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Development of novel molecularly imprinted solid-phase microextraction fibers and their application for the determination of antibiotic drugs in biological samples by SPME-LC/MSn

机译:新型分子印迹固相微萃取纤维的开发及其在SPME-LC / MSn测定生物样品中抗生素药物中的应用

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摘要

Novel molecularly imprinted polymer (MIP)-coated fibers for solid-phase microextraction (SPME) fibers were prepared by using linezolid as the template molecule. The characteristics and application of these fibers were investigated. The polypyrrole, polythiophene, and poly(3-methylthiophene) coatings were prepared in the electrochemical polymerization way. The molecularly imprinted SPME coatings display a high selectivity toward linezolid. Molecularly imprinted coatings showed a stable and reproducible response without any influence of interferents commonly existing in biological samples. High-performance liquid chromatography with spectroscopic UV and mass spectrometry (MS) detectors were used for the determination of selected antibiotic drugs (linezolid, daptomycin, amoxicillin). The isolation and preconcentration of selected antibiotic drugs from new types of biological samples (acellular and protein-free simulated body fluid) and human plasma samples were performed. The SPME MIP-coated fibers are suitable for the selective extraction of antibiotic drugs in biological samples.
机译:以利奈唑胺为模板分子,制备了用于固相微萃取(SPME)纤维的新型分子印迹聚合物(MIP)包覆纤维。研究了这些纤维的特性和应用。以电化学聚合的方式制备了聚吡咯,聚噻吩和聚(3-甲基噻吩)涂层。分子印迹的SPME涂层对利奈唑胺具有很高的选择性。分子印迹涂层显示出稳定且可重现的响应,而没有生物样品中通常存在的干扰物的任何影响。高效液相色谱仪配有光谱紫外和质谱(MS)检测器,用于测定选定的抗生素药物(利奈唑胺,达托霉素,阿莫西林)。从新型生物样品(无细胞和无蛋白质的模拟体液)和人血浆样品中分离并预选了一些抗生素药物。 SPME MIP涂层的纤维适用于生物样品中抗生素药物的选择性提取。

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