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恶性胸膜间皮瘤细胞中抗叶酸反应性和无反应性的代谢特征

Metabolic Characterization of Antifolate Responsiveness and Non-responsiveness in Malignant Pleural Mesothelioma Cells.

作者信息

Sato Yuzo, Matsuda Shiori, Maruyama Ami, Nakayama Joji, Miyashita Tomoyuki, Udagawa Hibiki, Umemura Shigeki, Yanagihara Kazuyoshi, Ochiai Atsushi, Tomita Masaru, Soga Tomoyoshi, Tsuchihara Katsuya, Makinoshima Hideki

机构信息

Tsuruoka Metabolomics Laboratory, National Cancer Center, Tsuruoka, Japan.

Shonai Regional Industry Promotion Center, Tsuruoka, Japan.

出版信息

Front Pharmacol. 2018 Oct 12;9:1129. doi: 10.3389/fphar.2018.01129. eCollection 2018.

Abstract

Antifolates are a class of drugs effective for treating malignant pleural mesothelioma (MPM). The majority of antifolates inhibit enzymes involved in purine and pyrimidine synthesis such as dihydrofolate reductase (DHFR), thymidylate synthase (TYMS), and glycinamide ribonucleotide formyltransferase (GART). In order to select the most suitable patients for effective therapy with drugs targeting specific metabolic pathways, there is a need for better predictive metabolic biomarkers. Antifolates can alter global metabolic pathways in MPM cells, yet the metabolic profile of treated cells has not yet been clearly elucidated. Here we found that MPM cell lines could be categorized into two groups according to their sensitivity or resistance to pemetrexed treatment. We show that pemetrexed susceptibility could be reversed and DNA synthesis rescued in drug-treated cells by the exogenous addition of the nucleotide precursors hypoxanthine and thymidine (HT). We observed that the expression of pemetrexed-targeted enzymes in resistant MPM cells was quantitatively lower than that seen in pemetrexed-sensitive cells. Metabolomic analysis revealed that glycine and choline, which are involved in one-carbon metabolism, were altered after drug treatment in pemetrexed-sensitive but not resistant MPM cells. The addition of HT upregulated the concentration of inosine monophosphate (IMP) in pemetrexed-sensitive MPM cells, indicating that the nucleic acid biosynthesis pathway is important for predicting the efficacy of pemetrexed in MPM cells. Our data provide evidence that may link therapeutic response to the regulation of metabolism, and points to potential biomarkers for informing clinical decisions regarding the most effective therapies for patients with MPM.

摘要

抗叶酸药物是一类对治疗恶性胸膜间皮瘤(MPM)有效的药物。大多数抗叶酸药物抑制参与嘌呤和嘧啶合成的酶,如二氢叶酸还原酶(DHFR)、胸苷酸合成酶(TYMS)和甘氨酰胺核糖核苷酸甲酰基转移酶(GART)。为了选择最适合使用靶向特定代谢途径的药物进行有效治疗的患者,需要更好的预测性代谢生物标志物。抗叶酸药物可改变MPM细胞中的整体代谢途径,但处理后细胞的代谢谱尚未明确阐明。在这里,我们发现MPM细胞系可根据其对培美曲塞治疗的敏感性或耐药性分为两组。我们表明,通过外源添加核苷酸前体次黄嘌呤和胸腺嘧啶(HT),培美曲塞敏感性可以逆转,药物处理细胞中的DNA合成得以挽救。我们观察到,耐药MPM细胞中培美曲塞靶向酶的表达在数量上低于培美曲塞敏感细胞中的表达。代谢组学分析显示,参与一碳代谢的甘氨酸和胆碱在培美曲塞敏感但非耐药的MPM细胞药物处理后发生了改变。添加HT上调了培美曲塞敏感MPM细胞中肌苷单磷酸(IMP)的浓度,表明核酸生物合成途径对于预测培美曲塞在MPM细胞中的疗效很重要。我们的数据提供了可能将治疗反应与代谢调节联系起来的证据,并指出了潜在的生物标志物,可为MPM患者最有效治疗的临床决策提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb46/6194193/e6f59aaf0cf9/fphar-09-01129-g001.jpg

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