Differential metabolic responses in breast cancer cell lines to acidosis and lactic acidosis revealed by stable isotope assisted metabolomics

Abstract Extracellular acidosis is considered as a hallmark of most human tumors, which plays an important role in promoting tumor malignant and aggressive phenotype in tumorigenesis. Acidosis and lactic acidosis can induce different responses in tumors. Previous studies have associated the response...

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Main Authors: Jiayue Gao, Zhiying Guo, Jianhua Cheng, Bo Sun, Jie Yang, Haijing Li, Shengming Wu, Fangting Dong, Xianzhong Yan
Format: Article
Language:English
Published: Nature Publishing Group 2020-12-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-020-78955-2
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spelling doaj-28fe4e63b1e9451797c86c56443a17e82020-12-20T12:28:46ZengNature Publishing GroupScientific Reports2045-23222020-12-0110111210.1038/s41598-020-78955-2Differential metabolic responses in breast cancer cell lines to acidosis and lactic acidosis revealed by stable isotope assisted metabolomicsJiayue Gao0Zhiying Guo1Jianhua Cheng2Bo Sun3Jie Yang4Haijing Li5Shengming Wu6Fangting Dong7Xianzhong Yan8National Center of Biomedical AnalysisNational Center of Biomedical AnalysisNational Center of Biomedical AnalysisNational Center of Biomedical AnalysisNational Center of Biomedical AnalysisNational Center of Biomedical AnalysisNational Center of Biomedical AnalysisNational Center of Biomedical AnalysisNational Center of Biomedical AnalysisAbstract Extracellular acidosis is considered as a hallmark of most human tumors, which plays an important role in promoting tumor malignant and aggressive phenotype in tumorigenesis. Acidosis and lactic acidosis can induce different responses in tumors. Previous studies have associated the response to lactic acidosis of tumors with good survival outcomes. In this study, we investigated the metabolomic changes in triple negative and luminal subtype breast cancer cell lines in response to acidosis and lactic acidosis. Our results showed that acidosis results in the reduction of cell viability and glycolysis in breast cancer cells, which is reversely correlated with the malignancy of cell lines. Under lactic acidosis, this reduction is reversed slightly. Untargeted metabolomic profiling revealed that glutaminolysis and fatty acid synthesis in cancer cells under acidosis are increased, while TCA cycle and glycolysis are decreased. Under lactic acidosis, the pentose phosphate pathway and acetate release are increased in MDA-MB-231 cells. The current results uncovered the different metabolic responses of breast cancer cells to acidosis and lactic acidosis, demonstrating the power of combined untargeted and stable isotope assisted metabolomics in comprehensive metabolomic analysis.https://doi.org/10.1038/s41598-020-78955-2
collection DOAJ
language English
format Article
sources DOAJ
author Jiayue Gao
Zhiying Guo
Jianhua Cheng
Bo Sun
Jie Yang
Haijing Li
Shengming Wu
Fangting Dong
Xianzhong Yan
spellingShingle Jiayue Gao
Zhiying Guo
Jianhua Cheng
Bo Sun
Jie Yang
Haijing Li
Shengming Wu
Fangting Dong
Xianzhong Yan
Differential metabolic responses in breast cancer cell lines to acidosis and lactic acidosis revealed by stable isotope assisted metabolomics
Scientific Reports
author_facet Jiayue Gao
Zhiying Guo
Jianhua Cheng
Bo Sun
Jie Yang
Haijing Li
Shengming Wu
Fangting Dong
Xianzhong Yan
author_sort Jiayue Gao
title Differential metabolic responses in breast cancer cell lines to acidosis and lactic acidosis revealed by stable isotope assisted metabolomics
title_short Differential metabolic responses in breast cancer cell lines to acidosis and lactic acidosis revealed by stable isotope assisted metabolomics
title_full Differential metabolic responses in breast cancer cell lines to acidosis and lactic acidosis revealed by stable isotope assisted metabolomics
title_fullStr Differential metabolic responses in breast cancer cell lines to acidosis and lactic acidosis revealed by stable isotope assisted metabolomics
title_full_unstemmed Differential metabolic responses in breast cancer cell lines to acidosis and lactic acidosis revealed by stable isotope assisted metabolomics
title_sort differential metabolic responses in breast cancer cell lines to acidosis and lactic acidosis revealed by stable isotope assisted metabolomics
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2020-12-01
description Abstract Extracellular acidosis is considered as a hallmark of most human tumors, which plays an important role in promoting tumor malignant and aggressive phenotype in tumorigenesis. Acidosis and lactic acidosis can induce different responses in tumors. Previous studies have associated the response to lactic acidosis of tumors with good survival outcomes. In this study, we investigated the metabolomic changes in triple negative and luminal subtype breast cancer cell lines in response to acidosis and lactic acidosis. Our results showed that acidosis results in the reduction of cell viability and glycolysis in breast cancer cells, which is reversely correlated with the malignancy of cell lines. Under lactic acidosis, this reduction is reversed slightly. Untargeted metabolomic profiling revealed that glutaminolysis and fatty acid synthesis in cancer cells under acidosis are increased, while TCA cycle and glycolysis are decreased. Under lactic acidosis, the pentose phosphate pathway and acetate release are increased in MDA-MB-231 cells. The current results uncovered the different metabolic responses of breast cancer cells to acidosis and lactic acidosis, demonstrating the power of combined untargeted and stable isotope assisted metabolomics in comprehensive metabolomic analysis.
url https://doi.org/10.1038/s41598-020-78955-2
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