Center for Advanced Materials (CAM), Qatar University, Doha 2713, Qatar.
Center for Advanced Materials (CAM), Qatar University, Doha 2713, Qatar.
Talanta. 2017 Jun 1;168:52-61. doi: 10.1016/j.talanta.2017.03.022. Epub 2017 Mar 9.
During the last few decades, there has been a tremendous rise in the number of research studies dedicated towards the development of diagnostic tools based on bio-sensing technology for the early detection of various diseases like cardiovascular diseases (CVD), many types of cancer, diabetes mellitus (DM) and many infectious diseases. Many breakthroughs have been developed in the areas of improving specificity, selectivity and repeatability of the biosensor devices. Innovations in the interdisciplinary areas like biotechnology, genetics, organic electronics and nanotechnology also had a great positive impact on the growth of bio-sensing technology. As a product of these improvements, fast and consistent sensing policies have been productively created for precise and ultrasensitive biomarker-based disease diagnostics. Prostate-specific antigen (PSA) is widely considered as an important biomarker used for diagnosing prostate cancer. There have been many publications based on various biosensors used for PSA detection, but a limited review was available for the classification of these biosensors used for the detection of PSA. This review highlights the various biosensors used for PSA detection and proposes a novel classification for PSA biosensors based on the transducer type used. We also highlight the advantages, disadvantages and limitations of each technique used for PSA biosensing which will make this article a complete reference tool for the future researches in PSA biosensing.
在过去的几十年中,人们致力于开发基于生物传感技术的诊断工具的研究数量呈指数级增长,这些工具可用于早期检测各种疾病,如心血管疾病(CVD)、多种癌症、糖尿病(DM)和许多传染病。在提高生物传感器设备的特异性、选择性和可重复性方面已经取得了许多突破。生物技术、遗传学、有机电子学和纳米技术等跨学科领域的创新也对生物传感技术的发展产生了巨大的积极影响。作为这些改进的产物,已经为基于生物标志物的精确和超灵敏疾病诊断创建了快速且一致的传感策略。前列腺特异性抗原(PSA)被广泛认为是用于诊断前列腺癌的重要生物标志物。已经有许多基于各种生物传感器用于 PSA 检测的出版物,但对于用于 PSA 检测的这些生物传感器的分类,仅有有限的综述。本综述重点介绍了用于 PSA 检测的各种生物传感器,并根据所用换能器类型为 PSA 生物传感器提出了一种新的分类方法。我们还强调了用于 PSA 生物传感的每种技术的优点、缺点和局限性,这将使本文成为 PSA 生物传感未来研究的完整参考工具。