Vogeser Michael
Institute of Clinical Chemistry, Ludwig-Maximilians Universität München, Munich, Germany.
Clin Chem Lab Med. 2003 Feb;41(2):117-26. doi: 10.1515/CCLM.2003.020.
This review provides a concise survey of liquid chromatography-tandem mass spectrometry (LC-TMS) as an emerging technology in clinical chemistry. The combination of two mass spectrometers with an interposed collision cell characterizes LC-TMS as an analytical technology on its own and not just as a more specific detector for HPLC compared with conventional techniques. In LC-TMS, liquid chromatography is rather used for sample preparation but not for complete resolution of compounds of interest. The instrument technology of LC-TMS is complex and comparatively expensive; however, in routine use, methods are far more rugged compared to conventional chromatographic techniques and enable high-throughput analyses with very limited manual handling steps. Moreover, compared to both gas chromatography-mass spectrometry (GC-MS) and conventional HPLC techniques, LC-TMS is substantially more versatile with respect to the spectrum of analyzable compounds. For these reasons it is likely that LC-TMS will gain far more widespread use in the clinical laboratory than HPLC and GC-MS ever did. In this article, the key features of LC-TMS are described, method development is explained, typical fields of application are discussed, and personal experiences are related.
本综述简要介绍了液相色谱 - 串联质谱法(LC - TMS)这一临床化学领域的新兴技术。两台质谱仪与一个插入式碰撞池相结合,使LC - TMS成为一种独立的分析技术,而不仅仅是与传统技术相比更具特异性的高效液相色谱(HPLC)检测器。在LC - TMS中,液相色谱主要用于样品制备,而非用于完全分离目标化合物。LC - TMS的仪器技术复杂且相对昂贵;然而,在常规使用中,与传统色谱技术相比,其方法更为耐用,并且只需极少的手动操作步骤就能实现高通量分析。此外,与气相色谱 - 质谱联用(GC - MS)和传统HPLC技术相比,LC - TMS在可分析化合物的范围方面具有更大的通用性。基于这些原因,LC - TMS在临床实验室中的应用可能会比HPLC和GC - MS以往的应用更为广泛。本文描述了LC - TMS的关键特性,解释了方法开发过程,讨论了典型应用领域,并分享了个人经验。