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Role of Enzymatic Activity in the Biological Cost Associated with the Production of AmpC β-Lactamases in Pseudomonas aeruginosa.
Barceló IM, Jordana-Lluch E, Escobar-Salom M, Torrens G, Fraile-Ribot PA, Cabot G, Mulet X, Zamorano L, Juan C, Oliver A. Barceló IM, et al. Among authors: fraile ribot pa. Microbiol Spectr. 2022 Oct 26;10(5):e0270022. doi: 10.1128/spectrum.02700-22. Epub 2022 Oct 10. Microbiol Spectr. 2022. PMID: 36214681 Free PMC article.
Impact of Peptidoglycan Recycling Blockade and Expression of Horizontally Acquired β-Lactamases on Pseudomonas aeruginosa Virulence.
Barceló IM, Torrens G, Escobar-Salom M, Jordana-Lluch E, Capó-Bauzá MM, Ramón-Pallín C, García-Cuaresma D, Fraile-Ribot PA, Mulet X, Oliver A, Juan C. Barceló IM, et al. Among authors: fraile ribot pa. Microbiol Spectr. 2022 Feb 23;10(1):e0201921. doi: 10.1128/spectrum.02019-21. Epub 2022 Feb 16. Microbiol Spectr. 2022. PMID: 35171032 Free PMC article.
In Vivo Emergence of Resistance to Novel Cephalosporin-β-Lactamase Inhibitor Combinations through the Duplication of Amino Acid D149 from OXA-2 β-Lactamase (OXA-539) in Sequence Type 235 Pseudomonas aeruginosa.
Fraile-Ribot PA, Mulet X, Cabot G, Del Barrio-Tofiño E, Juan C, Pérez JL, Oliver A. Fraile-Ribot PA, et al. Antimicrob Agents Chemother. 2017 Aug 24;61(9):e01117-17. doi: 10.1128/AAC.01117-17. Print 2017 Sep. Antimicrob Agents Chemother. 2017. PMID: 28674059 Free PMC article.
Activity of Imipenem-Relebactam against a Large Collection of Pseudomonas aeruginosa Clinical Isolates and Isogenic β-Lactam-Resistant Mutants.
Fraile-Ribot PA, Zamorano L, Orellana R, Del Barrio-Tofiño E, Sánchez-Diener I, Cortes-Lara S, López-Causapé C, Cabot G, Bou G, Martínez-Martínez L, Oliver A; GEMARA-SEIMC/REIPI Pseudomonas Study Group. Fraile-Ribot PA, et al. Antimicrob Agents Chemother. 2020 Jan 27;64(2):e02165-19. doi: 10.1128/AAC.02165-19. Print 2020 Jan 27. Antimicrob Agents Chemother. 2020. PMID: 31740559 Free PMC article.
Characterization of AmpC β-lactamase mutations of extensively drug-resistant Pseudomonas aeruginosa isolates that develop resistance to ceftolozane/tazobactam during therapy.
Fernández-Esgueva M, López-Calleja AI, Mulet X, Fraile-Ribot PA, Cabot G, Huarte R, Rezusta A, Oliver A. Fernández-Esgueva M, et al. Enferm Infecc Microbiol Clin (Engl Ed). 2020 Dec;38(10):474-478. doi: 10.1016/j.eimc.2020.01.017. Epub 2020 Mar 3. Enferm Infecc Microbiol Clin (Engl Ed). 2020. PMID: 32143893 English, Spanish.
Molecular and biochemical insights into the in vivo evolution of AmpC-mediated resistance to ceftolozane/tazobactam during treatment of an MDR Pseudomonas aeruginosa infection.
Arca-Suárez J, Vázquez-Ucha JC, Fraile-Ribot PA, Lence E, Cabot G, Martínez-Guitián M, Lasarte-Monterrubio C, Rodríguez-Iglesias M, Beceiro A, González-Bello C, Galán-Sánchez F, Oliver A, Bou G. Arca-Suárez J, et al. J Antimicrob Chemother. 2020 Nov 1;75(11):3209-3217. doi: 10.1093/jac/dkaa291. J Antimicrob Chemother. 2020. PMID: 32728723
Activity of cefiderocol, imipenem/relebactam, cefepime/taniborbactam and cefepime/zidebactam against ceftolozane/tazobactam- and ceftazidime/avibactam-resistant Pseudomonas aeruginosa.
Lasarte-Monterrubio C, Fraile-Ribot PA, Vázquez-Ucha JC, Cabot G, Guijarro-Sánchez P, Alonso-García I, Rumbo-Feal S, Galán-Sánchez F, Beceiro A, Arca-Suárez J, Oliver A, Bou G. Lasarte-Monterrubio C, et al. Among authors: fraile ribot pa. J Antimicrob Chemother. 2022 Sep 30;77(10):2809-2815. doi: 10.1093/jac/dkac241. J Antimicrob Chemother. 2022. PMID: 35904000
27 results