Characterisation of Canine and Feline Breast Tumours, Their Metastases, and Corresponding Primary Cell Lines Using LA-REIMS and DESI-MS Imaging

Author:

Molnár Adrienn123,Horkovics-Kováts Gabriel Stefan12ORCID,Kucsma Nóra4,Szegő Zsuzsanna2,Tauber Boglárka5,Egri Attila2,Szkupien Zoltán6,Deák Bálint András7,McKenzie James S.8ORCID,Thuróczy Julianna9ORCID,Schäffer Richard2ORCID,Schlosser Gitta3ORCID,Szakács Gergely410ORCID,Balog Júlia2ORCID

Affiliation:

1. Hevesy György PhD School of Chemistry, ELTE Eötvös Loránd University, H-1117 Budapest, Hungary

2. Waters Research Center, H-1031 Budapest, Hungary

3. MTA-ELTE Lendület (Momentum) Ion Mobility Mass Spectrometry Research Group, Faculty of Science, Institute of Chemistry, ELTE Eötvös Loránd University, H-1117 Budapest, Hungary

4. Institute of Molecular Life Sciences, HUN-REN Research Centre for Natural Sciences, H-1117 Budapest, Hungary

5. Qamcom Central Europe, H-1052 Budapest, Hungary

6. Independent Researcher, H-1141 Budapest, Hungary

7. Department of Pathology, Forensic and Insurance Medicine, Semmelweis University, H-1085 Budapest, Hungary

8. Department of Metabolism, Digestion and Reproduction, Faculty of Medicine, Imperial College London, London W12 0NN, UK

9. Animal Health Center Budafok, H-1221 Budapest, Hungary

10. Center for Cancer Research, Medical University of Vienna, 1090 Vienna, Austria

Abstract

Breast cancer, a complex disease with a significant prevalence to form metastases, necessitates novel therapeutic strategies to improve treatment outcomes. Here, we present the results of a comparative molecular study of primary breast tumours, their metastases, and the corresponding primary cell lines using Desorption Electrospray Ionisation (DESI) and Laser-Assisted Rapid Evaporative Ionisation Mass Spectrometry (LA-REIMS) imaging. Our results show that ambient ionisation mass spectrometry technology is suitable for rapid characterisation of samples, providing a lipid- and metabolite-rich spectrum within seconds. Our study demonstrates that the lipidomic fingerprint of the primary tumour is not significantly distinguishable from that of its metastasis, in parallel with the similarity observed between their respective primary cell lines. While significant differences were observed between tumours and the corresponding cell lines, distinct lipidomic signatures and several phospholipids such as PA(36:2), PE(36:1), and PE(P-38:4)/PE(O-38:5) for LA-REIMS imaging and PE(P-38:4)/PE(O-38:5), PS(36:1), and PI(38:4) for DESI-MSI were identified in both tumours and cells. We show that the tumours’ characteristics can be found in the corresponding primary cell lines, offering a promising avenue for assessing tumour responsiveness to therapeutic interventions. A comparative analysis by DESI-MSI and LA-REIMS imaging revealed complementary information, demonstrating the utility of LA-REIMS in the molecular imaging of cancer.

Funder

European Union

Ministry of Innovation and Technology of Hungary from the National Research, Development and Innovation Fund

Slovenian Research Agency

Publisher

MDPI AG

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