testing and accurate diagnosis are crucial steps to reducing or preventing the spread of any pandemic outbreak. In this opinionated review, the impacts of metal organic frameworks (MOFs) as a biosensor in a pandemic outbreak is investigated with reference to COVID-19. Biosensing technologies have been proven to be very effective in clinical analyses, especially in assessment of severe infectious diseases. Polymerase chain reactions (PCR, RT-PCR, CRISPR) - based test methods predominantly used for SARS-COV-2 diagnoses have serious limitations and the health scientists and researchers are urged to come up with a more robust and versatile system for solving diagnostic problem associated with the current and future pandemic outbreaks. MOFs, an emerging crystalline material with unique characteristics will serve as promising biosensing materials in a pandemic outbreak such as the one we are in. We hereby highlight the characteristics of MOFs and their sensing applications, potentials as biosensors in a pandemic outbreak and draw the attention of researchers to a new vista of research that needs immediate action.
新型冠状病毒病(COVID-19)大流行是21世纪以来最令人震惊的公共卫生危机,伴随着巨大的全球社会经济负担。这次疫情造成的破坏程度之高,以至于受影响严重的国家需要数年时间才能恢复。研究表明,基于加速样本检测的及时发现和准确诊断是减少或预防任何疫情爆发传播的关键步骤。在这篇观点性综述中,我们参考COVID-19研究了金属有机框架(MOF)作为生物传感器在疫情爆发中的影响。生物传感技术已被证明在临床分析中非常有效,特别是在评估严重传染病方面。主要用于SARS-CoV-2诊断的基于聚合酶链反应(PCR、RT-PCR、CRISPR)的检测方法存在严重局限性,因此敦促健康科学家和研究人员提出一个更强大、更通用的系统,以解决与当前和未来疫情爆发相关的诊断问题。MOF是一种具有独特特性的新兴晶体材料,将成为像我们正在经历的这种疫情爆发中很有前景的生物传感材料。我们在此强调MOF的特性及其传感应用、在疫情爆发中作为生物传感器的潜力,并提请研究人员关注这一需要立即采取行动的新研究领域。