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利用 QconCAT 技术通过 LC-MS/MS 蛋白质组学定量检测儿科十二指肠中的药物代谢酶和转运蛋白。

Quantification of drug metabolising enzymes and transporter proteins in the paediatric duodenum via LC-MS/MS proteomics using a QconCAT technique.

机构信息

School of Pharmacy, University of Birmingham, Birmingham B15 2TT, UK; Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, Glasgow G4 0RE, UK.

Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, Glasgow G4 0RE, UK.

出版信息

Eur J Pharm Biopharm. 2023 Oct;191:68-77. doi: 10.1016/j.ejpb.2023.08.011. Epub 2023 Aug 23.

Abstract

Characterising the small intestine absorptive membrane is essential to enable prediction of the systemic exposure of oral formulations. In particular, the ontogeny of key intestinal Drug Metabolising Enzymes and Transporter (DMET) proteins involved in drug disposition needs to be elucidated to allow for accurate prediction of the PK profile of drugs in the paediatric cohort. Using pinch biopsies from the paediatric duodenum (n = 36; aged 11 months to 15 years), the abundance of 21 DMET proteins and two enterocyte markers were quantified via LC-MS/MS. An established LCMS nanoflow method was translated to enable analysis on a microflow LC system, and a new stable-isotope-labelled QconCAT standard developed to enable quantification of these proteins. Villin-1 was used to standardise abundancy values. The observed abundancies and ontogeny profiles, agreed with adult LC-MS/MS-based data, and historic paediatric data obtained via western blotting. A linear trend with age was observed for duodenal CYP3A4 and CES2 only. As this work quantified peptides on a pinch biopsy coupled with a microflow method, future studies using a wider population range are very feasible. Furthermore, this DMET ontogeny data can be used to inform paediatric PBPK modelling and to enhance the understanding of oral drug absorption and gut bioavailability in paediatric populations.

摘要

研究小肠吸收膜的特征对于能够预测口服制剂的全身暴露至关重要。特别是,需要阐明参与药物处置的关键肠道药物代谢酶和转运体(DMET)蛋白的个体发生,以便能够准确预测儿科人群中药物的 PK 特征。使用来自儿科十二指肠的钳夹活检(n=36;年龄为 11 个月至 15 岁),通过 LC-MS/MS 定量了 21 种 DMET 蛋白和两种肠细胞标记物的丰度。已经建立的 LCMS 纳流方法被转化为能够在微流 LC 系统上进行分析,并开发了新的稳定同位素标记 QconCAT 标准以实现这些蛋白质的定量。绒毛蛋白-1 用于标准化丰度值。观察到的丰度和个体发生谱与成人基于 LC-MS/MS 的数据以及通过 Western 印迹获得的历史儿科数据一致。仅观察到十二指肠 CYP3A4 和 CES2 与年龄呈线性趋势。由于这项工作在微流方法的钳夹活检上定量了肽,因此使用更广泛的人群范围进行未来研究是非常可行的。此外,该 DMET 个体发生数据可用于告知儿科 PBPK 模型,并增强对儿科人群中口服药物吸收和肠道生物利用度的理解。

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