Chen Xiaohan, Zhou Shuo, Wang Yunjiao, Zheng Ling, Guan Sarah, Wang Deqiang, Wang Liang, Guan Xiyun
Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences, Chongqing, 400714, China.
Chongqing School, University of Chinese Academy of Science, Chongqing, 400714, China.
Trends Analyt Chem. 2023 May;162. doi: 10.1016/j.trac.2023.117060. Epub 2023 Apr 11.
Biomarker detection has attracted increasing interest in recent years due to the minimally or non-invasive sampling process. Single entity analysis of biomarkers is expected to provide real-time and accurate biological information for early disease diagnosis and prognosis, which is critical to the effective disease treatment and is also important in personalized medicine. As an innovative single entity analysis method, nanopore sensing is a pioneering single-molecule detection technique that is widely used in analytical bioanalytical fields. In this review, we overview the recent progress of nanopore biomarker detection as new approaches to disease diagnosis. In highlighted studies, nanopore was focusing on detecting biomarkers of different categories of communicable and noncommunicable diseases, such as pandemic Covid-19, AIDS, cancers, neurologic diseases, etc. Various sensitive and selective nanopore detecting strategies for different types of biomarkers are summarized. In addition, the challenges, opportunities, and direction for future development of nanopore-based biomarker sensors are also discussed.
近年来,由于采样过程微创或无创,生物标志物检测引起了越来越多的关注。生物标志物的单实体分析有望为疾病早期诊断和预后提供实时、准确的生物学信息,这对疾病的有效治疗至关重要,在个性化医疗中也很重要。作为一种创新的单实体分析方法,纳米孔传感是一种开创性的单分子检测技术,广泛应用于分析生物分析领域。在这篇综述中,我们概述了纳米孔生物标志物检测作为疾病诊断新方法的最新进展。在重点研究中,纳米孔专注于检测不同类型传染病和非传染病的生物标志物,如大流行的新冠病毒病、艾滋病、癌症、神经系统疾病等。总结了针对不同类型生物标志物的各种灵敏且具选择性的纳米孔检测策略。此外,还讨论了基于纳米孔的生物标志物传感器未来发展面临的挑战、机遇和方向。