Kulabhusan Prabir Kumar, Pishva Parsa, Çapkın Eda, Tambe Prajakta, Yüce Meral
Institute for Global Food Security, School of Biological Sciences, Queen's University Belfast, Belfast, UK.
Sabanci University, Faculty of Engineering and Natural Sciences, Istanbul, 34956, Turkey.
Curr Med Chem. 2023;30(8):910-934. doi: 10.2174/1568009622666220214101059.
Viral infections can cause fatal illnesses to humans as well as animals. Early detection of viruses is therefore crucial to provide effective treatment to patients. Recently, the Covid-19 pandemic has undoubtedly given an alarming call to develop rapid and sensitive detection platforms. The viral diagnostic tools need to be fast, affordable, and easy to operate with high sensitivity and specificity equivalent or superior to the currently used diagnostic methods. The present detection methods include direct detection of viral antigens or measuring the response of antibodies to viral infections. However, the sensitivity and quantification of the virus are still a significant challenge. Detection tools employing synthetic binding molecules like aptamers may provide several advantages over the conventional methods that use antibodies in the assay format. Aptamers are highly stable and tailorable molecules and are therefore ideal for detection and chemical sensing applications. This review article discusses various advances made in aptamer-based viral detection platforms, including electrochemical, optical, and colorimetric methods to detect viruses, specifically SARS-Cov-2. Considering the several advantages, aptamers could be game-changing in designing high-throughput biosensors for viruses and other biomedical applications in the future.
病毒感染可导致人类和动物患上致命疾病。因此,病毒的早期检测对于为患者提供有效治疗至关重要。最近,新冠疫情无疑敲响了警钟,促使人们开发快速且灵敏的检测平台。病毒诊断工具需要快速、经济实惠且易于操作,同时具有与当前使用的诊断方法相当或更优的高灵敏度和特异性。目前的检测方法包括直接检测病毒抗原或测量抗体对病毒感染的反应。然而,病毒的灵敏度和定量检测仍然是一项重大挑战。与在检测形式中使用抗体的传统方法相比,采用适配体等合成结合分子的检测工具可能具有多个优势。适配体是高度稳定且可定制的分子,因此非常适合检测和化学传感应用。这篇综述文章讨论了基于适配体的病毒检测平台所取得的各种进展,包括用于检测病毒(特别是新冠病毒)的电化学、光学和比色法。考虑到其诸多优势,适配体在未来设计用于病毒检测的高通量生物传感器及其他生物医学应用方面可能会带来变革。