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 >Application of the optimized and validated LC-MS method for simultaneous quantification of tryptophan metabolites in culture medium from cancer cells
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Application of the optimized and validated LC-MS method for simultaneous quantification of tryptophan metabolites in culture medium from cancer cells

机译:优化和验证LC-MS法在癌细胞中培养基中培养基中色氨酸代谢物同时定量的应用

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Kynurenine pathway is the main route of tryptophan degradation generating a number of immunoregulatory compounds. Some conditions like oxidative stress, inflammatory factors might enhance tryptophan degradation. Process is active in several cells including fibroblasts, cancer cells, and immune cells, therefore it is intensively studied in context of cancer microenvironment. The validated and standardized methodology for kynurenine quantification is crucial for reliable comparison of results obtained in different studies. This paper concerns an approach for simultaneous quantification of four major tryptophan metabolites of the kynurenine pathway (kynurenine, 3-hydroxykynurenine, xanthurenic acid, 3-hydroxyanthranilic acid) in cell culture supernatants by liquid chromatography coupled with single quadrupole mass spectrometer. During development of the novel method, the principal component analysis was used to select the best mobile phase and to ensure the optimal conditions for simultaneous quantification of metabolites. The analysis involves simple protein precipitation with acidified methanol and 3-nitrotyrosine as an internal standard. The obtained limits of detection and quantification in cell culture medium were in the range of 3.31-10.80 nmol/L and 9.60-19.50 nmol/L, respectively. At the validation step, other method parameters (linearity, precision, accuracy, recovery, matrix effects) were also evaluated and satisfactory results were obtained for all target compounds. The method was applied to study tryptophan metabolites by determination of kynurenines in cell culture medium from two different human cancer cell lines (MDA-MD-231 and SK-OV-3) in context of exposure to glycation products. (C) 2019 Elsevier B.V. All rights reserved.
机译:Kynurenine途径是色氨酸降解产生许多免疫调节化合物的主要途径。一些条件如氧化应激,炎症因素可能增强色氨酸降解。过程在包括成纤维细胞,癌细胞和免疫细胞的几个细胞中活跃,因此在癌细胞癌的背景下被强烈地研究。用于Kynurenine定量的验证和标准化的方法对于可靠的不同研究结果的可靠比较至关重要。本文涉及通过液相色谱法与单Quadrupole质谱仪偶联的液相色谱偶联的犬留蛋白途径(鸡蛋蛋白,3-羟基脲烯酮,X硫酸,3-羟基壬酸,3-羟基壬酸)的四个主要色氨酸代谢物的方法。在开发新方法期间,使用主成分分析来选择最佳流动相,并确保同时定量代谢物的最佳条件。分析涉及与酸化甲醇和3-硝基曲霉作为内标的简单蛋白质沉淀。所获得的细胞培养基中的检测限率分别为3.31-10.80nmol / L和9.60-19.50nmol / L的范围。在验证步骤中,还评估了其他方法参数(线性,精度,精度,恢复,基质效应),并获得所有靶化合物的结果。通过在暴露于糖糖产物的背景下,通过在接触到糖糖产物的背景下测定来自两种不同人癌细胞系(MDA-MD-231和SK-OV-3)的细胞培养基中的鸡蛋葡萄碱来研究色氨酸代谢物。 (c)2019 Elsevier B.v.保留所有权利。

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