Profil

Berger Gilles

Université de Mons - UMONS > Faculté de Médecine et de Pharmacie > Service du Doyen de la Faculté de Médecine et Pharmacie

Université de Mons - UMONS > Unités externes > FMP - Intervenants extérieurs à la FMP

Main Referenced Co-authors
Awuah, Samuel G (1)
DUFRASNE, François  (1)
Inam, Haider (1)
Ingels, Aude (1)
Koch, Marilin (1)
Main Referenced Keywords
Amphiphilics (1); Antiproliferative activities (1); antitumor complexes (1); Cancer stem cells (1); Glioblastomas (1);
Main Referenced Disciplines
Pharmacy, pharmacology & toxicology (1)
Chemistry (1)

Publications (total 1)

The most downloaded
2 downloads
Marloye, M., Inam, H., Moore, C. J., Mertens, T. R., Ingels, A., Koch, M., Nowicki, M. O., Mathieu, V., Pritchard, J. R., Awuah, S. G., Lawler, S. E., Meyer, F., Dufrasne, F., & Berger, G. (07 June 2022). Self-assembled ruthenium and osmium nanosystems display a potent anticancer profile by interfering with metabolic activity. Inorganic Chemistry Frontiers, 9 (11), 2594 - 2607. doi:10.1039/d2qi00423b https://hdl.handle.net/20.500.12907/44487

The most cited

3 citations (Scopus®)

Marloye, M., Inam, H., Moore, C. J., Mertens, T. R., Ingels, A., Koch, M., Nowicki, M. O., Mathieu, V., Pritchard, J. R., Awuah, S. G., Lawler, S. E., Meyer, F., Dufrasne, F., & Berger, G. (07 June 2022). Self-assembled ruthenium and osmium nanosystems display a potent anticancer profile by interfering with metabolic activity. Inorganic Chemistry Frontiers, 9 (11), 2594 - 2607. doi:10.1039/d2qi00423b https://hdl.handle.net/20.500.12907/44487

Marloye, M., Inam, H., Moore, C. J., Mertens, T. R., Ingels, A., Koch, M., Nowicki, M. O., Mathieu, V., Pritchard, J. R., Awuah, S. G., Lawler, S. E., Meyer, F., Dufrasne, F., & Berger, G. (07 June 2022). Self-assembled ruthenium and osmium nanosystems display a potent anticancer profile by interfering with metabolic activity. Inorganic Chemistry Frontiers, 9 (11), 2594 - 2607. doi:10.1039/d2qi00423b
Peer reviewed

Contact ORBi UMONS