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脂质组学和转录组学分析奥沙利铂处理的结直肠癌细胞中脂质种类和途径的改变。

Lipidomics and transcriptomics analyses of altered lipid species and pathways in oxaliplatin-treated colorectal cancer cells.

机构信息

Department of Clinical Pharmacology, Xiangya Hospital, Central South University, 87 Xiangya Road, Changsha 410008, PR China; Institute of Clinical Pharmacology, Central South University, Hunan Key Laboratory of Pharmacogenetics, 110 Xiangya Road, Changsha 410078, PR China; Engineering Research Center of Applied Technology of Pharmacogenomics, Ministry of Education, 110 Xiangya Road, Changsha 410078, PR China; National Clinical Research Center for Geriatric Disorders, 87 Xiangya Road, Changsha 410008, Hunan, PR China.

Department of Clinical Pharmacology, Xiangya Hospital, Central South University, 87 Xiangya Road, Changsha 410008, PR China; Institute of Clinical Pharmacology, Central South University, Hunan Key Laboratory of Pharmacogenetics, 110 Xiangya Road, Changsha 410078, PR China; Engineering Research Center of Applied Technology of Pharmacogenomics, Ministry of Education, 110 Xiangya Road, Changsha 410078, PR China; National Clinical Research Center for Geriatric Disorders, 87 Xiangya Road, Changsha 410008, Hunan, PR China.

出版信息

J Pharm Biomed Anal. 2021 Jun 5;200:114077. doi: 10.1016/j.jpba.2021.114077. Epub 2021 Apr 14.

Abstract

Drug resistance and adverse reactions to oxaliplatin remain a considerable issue in clinical practice. Emerging evidence has suggested that alterations in the lipid metabolism during drug therapy affect cancer cells. To gain insight into the important process of lipid metabolism, we investigated the lipid and gene expression profile changes in HT29 cells treated with oxaliplatin. A total of 1403 lipid species from 16 lipid classes were identified by UHPLC-MS. Interestingly, phospholipids, including phosphatidylglycerol (PG), phosphatidic acid (PA), phosphatidylcholine (PC), and most of phosphatidylethanolamine (PE) with polyunsaturated fatty acid (PUFA) chains, were significantly higher due to oxaliplatin treatment, while triacylglycerols (TAGs) with a saturated fatty acid chain or monounsaturated fatty acid were significantly downregulated. Gene Set Enrichment Analysis (GSEA) based on RNA sequencing data suggested that neutral lipid metabolism was enriched in the control group, whereas the phospholipid metabolic process was enriched in the oxaliplatin-treated group. We observed that altered lipid metabolism enzyme genes were involved in the synthesis and lipolysis of TAGs and the Lands cycle pathway based on the network between the core lipid-related gene and lipid species, which was further verified by qRT-PCR. In summary, our findings revealed that oxaliplatin impressed a specific lipid profile signature and lipid transcriptional reprogramming in HT29 cells, which provides new insights into biomarker discovery and pathways for overcoming drug resistance and adverse reactions.

摘要

奥沙利铂的耐药性和不良反应在临床实践中仍然是一个相当大的问题。新出现的证据表明,药物治疗过程中脂质代谢的改变会影响癌细胞。为了深入了解脂质代谢的重要过程,我们研究了奥沙利铂处理的 HT29 细胞的脂质和基因表达谱变化。通过 UHPLC-MS 鉴定出了 16 个脂质类别的 1403 种脂质。有趣的是,由于奥沙利铂的处理,包括具有多不饱和脂肪酸(PUFA)链的磷脂酰甘油(PG)、磷脂酸(PA)、磷脂酰胆碱(PC)和大部分磷脂酰乙醇胺(PE)在内的磷脂显著升高,而具有饱和脂肪酸链或单不饱和脂肪酸的三酰基甘油(TAG)则显著下调。基于 RNA 测序数据的基因集富集分析(GSEA)表明,中性脂质代谢在对照组中富集,而在奥沙利铂处理组中,磷脂代谢过程富集。我们观察到,改变的脂质代谢酶基因参与了 TAG 的合成和水解以及 Lands 循环途径,这是基于核心脂质相关基因和脂质种类之间的网络得出的,并且通过 qRT-PCR 进一步得到了验证。总之,我们的研究结果表明,奥沙利铂在 HT29 细胞中引起了特定的脂质谱特征和脂质转录重编程,这为发现生物标志物和克服耐药性和不良反应的途径提供了新的见解。

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