Scientific reports 2015-01-01

Exometabolom analysis of breast cancer cell lines: Metabolic signature.

Lucas Willmann, Thalia Erbes, Sebastian Halbach, Tilman Brummer, Markus Jäger, Marc Hirschfeld, Tanja Fehm, Hans Neubauer, Elmar Stickeler, Bernd Kammerer

文献索引:Sci. Rep. 5 , 13374, (2015)

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摘要

Cancer cells show characteristic effects on cellular turnover and DNA/RNA modifications leading to elevated levels of excreted modified nucleosides. We investigated the molecular signature of different subtypes of breast cancer cell lines and the breast epithelial cell line MCF-10A. Prepurification of cell culture supernatants was performed by cis-diol specific affinity chromatography using boronate-derivatized polyacrylamide gel. Samples were analyzed by application of reversed phase chromatography coupled to a triple quadrupole mass spectrometer. Collectively, we determined 23 compounds from RNA metabolism, two from purine metabolism, five from polyamine/methionine cycle, one from histidine metabolism and two from nicotinate and nicotinamide metabolism. We observed major differences of metabolite excretion pattern between the breast cancer cell lines and MCF-10A, just as well as between the different breast cancer cell lines themselves. Differences in metabolite excretion resulting from cancerous metabolism can be integrated into altered processes on the cellular level. Modified nucleosides have great potential as biomarkers in due consideration of the heterogeneity of breast cancer that is reflected by the different molecular subtypes of breast cancer. Our data suggests that the metabolic signature of breast cancer cell lines might be a more subtype-specific tool to predict breast cancer, rather than a universal approach.


相关化合物

  • 氯化钠
  • 甲醇
  • 三甲基镓
  • 胞嘧啶核苷
  • 甲酸
  • 4-羟乙基哌嗪乙磺酸
  • 氯化钠-35cl
  • 鸟苷
  • 直接蓝 14
  • 腺苷

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