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用于兽药残留分析样品制备的快速在线微量流通式透析探头。

Rapid and Online Microvolume Flow-Through Dialysis Probe for Sample Preparation in Veterinary Drug Residue Analysis.

机构信息

School of Veterinary Medicine, Texas Tech University, Amarillo, TX 79106, USA.

出版信息

Sensors (Basel). 2024 Jun 19;24(12):3971. doi: 10.3390/s24123971.

Abstract

A rapid and online microvolume flow-through dialysis probe designed for sample preparation in the analysis of veterinary drug residues is introduced. This study addresses the need for efficient and green sample preparation methods that reduce chemical waste and reagent use. The dialysis probe integrates with liquid chromatography and mass spectrometry (LC-MS) systems, facilitating automated, high-throughput analysis. The dialysis method utilizes minimal reagent volumes per sample, significantly reducing the generation of solvent waste compared to traditional sample preparation techniques. Several veterinary drugs were spiked into tissue homogenates and analyzed to validate the probe's efficacy. A diagnostic sensitivity of >97% and specificity of >95% were obtained for this performance evaluation. The results demonstrated the effective removal of cellular debris and particulates, ensuring sample integrity and preventing instrument clogging. The automated dialysis probe yielded recovery rates between 27 and 77% for multiple analytes, confirming its potential to streamline veterinary drug residue analysis, while adhering to green chemistry principles. The approach highlights substantial improvements in both environmental impact and operational efficiency, presenting a viable alternative to conventional sample preparation methods in regulatory and research applications.

摘要

介绍了一种用于兽医药物残留分析样品制备的快速在线微量流动透析探头。本研究旨在满足高效和绿色样品制备方法的需求,减少化学废物和试剂的使用。该透析探头与液相色谱和质谱(LC-MS)系统集成,实现了自动化、高通量分析。与传统的样品制备技术相比,该透析方法每样品仅使用最小量的试剂,显著减少了溶剂废物的产生。将几种兽医药物掺入组织匀浆中进行分析,以验证探头的功效。该性能评估获得了>97%的诊断灵敏度和>95%的特异性。结果表明,该探头能够有效地去除细胞碎片和颗粒,确保样品的完整性并防止仪器堵塞。自动化透析探头对多种分析物的回收率在 27%至 77%之间,证实了其在简化兽医药物残留分析方面的潜力,同时符合绿色化学原则。该方法在环境影响和操作效率方面都有显著提高,为监管和研究应用中的常规样品制备方法提供了一种可行的替代方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c39/11207326/10aa7aa21337/sensors-24-03971-g001.jpg

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