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Journal of Applied Microbiology|November 3, 2009
In vivo 31P and 13C NMR investigations of Rhodococcus rhodochrous metabolism and behaviour during biotransformation processesC Chorao, M Traïkia, P Besse-Hoggan, et al.Chemosphere|February 9, 2018
Environmental scenarii for the degradation of oxo-polymersB Eyheraguibel, M Leremboure, M Traikia, et al.Chemosphere|June 13, 2017
Characterization of oxidized oligomers from polyethylene films by mass spectrometry and NMR spectroscopy before and after biodegradation by a Rhodococcus rhodochrous strainB Eyheraguibel, M Traikia, S Fontanella, et al.Journal of Medicinal Chemistry|October 25, 1996
Structure-activity relationships in a series of substituted indolocarbazoles: topoisomerase I and protein kinase C inhibition and antitumoral and antimicrobial propertiesE R Pereira, L Belin, M Sancelme, et al.Journal of Medicinal Chemistry|March 3, 1999
Syntheses and biological activities of rebeccamycin analogues. Introduction of a halogenoacetyl substituentP Moreau, F Anizon, M Sancelme, et al.Journal of Medicinal Chemistry|January 19, 1996
Ionophore properties of monensin derivatives studied on human erythrocytes by 23Na NMR and K+ and H+ potentiometry: relationship with antimicrobial and antimalarial activitiesM Rochdi, A M Delort, J Guyot, et al.Chemical & Pharmaceutical Bulletin|April 1, 1997
Synthesis and biological evaluation of monoindolyl and indolocarbazolyl oxazolones and imidazolonesE R Pereira, M Prudhomme, M Sancelme, et al.Journal of Medicinal Chemistry|October 28, 1997
Syntheses and biological activities (topoisomerase inhibition and antitumor and antimicrobial properties) of rebeccamycin analogues bearing modified sugar moieties and substituted on the imide nitrogen with a methyl groupF Anizon, L Belin, P Moreau, et al.Journal of Medicinal Chemistry|May 30, 1998
Syntheses and biological evaluation of indolocarbazoles, analogues of rebeccamycin, modified at the imide heterocycleP Moreau, F Anizon, M Sancelme, et al.Bioorganic & Medicinal Chemistry|November 5, 1998
Syntheses, biochemical and biological evaluation of staurosporine analogues from the microbial metabolite rebeccamycinF Anizon, P Moreau, M Sancelme, et al.Pageof 4