首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Turbulent flow chromatography TFC-tandem mass spectrometry supporting in vitro/vivo studies of NCEs in high throughput fashion.
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Turbulent flow chromatography TFC-tandem mass spectrometry supporting in vitro/vivo studies of NCEs in high throughput fashion.

机译:湍流色谱TFC串联质谱以高通量方式支持NCE的体外/体内研究。

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摘要

Turbulent Flow Chromatography (TFC) is a powerful approach for on-line extraction in bioanalytical studies. It improves sensitivity and reduces sample preparation time, two factors that are of primary importance in drug discovery. In this paper the application of the ARIA system to the analytical support of in vivo pharmacokinetics (PK) and in vitro drug metabolism studies is described, with an emphasis in high throughput optimization. For PK studies, a comparison between acetonitrile plasma protein precipitation (APPP) and TFC was carried out. Our optimized TFC methodology gave better S/N ratios and lower limit of quantification (LOQ) than conventional procedures. A robust and high throughput analytical method to support hepatocyte metabolic stability screening of new chemical entities was developed by hyphenation of TFC with mass spectrometry. An in-loop dilution injection procedure was implemented to overcome one of the main issues when using TFC, that is the early elution of hydrophilic compounds that renders low recoveries. A comparison between off-line solid phase extraction (SPE) and TFC was also carried out, and recovery, sensitivity (LOQ), matrix effect and robustness were evaluated. The use of two parallel columns in the configuration of the system provided a further increase of the throughput.
机译:湍流色谱法(TFC)是在生物分析研究中进行在线提取的强大方法。它提高了灵敏度并减少了样品制备时间,这是药物发现中最重要的两个因素。在本文中,描述了ARIA系统在体内药代动力学(PK)和体外药物代谢研究的分析支持中的应用,重点是高通量优化。对于PK研究,比较了乙腈血浆蛋白沉淀(APPP)和TFC。与常规程序相比,我们优化的TFC方法可提供更好的信噪比和更低的定量限(LOQ)。通过质谱联用TFC,开发了一种鲁棒且高通量的分析方法来支持新化学实体的肝细胞代谢稳定性筛选。采用环内稀释进样程序可克服使用TFC时的主要问题之一,即较早洗脱亲水性化合物,回收率低。还进行了离线固相萃取(SPE)和TFC的比较,并评估了回收率,灵敏度(LOQ),基质效应和稳健性。在系统配置中使用两个平行塔可进一步提高吞吐量。

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