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使用基于预 COF/整体柱复合材料的在线内管固相微萃取-高效液相色谱-串联质谱法,高灵敏度测定养殖水中微塑料吸附的四环素类抗生素。

High-sensitive determination of tetracycline antibiotics adsorbed on microplastics in mariculture water using pre-COF/monolith composite-based in-tube solid phase microextraction on-line coupled to HPLC-MS/MS.

机构信息

Key Laboratory of Global Change and Marine Atmospheric Chemistry, Third Institute of Oceanography, Ministry of Natural Resources, Xiamen 361005, Fujian, China.

College of Marine Equipment and Mechanical Engineering, Jimei University, Xiamen 361021, China.

出版信息

J Hazard Mater. 2024 May 5;469:133768. doi: 10.1016/j.jhazmat.2024.133768. Epub 2024 Feb 15.

Abstract

Microplastics (MPs) act as carriers for organic pollutants (e.g. antibiotics) and microorganisms (e.g. bacteria) in waters, leading to the proliferation of antibiotic resistance genes. Moreover, the antibiotics adsorbed on MPs may exacerbate this process. For further research, it is necessary to understand the types and amounts of antibiotics adsorbed on MPs. However, due to the heavy work of MPs collection and sample pretreatment, there is a lack of analytical methods and relevant data. In this study, an in-tube solid phase microextraction (IT-SPME) on-line coupled to HPLC-MS/MS method based on amorphous precursor polymer of three-dimensional covalent organic frameworks/monolith-based composite adsorbent was developed, which could efficiently capture, enrich and analyze tetracycline (TCs) antibiotics. Under the optimal extraction parameters, the developed method was capable of detecting TCs at levels as low as 0.48-1.76 pg. This method was applied to analyze the TCs adsorbed on MPs of different particle sizes in mariculture water for the first time, requiring a minimum amount of MPs of only 1 mg. Furthermore, it was observed that there could be an antagonistic relationship between algal biofilm and TCs loaded on MPs. This approach could open up new possibilities for analyzing pollutants on MPs and support deeper research on MPs.

摘要

微塑料(MPs)在水体中充当有机污染物(如抗生素)和微生物(如细菌)的载体,导致抗生素耐药基因的增殖。此外,吸附在 MPs 上的抗生素可能会加剧这一过程。为了进一步研究,有必要了解吸附在 MPs 上的抗生素的种类和数量。然而,由于 MPs 收集和样品预处理的工作量大,缺乏分析方法和相关数据。在这项研究中,开发了一种基于无定形前驱体聚合物的三维共价有机框架/整体柱基复合吸附剂的在线管内固相微萃取(IT-SPME)-HPLC-MS/MS 方法,可有效捕获、富集和分析四环素(TCs)抗生素。在最佳萃取参数下,该方法能够检测到低至 0.48-1.76 pg 的 TCs。该方法首次应用于分析水产养殖水中不同粒径 MPs 上吸附的 TCs,仅需 1mg 最少量的 MPs。此外,还观察到藻类生物膜和 MPs 上负载的 TCs 之间可能存在拮抗关系。这种方法可以为分析 MPs 上的污染物开辟新的可能性,并为 MPs 的深入研究提供支持。

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