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用于在蜜蜂和相关蜜蜂基质中进行分析应用的新烟碱微球免疫传感。

Neonicotinoid Microsphere Immunosensing for Profiling Applications in Honeybees and Bee-Related Matrices.

机构信息

Wageningen Food Safety Research, Akkermaalsbos 2, 6708 WB Wageningen, The Netherlands.

Institute of Pesticide and Environmental Toxicology, Key Laboratory of Biology of Crop Pathogens and Insects of Zhejiang Province, Zhejiang University, Hangzhou 310058, China.

出版信息

Biosensors (Basel). 2022 Sep 26;12(10):792. doi: 10.3390/bios12100792.

Abstract

Neonicotinoids are the most commonly used insecticides due to their effectiveness. However, non-targeted insects, especially bees, are also affected by neonicotinoids. Therefore, neonicotinoid application can contribute to the declining bee populations worldwide. The presented study describes the development of novel competitive, fluorescent microsphere-based suspension immunoassays for neonicotinoid profiling and their application to bees and essential bee-related matrices, using the Multi-Analyte Profiling (xMAP) technology. For the construction of these neonicotinoid microsphere immunoassays (nMIAs), neonicotinoid-ovalbumin conjugates were coupled to unique fluorescent, paramagnetic microspheres, which competed with the free neonicotinoids that were present in test samples for interacting with the corresponding, specific antibodies. In total, five independent nMIA's were developed for the detection of imidacloprid, acetamiprid, clothianidin, thiacloprid, thiamethoxam, dinotefuran, nitenpyram and imidaclothiz with the limits of detection being for 0.01 ng/mL, 0.01 ng/mL, 0.02 ng/mL, 0.02 ng/mL, 0.003 ng/mL, 2.95 ng/mL, 0.09 ng/mL and 0.04 ng/mL, respectively. The developed nMIAs were applied to fortified matrices including surface water, pollen, honey and honeybees. All of the neonicotinoids, except dinotefuran, could be sensitively detected in all of the tested environmental matrices and bees, with there being sensitivities of 1 ng/mL in water and 10 ng/g in solid materials. These nMIAs provide a rapid profiling method for all of the common neonicotinoids, including those that are banned by the European Union for outdoor use. The developed method can contribute to healthy and sustainable beekeeping, globally, via its application in the apiary environment.

摘要

新烟碱类杀虫剂由于其有效性而被广泛使用。然而,非靶标昆虫,特别是蜜蜂,也会受到新烟碱类杀虫剂的影响。因此,新烟碱类杀虫剂的应用可能导致全球蜜蜂数量的减少。本研究描述了新型竞争性、基于荧光微球的悬浮免疫分析的开发,用于新烟碱类杀虫剂的分析,并将其应用于蜜蜂和重要的蜜蜂相关基质,使用多分析物分析(xMAP)技术。为了构建这些新烟碱类微球免疫分析(nMIA),新烟碱类-卵清蛋白缀合物与独特的荧光、顺磁性微球偶联,这些微球与测试样品中存在的游离新烟碱类竞争,以与相应的特异性抗体相互作用。总共开发了 5 种独立的 nMIA 用于检测吡虫啉、噻虫胺、噻虫啉、噻虫嗪、噻虫酰胺、噻虫酮、吡虫脒和噻虫嗪,检测限分别为 0.01ng/mL、0.01ng/mL、0.02ng/mL、0.02ng/mL、0.003ng/mL、2.95ng/mL、0.09ng/mL和 0.04ng/mL。所开发的 nMIA 应用于包括地表水、花粉、蜂蜜和蜜蜂在内的强化基质中。除了噻虫酮之外,所有的新烟碱类杀虫剂都可以在所有测试的环境基质和蜜蜂中被灵敏地检测到,水中的灵敏度为 1ng/mL,固体材料中的灵敏度为 10ng/g。这些 nMIA 为所有常见的新烟碱类杀虫剂提供了一种快速的分析方法,包括欧盟禁止在户外使用的新烟碱类杀虫剂。该方法可通过在养蜂环境中的应用,为全球健康和可持续的养蜂业做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2e8/9599487/df67ccc618f8/biosensors-12-00792-g001.jpg

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