Department of Biotechnology and Chemistry, Vaal University of Technology, Vanderbijlpark 1911, South Africa.
Department of Chemistry, University of Ibadan, Ibadan 200284, Nigeria.
Sensors (Basel). 2023 Apr 19;23(8):4106. doi: 10.3390/s23084106.
Photoelectrochemical (PEC) sensing is an emerging technological innovation for monitoring small substances/molecules in biological or non-biological systems. In particular, there has been a surge of interest in developing PEC devices for determining molecules of clinical significance. This is especially the case for molecules that are markers for serious and deadly medical conditions. The increased interest in PEC sensors to monitor such biomarkers can be attributed to the many apparent advantages of the PEC system, including an enhanced measurable signal, high potential for miniaturization, rapid testing, and low cost, amongst others. The growing number of published research reports on the subject calls for a comprehensive review of the various findings. This article is a review of studies on electrochemical (EC) and PEC sensors for ovarian cancer biomarkers in the last seven years (2016-2022). EC sensors were included because PEC is an improved EC; and a comparison of both systems has, expectedly, been carried out in many studies. Specific attention was given to the different markers of ovarian cancer and the EC/PEC sensing platforms developed for their detection/quantification. Relevant articles were sourced from the following databases: Scopus, PubMed Central, Web of Science, Science Direct, Academic Search Complete, EBSCO, CORE, Directory of open Access Journals (DOAJ), Public Library of Science (PLOS), BioMed Central (BMC), Semantic Scholar, Research Gate, SciELO, Wiley Online Library, Elsevier and SpringerLink.
光电化学(PEC)传感是一种新兴的技术创新,用于监测生物或非生物系统中的小分子/分子。特别是,人们对开发用于测定具有临床意义的分子的 PEC 器件产生了浓厚的兴趣。对于那些作为严重和致命医疗状况标志物的分子来说,更是如此。人们对 PEC 传感器的兴趣增加,以监测此类生物标志物,可以归因于 PEC 系统的许多明显优势,包括增强的可测量信号、高度的小型化潜力、快速测试和低成本等。关于这个主题的发表研究报告的数量不断增加,需要对各种发现进行全面审查。本文综述了过去七年(2016-2022 年)电化学(EC)和 PEC 传感器用于卵巢癌生物标志物的研究。之所以包括 EC 传感器,是因为 PEC 是一种改进的 EC;并且在许多研究中,已经对这两种系统进行了比较。特别关注了卵巢癌的不同标志物,以及为检测/定量这些标志物而开发的 EC/PEC 传感平台。相关文章来源于以下数据库:Scopus、PubMed Central、Web of Science、Science Direct、Academic Search Complete、EBSCO、CORE、开放获取期刊目录(DOAJ)、公共科学图书馆(PLOS)、生物医学中心(BMC)、语义学者、研究门、SciELO、威利在线图书馆、爱思唯尔和施普林格链接。