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用于提高基于 LC/MS(MS) 的药物代谢物鉴定研究性能的有机/无机杂化表面技术:在吉非替尼及其在小鼠血浆和尿液中的代谢物中的应用。

Hybrid organic/inorganic hybrid surface technology for increasing the performance of LC/MS(MS)-based drug metabolite identification studies: Application to gefitinib and metabolites in mouse plasma and urine.

机构信息

Scientific Operations, Waters Corporation, 34 Maple St, Milford, MA, 01757, USA.

Scientific Operations, Waters Corporation, Stamford Ave, Wilmslow, Manchester, SK9 4AX, UK.

出版信息

J Pharm Biomed Anal. 2021 Jun 5;200:114076. doi: 10.1016/j.jpba.2021.114076. Epub 2021 Apr 20.

Abstract

The detection, identification and quantification of drug metabolites plays a key role in drug discovery and development. Liquid chromatography (LC) coupled to mass spectrometry (MS) has become the primary technology for these studies due to its sensitivity and specificity. However, the presence of transition metals in the chromatography system and columns can result in non-specific and unwanted interactions with the drug and/or its metabolites, via electron-pair donation, leading to poor chromatography and analyte loss. The use of a hybrid organic/inorganic surface applied to the metal surfaces of the chromatography system and column has been demonstrated to reduce or eliminate these effects. When employed for the analysis of mouse urine, derived from the oral dosing of mice with the EGFR inhibitor gefitinib, we observed more symmetrical LC peaks. This resulted in a 33 % improvement in peak capacity for a 10 min reversed - phase gradient separation, a two-fold increase in MS response, cleaner MS spectra and improved peak response reproducibility. This hybrid surface barrier appears to offer significant advantages in the analysis of low-concentration metabolites, potentially facilitating the accurate determination of the elimination phase of the pharmacokinetic (PK) curve and detection of drug metabolites in microdosing or microsampling studies.

摘要

药物代谢物的检测、鉴定和定量在药物发现和开发中起着关键作用。由于其灵敏度和特异性,液相色谱(LC)与质谱(MS)联用已成为这些研究的主要技术。然而,色谱系统和柱子中过渡金属的存在会通过电子对供体与药物及其代谢物发生非特异性和不需要的相互作用,导致色谱性能不佳和分析物损失。已经证明,在色谱系统和柱子的金属表面上应用混合有机/无机表面可以减少或消除这些影响。当用于分析来自口服给予 EGFR 抑制剂吉非替尼的小鼠的尿液时,我们观察到 LC 峰更加对称。这使得在 10 分钟反相梯度分离中峰容量提高了 33%,MS 响应增加了一倍,MS 谱更干净,峰响应重现性更好。这种混合表面势垒似乎在分析低浓度代谢物方面具有显著优势,有可能促进药代动力学(PK)曲线消除相的准确确定,并在微剂量或微采样研究中检测药物代谢物。

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