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农药生物传感器:趋势与进展。

Pesticide biosensors: trends and progresses.

机构信息

Universite de Pau Et Des Pays de L'Adour, E2S UPPA, CNRS, IPREM, Pau, France.

出版信息

Anal Bioanal Chem. 2023 Oct;415(24):5899-5924. doi: 10.1007/s00216-023-04911-4. Epub 2023 Sep 5.

Abstract

Pesticides, chemical substances extensively employed in agriculture to optimize crop yields, pose potential risks to human and environmental health. Consequently, regulatory frameworks are in place to restrict pesticide residue concentrations in water intended for human consumption. These regulations are implemented to safeguard consumer safety and mitigate any adverse effects on the environment and public health. Although gas chromatography- and liquid chromatography-mass spectrometry (GC-MS and LC-MS) are highly efficient techniques for pesticide quantification, their use is not suitable for real-time monitoring due to the need for sophisticated laboratory pretreatment of samples prior to analysis. Since they would enable analyte detection with selectivity and sensitivity without sample pretreatment, biosensors appear as a promising alternative. These consist of a bioreceptor allowing for specific recognition of the target and of a detection platform, which translates the biological interaction into a measurable signal. As early detection systems remain urgently needed to promptly alert and act in case of pollution, we review here the biosensors described in the literature for pesticide detection to advance their development for use in the field.

摘要

农药是农业中广泛使用的优化作物产量的化学物质,但对人类健康和环境存在潜在风险。因此,制定了监管框架来限制供人类消费的水中的农药残留浓度。这些法规的实施是为了保障消费者的安全,减轻对环境和公共健康的任何不利影响。虽然气相色谱-和液相色谱-质谱法(GC-MS 和 LC-MS)是用于农药定量的高效技术,但由于在分析之前需要对样品进行复杂的实验室预处理,因此不适合实时监测。由于它们可以在无需样品预处理的情况下实现选择性和灵敏度的分析物检测,因此生物传感器似乎是一种很有前途的替代方法。这些传感器由一个生物受体组成,允许对目标进行特异性识别,以及一个检测平台,将生物相互作用转化为可测量的信号。由于迫切需要早期检测系统来在污染发生时及时发出警报并采取行动,因此我们在这里综述了文献中描述的用于农药检测的生物传感器,以推进它们在该领域的开发和应用。

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