Risticevic Sanja, Niri Vadoud H, Vuckovic Dajana, Pawliszyn Janusz
Department of Chemistry, University of Waterloo, 200 University Avenue West, Waterloo, ON, N2L 3G1, Canada.
Anal Bioanal Chem. 2009 Feb;393(3):781-95. doi: 10.1007/s00216-008-2375-3. Epub 2008 Oct 4.
The main objective of this review is to describe the recent developments in solid-phase microextraction technology in food, environmental and bioanalytical chemistry applications. We briefly introduce the historical perspective on the very early work associated with the development of theoretical principles of SPME, but particular emphasis is placed on the more recent developments in the area of automation, high-throughput analysis, SPME method optimization approaches and construction of new SPME devices and their applications. The area of SPME automation for both GC and LC applications is particularly addressed in this review, as the most recent developments in this field have allowed the use of this technology for high-throughput applications. The development of new autosamplers with SPME compatibility and new-generation metal fibre assemblies has enhanced sample throughput for SPME-GC applications, the latter being attributed to the possibility of using the same fibre for several hundred extraction/injection cycles. For LC applications, high-throughput analysis (>1,000 samples per day) can be achieved for the first time with a multi-SPME autosampler which uses multi-well plate technology and allows SPME sample preparation of up to 96 samples in parallel. The development and evolution of new SPME devices such as needle trap, thin-film microextraction and cold-fibre headspace SPME have offered significant improvements in performance characteristics compared with the conventional fibre-SPME arrangement.
本综述的主要目的是描述固相微萃取技术在食品、环境和生物分析化学应用中的最新进展。我们简要介绍了与固相微萃取理论原理发展相关的早期工作的历史背景,但特别强调了自动化、高通量分析、固相微萃取方法优化方法以及新型固相微萃取装置的构建及其应用等领域的最新进展。本综述特别讨论了气相色谱(GC)和液相色谱(LC)应用中的固相微萃取自动化领域,因为该领域的最新进展使得该技术可用于高通量应用。具有固相微萃取兼容性的新型自动进样器和新一代金属纤维组件的开发提高了固相微萃取 - 气相色谱应用的样品通量,后者归因于同一根纤维可用于数百次萃取/进样循环的可能性。对于液相色谱应用,首次使用采用多孔板技术且允许并行制备多达96个样品的固相微萃取的多固相微萃取自动进样器可实现高通量分析(每天>1000个样品)。与传统的纤维 - 固相微萃取装置相比,诸如针捕集、薄膜微萃取和冷纤维顶空固相微萃取等新型固相微萃取装置的开发和演进在性能特征方面有了显著改进。