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Recent progress in solid-phase microextraction and its pharmaceutical and biomedical applications

机译:固相微萃取及其药物和生物医学应用的最新进展

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摘要

In pharmaceutical and biomedical analyses, sample preparation is essential for the isolation and concentration of target compounds from complex biological matrices. This process is both labor-intensive and error-prone and markedly influences the reliability and accuracy of determining molecules of interest. Solid-phase microextraction (SPME) is a simple and convenient sample preparation technique that has enabled automation, miniaturization, high-throughput performance, and on-line coupling with analytical instruments. Moreover, SPME has reduced analysis times, as well as the cost of solvents and disposal. SPME procedures have been modified to address requirements of specific applications. More robust fiber assemblies and coatings with higher extraction efficiencies, selectivity and stability have been commercialized. Furthermore, devices have been designed to use capillary tubes, magnetic stir bars or thin films rather than fibers for extraction. This review focuses on novel SPME techniques, including fiber SPME, in-tube SPME and related techniques, reported in the past five years. Their applications to pharmaceutical, forensic and diagnostic studies and to determinations of environmental and occupational exposure are also summarized.
机译:在药物和生物医学分析中,样品制备对于从复杂的生物基质中分离和浓缩目标化合物至关重要。该过程既费力又容易出错,并且显着影响确定目标分子的可靠性和准确性。固相微萃取(SPME)是一种简单便捷的样品制备技术,可实现自动化,小型化,高通量性能以及与分析仪器的在线耦合。此外,SPME减少了分析时间,并减少了溶剂和处理的成本。 SPME程序已被修改以满足特定应用程序的要求。具有更高提取效率,选择性和稳定性的更坚固的纤维组件和涂层已经商业化。此外,设备被设计成使用毛细管,磁力搅拌棒或薄膜而不是纤维进行提取。这篇综述着重于过去五年中报道的新型SPME技术,包括光纤SPME,管内SPME和相关技术。还总结了它们在药物,法医和诊断研究以及环境和职业暴露测定中的应用。

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