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Recent advances in high-throughput quantitative bioanalysis by LC-MS/MS.

机译:LC-MS / MS在高通量定量生物分析中的最新进展。

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Liquid chromatography linked to tandem mass spectrometry (LC-MS/MS) has played an important role in pharmacokinetics and metabolism studies at various drug development stages since its introduction to the pharmaceutical industry. This article reviews the most recent advances in sample preparation, separation, and the mass spectrometric aspects of high-throughput quantitative bioanalysis of drug and metabolites in biological matrices. Newly introduced techniques such as ultra-performance liquid chromatography with small particles (sub-2 microm) and monolithic chromatography offer improvements in speed, resolution and sensitivity compared to conventional chromatographic techniques. Hydrophilic interaction chromatography (HILIC) on silica columns with low aqueous/high organic mobile phase is emerging as a valuable supplement to the reversed-phase LC-MS/MS. Sample preparation formatted to 96-well plates has allowed for semi-automation of off-line sample preparation techniques, significantly impacting throughput. On-line solid-phase extraction (SPE) utilizing column-switching techniques is rapidly gaining acceptance in bioanalytical applications to reduce both time and labor required to produce bioanalytical results. Extraction sorbents for on-line SPE extend to an array of media including large particles for turbulent flow chromatography, restricted access materials (RAM), monolithic materials, and disposable cartridges utilizing traditional packings such as those used in Spark Holland systems. In the end, this paper also discusses recent studies of matrix effect in LC-MS/MS analysis and how to reduce/eliminate matrix effect in method development and validation.
机译:自串联质谱法引入制药行业以来,它在各个药物开发阶段的药代动力学和代谢研究中都起着重要作用,它与串联质谱联用(LC-MS / MS)。本文回顾了样品制备,分离以及生物基质中药物和代谢物的高通量定量生物分析的质谱方面的最新进展。与常规色谱技术相比,新引入的技术(例如小颗粒(小于2微米)超高效液相色谱法和整体色谱法)在速度,分辨率和灵敏度上均有所提高。具有低水/高有机流动相的硅胶柱上的亲水相互作用色谱法(HILIC)逐渐成为反相LC-MS / MS的重要补充。格式化为96孔板的样品制备可实现离线样品制备技术的半自动化,从而极大地影响了通量。利用柱切换技术的在线固相萃取(SPE)在生物分析应用中迅速获得认可,以减少产生生物分析结果所需的时间和劳动。在线SPE的萃取吸附剂可扩展到多种介质,包括用于湍流色谱的大颗粒,限制进入的材料(RAM),整体式材料以及使用传统填料(例如Spark Holland系统中使用的填料)的一次性滤筒。最后,本文还讨论了LC-MS / MS分析中基质效应的最新研究,以及如何在方法开发和验证中减少/消除基质效应。

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