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基于适体传感器的生物毒素便携检测的研究进展。

Perspectives in Aptasensor-Based Portable Detection for Biotoxins.

机构信息

College of Environment and Public Health, Xiamen Huaxia University, Xiamen 361024, China.

School of Forensic Medicine, Shanxi Medical University, Jinzhong 030600, China.

出版信息

Molecules. 2024 Oct 15;29(20):4891. doi: 10.3390/molecules29204891.

Abstract

Biotoxins are pervasive in food and the environment, posing significant risk to human health. The most effective strategy to mitigate the risk arising from biotoxin exposure is through their specific and sensitive detection. Aptasensors have emerged as pivotal tools, leveraging aptamers as biorecognition elements to transduce the specificity of aptamer-target interactions into quantifiable signals for analytical applications, thereby facilitating the meticulous detection of biotoxins. When integrated with readily portable devices such as lateral flow assays (LFAs), personal glucose meters (PGMs), smartphones, and various meters measuring parameters like pH and pressure, aptasensors have significantly advanced the field of biotoxin monitoring. These commercially available devices enable precise, in situ, and real-time analysis, offering great potential for portable biotoxin detection in food and environmental matrices. This review highlights the recent progress in biotoxin monitoring using portable aptasensors, discussing both their potential applications and the challenges encountered. By addressing these impediments, we anticipate that a portable aptasensor-based detection system will open new avenues in biotoxin monitoring in the future.

摘要

生物毒素广泛存在于食品和环境中,对人类健康构成重大威胁。减轻生物毒素暴露风险的最有效策略是通过它们的特异性和敏感性检测。适配体传感器已成为关键工具,利用适配体作为生物识别元件,将适配体-靶标相互作用的特异性转化为可量化的信号,用于分析应用,从而促进对生物毒素的精细检测。当与侧向流动分析 (LFA)、个人血糖仪 (PGM)、智能手机和各种测量 pH 值和压力等参数的仪表等易于携带的设备集成时,适配体传感器极大地推动了生物毒素监测领域的发展。这些市售设备可实现精确、原位和实时分析,为食品和环境基质中的便携式生物毒素检测提供了巨大潜力。本文综述了使用便携式适配体传感器进行生物毒素监测的最新进展,讨论了它们的潜在应用和遇到的挑战。通过解决这些障碍,我们预计基于便携式适配体传感器的检测系统将为未来的生物毒素监测开辟新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/955e/11510259/7c34b4130447/molecules-29-04891-g002.jpg

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