4.4 Article

Volatile metabolomic signature of bladder cancer cell lines based on gas chromatography-mass spectrometry

Journal

METABOLOMICS
Volume 14, Issue 5, Pages -

Publisher

SPRINGER
DOI: 10.1007/s11306-018-1361-9

Keywords

Bladder cancer; In vitro; Metabolomics; Volatile organic compounds; Volatilome; Untargeted analysis; HS-SPME/GC-MS

Funding

  1. European Union (FEDER funds) [POCI/01/0145/FEDER/007728]
  2. National Funds (FCT/MEC, Fundacao para a Ciencia e Tecnologia and Ministerio da Educacao e Ciencia) [PT2020 UID/MULTI/04378/2013]
  3. Norte Portugal Regional Operational Programme (NORTE) under the PORTUGAL 2020 Partnership Agreement (DESignBIOtecHealth - New Technologies for three Health Challenges of Modern Societies: Diabetes, Drug Abuse and Kidney Diseases) [NORTE-01-0145-FEDER-000024]
  4. European Regional Development Fund (ERDF)
  5. Research Center of Portuguese Oncology Institute of Porto [FB-GEBC-27]
  6. Fundacao para a Ciencia e Tecnologia [FCT SFRH/BD/112673/2015]
  7. FCT [UID/Multi/04546/2013]

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Introduction Recent studies provide a convincing support that the presence of cancer cells in the body leads to the alteration of volatile organic compounds (VOCs) emanating from biological samples, particularly of those closely related with tumoral tissues. Thus, a great interest emerged for the study of cancer volatilome and subsequent attempts to confirm VOCs as potential diagnostic biomarkers. Objectives The aim of this study was to determine the volatile metabolomic signature of bladder cancer (BC) cell lines and provide an in vitro proof-of-principle that VOCs emanated into the extracellular medium may discriminate BC cells from normal bladder epithelial cells. Methods VOCs in the culture media of three BC cell lines (Scaber, J82, 5637) and one normal bladder cell line (SV-HUC-1) were extracted by headspace-solid phase microextraction and analysed by gas chromatography-mass spectrometry (HSSPME/GC-MS). Two different pH (pH 2 and 7) were used for VOCs extraction to infer the best pH to be used in in vitro metabolomic studies. Results Multivariate analysis revealed a panel of volatile metabolites that discriminated cancerous from normal bladder cells, at both pHs, although a higher number of discriminative VOCs was obtained at neutral pH. Most of the altered metabolites were ketones and alkanes, which were generally increased in BC compared to normal cells, and alcohols, which were significantly decreased in BC cells. Among them, three metabolites, namely 2-pentadecanone, dodecanal and.-dodecalactone (the latter only tentatively identified), stood out as particularly important metabolites and promising volatile biomarkers for BC detection. Furthermore, our results also showed the potential of VOCs in discriminating BC cell lines according to tumour grade and histological subtype. Conclusions We demonstrate that a GC-MS metabolomics-based approach for analysis of VOCs is a valuable strategy for identifying new and specific biomarkers that may improve BC diagnosis. Future studies should entail the validation of volatile signature found for BC cell lines in biofluids from BC patients.

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