Department of Chemistry, Jagannath University, Dhaka 1100, Bangladesh.
Department of Pharmaceutical Sciences, School of Pharmacy, University of Texas at El Paso, El Paso, TX 79902, USA.
Molecules. 2020 Dec 8;25(24):5787. doi: 10.3390/molecules25245787.
With the rise in public health awareness, research on point-of-care testing (POCT) has significantly advanced. Electrochemical biosensors (ECBs) are one of the most promising candidates for the future of POCT due to their quick and accurate response, ease of operation, and cost effectiveness. This review focuses on the use of metal nanoparticles (MNPs) for fabricating ECBs that has a potential to be used for POCT. The field has expanded remarkably from its initial enzymatic and immunosensor-based setups. This review provides a concise categorization of the ECBs to allow for a better understanding of the development process. The influence of structural aspects of MNPs in biocompatibility and effective sensor design has been explored. The advances in MNP-based ECBs for the detection of some of the most prominent cancer biomarkers (carcinoembryonic antigen (CEA), cancer antigen 125 (CA125), Herceptin-2 (HER2), etc.) and small biomolecules (glucose, dopamine, hydrogen peroxide, etc.) have been discussed in detail. Additionally, the novel coronavirus (2019-nCoV) ECBs have been briefly discussed. Beyond that, the limitations and challenges that ECBs face in clinical applications are examined and possible pathways for overcoming these limitations are discussed.
随着公众健康意识的提高,即时检测(POCT)的研究取得了显著进展。电化学生物传感器(ECB)因其快速、准确的响应、易于操作和成本效益高而成为 POCT 未来最有前途的候选者之一。本综述重点介绍了用于制造 ECB 的金属纳米粒子(MNPs)的使用,这有可能用于 POCT。该领域从最初的酶和免疫传感器为基础的设置显著扩展。本综述对 ECB 进行了简明的分类,以便更好地理解其发展过程。探讨了 MNPs 的结构方面对生物相容性和有效传感器设计的影响。详细讨论了基于 MNPs 的 ECB 在检测一些最突出的癌症生物标志物(癌胚抗原(CEA)、癌抗原 125(CA125)、赫赛汀-2(HER2)等)和小分子生物标志物(葡萄糖、多巴胺、过氧化氢等)方面的进展。此外,还简要讨论了新型冠状病毒(2019-nCoV)ECB。除此之外,还检查了 ECB 在临床应用中面临的限制和挑战,并讨论了克服这些限制的可能途径。