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液相色谱-质谱联用技术在临床和法医毒理学中的进展

Progress of liquid chromatography-mass spectrometry in clinical and forensic toxicology.

作者信息

Marquet Pierre

机构信息

Department of Pharmacology and Toxicology, University Hospital, CHU Dupeytren, 87042 Limoges, France.

出版信息

Ther Drug Monit. 2002 Apr;24(2):255-76. doi: 10.1097/00007691-200204000-00008.

DOI:10.1097/00007691-200204000-00008
PMID:11897972
Abstract

The use of liquid chromatography-mass spectrometry (LC-MS) has recently exploded in various analytic fields, including toxicology and therapeutic drug monitoring (although still far behind pharmacokinetics). There is no doubt that LC-MS is currently competing with gas chromatography (GC)-MS for the status of the reference analytic technique in toxicology. This review presents, for the nonspecialist reader, the principles, advantages, and drawbacks of LC-MS systems using atmospheric pressure interfaces. It also gives an overview of the analytic methods for xenobiotics that could be set up with these instruments for clinical or forensic toxicology. In particular, as far as quantitative techniques are concerned, this review tries to underline the large number and variety of drugs or classes of drugs (drugs of abuse, therapeutic drugs) or toxic compounds (e.g., pesticides) that can be readily determined using such instruments, the respective merits of the different ionization sources, and the improvements brought about by tandem MS. It also discusses new applications of LC-MS in the field of toxicology, such as "general unknown" screening procedures and mass spectral libraries using LC-atmospheric pressure ionization (API)-MS or MS-MS, presenting the different solutions proposed to overcome the naturally low fragmentation power of API sources. Finally, the opportunities afforded by the most recent or proposed instrument designs are addressed.

摘要

液相色谱 - 质谱联用(LC - MS)技术近来在包括毒理学和治疗药物监测(尽管仍远远落后于药代动力学)在内的各种分析领域中得到了广泛应用。毫无疑问,目前LC - MS正在与气相色谱(GC) - MS竞争毒理学参考分析技术的地位。本综述面向非专业读者,介绍了使用大气压接口的LC - MS系统的原理、优点和缺点。它还概述了可利用这些仪器建立的用于临床或法医毒理学的外源性物质分析方法。特别是在定量技术方面,本综述试图强调使用此类仪器能够轻松测定的大量且种类繁多的药物或药物类别(滥用药物、治疗药物)或有毒化合物(如农药),不同电离源的各自优点,以及串联质谱带来的改进。它还讨论了LC - MS在毒理学领域的新应用,如“一般未知物”筛查程序以及使用LC - 大气压电离(API) - MS或MS - MS的质谱库,介绍了为克服API源天然较低的碎裂能力而提出的不同解决方案。最后,探讨了最新或提议的仪器设计所带来的机遇。

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