Innovative strategies and approaches for enhancing performance in optical probe-based biosensors for point-of-care testing

IF 11.8 1区 化学 Q1 CHEMISTRY, ANALYTICAL
Birui Jin , Chuyao Zhang , Chuan Ma , Huiling Yin , Siyu Li , Zhiguo Du , Guoxu Zhao , Huimei Huang , Zedong Li
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引用次数: 0

Abstract

Optical probe-based biosensors (OPBs) have proven instrumental in human health monitoring. The growing portability and miniaturization of OPBs have rendered them cost-effective and user-friendly, presenting great potential for the advancement of point-of-care testing (POCT) platforms. To further expand their applications, ongoing efforts have been made to enhance their detection performance, particularly focusing on sensitivity. This review provides a comprehensive overview on existing OPBs in POCT and summarizes their underlying detection principles. Additionally, this review highlights four strategies and approaches for enhancing the performance of OPBs: optimizing target-capturing capability, improving the conversion efficiency of biological signals to optical signals, enhancing the separation ability of signal separation system, and optimizing the signal recognition ability of the reader. By focusing on these strategies, this review explores the potential of optimized OPBs in expanding their applications across various human health-related domains.

提高基于光学探针的床旁检测生物传感器性能的创新策略和方法
事实证明,基于光学探针的生物传感器(OPB)在人类健康监测中发挥着重要作用。光学探针生物传感器的便携性和微型化使其越来越具有成本效益和用户友好性,为推进床旁检测(POCT)平台的发展提供了巨大的潜力。为了进一步扩大其应用范围,人们一直在努力提高其检测性能,尤其是灵敏度。本综述全面概述了 POCT 中现有的 OPB,并总结了其基本检测原理。此外,本综述还重点介绍了提高 OPB 性能的四种策略和方法:优化目标捕获能力、提高生物信号到光信号的转换效率、提高信号分离系统的分离能力以及优化阅读器的信号识别能力。本综述以这些策略为重点,探讨了优化 OPB 在人类健康相关的各个领域拓展应用的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Trends in Analytical Chemistry
Trends in Analytical Chemistry 化学-分析化学
CiteScore
20.00
自引率
4.60%
发文量
257
审稿时长
3.4 months
期刊介绍: TrAC publishes succinct and critical overviews of recent advancements in analytical chemistry, designed to assist analytical chemists and other users of analytical techniques. These reviews offer excellent, up-to-date, and timely coverage of various topics within analytical chemistry. Encompassing areas such as analytical instrumentation, biomedical analysis, biomolecular analysis, biosensors, chemical analysis, chemometrics, clinical chemistry, drug discovery, environmental analysis and monitoring, food analysis, forensic science, laboratory automation, materials science, metabolomics, pesticide-residue analysis, pharmaceutical analysis, proteomics, surface science, and water analysis and monitoring, these critical reviews provide comprehensive insights for practitioners in the field.
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