Search Results - "Alieva, Kamilla N."
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Time inside the mutant selection window as a predictor of staphylococcal resistance to linezolid
Published in Journal of antibiotics (01-05-2018)“…To explore if the time inside the mutant selection window ( T MSW ) is a reliable predictor of emergence of bacterial resistance to linezolid, mixed inocula of…”
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2
Fluorescence Microscopy: Determination of Meropenem Activity against Klebsiella pneumoniae
Published in Antibiotics (Basel) (10-07-2023)“…The development and implementation of diagnostic methods that allow rapid assessment of antibiotic activity against pathogenic microorganisms is an important…”
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Meropenem MICs at Standard and High Inocula and Mutant Prevention Concentration Inter-Relations: Comparative Study with Non-Carbapenemase-Producing and OXA-48-, KPC- and NDM-Producing Klebsiella pneumoniae
Published in Antibiotics (Basel) (08-05-2023)“…The minimal inhibitory concentration (MIC) is conventionally used to define in vitro levels of susceptibility or resistance of a specific bacterial strain to…”
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Comparative Meropenem Pharmacodynamics and Emergence of Resistance against Carbapenem-Susceptible Non-Carbapenemase-Producing and Carbapenemase-Producing Enterobacterales: A Pharmacodynamic Study in a Hollow-Fiber Infection Model
Published in Antibiotics (Basel) (01-12-2023)“…Resistance to carbapenems has become a problem due to ( ), harboring carbapenemases. Among them, there are isolates that are recognized as…”
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5
Klebsiella pneumoniae Susceptibility to Carbapenem/Relebactam Combinations: Influence of Inoculum Density and Carbapenem-to-Inhibitor Concentration Ratio
Published in Biomedicines (20-06-2022)“…The inoculum effect (IE) is a well-known phenomenon with beta-lactams. At the same time, the IE has not been extensively studied with carbapenem/carbapenemase…”
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6
Role of volume and inoculum in MIC assessment: a study with meropenem and Klebsiella pneumoniae
Published in Journal of antimicrobial chemotherapy (01-10-2024)“…Abstract Objectives Pharmacodynamic parameters evaluated under conditions that simulate an infection site volume and microbial load might reveal hidden risks…”
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7
Anti-mutant efficacy of antibiotic combinations: in vitro model studies with linezolid and daptomycin
Published in Journal of antimicrobial chemotherapy (01-07-2021)“…Abstract Objectives To explore whether linezolid/daptomycin combinations can restrict Staphylococcus aureus resistance and if this restriction is associated…”
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Testing the mutant selection window hypothesis with meropenem: In vitro model study with OXA-48-producing Klebsiella pneumoniae
Published in PloS one (04-08-2023)“…OXA-48 carbapenemases are frequently expressed by Klebsiella pneumoniae clinical isolates; they decrease the effectiveness of carbapenem therapy, particularly…”
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9
Testing the mutant selection window hypothesis with Staphylococcus aureus exposed to linezolid in an in vitro dynamic model
Published in Journal of antimicrobial chemotherapy (01-11-2017)“…To test the mutant selection window (MSW) hypothesis applied to linezolid-exposed Staphylococcus aureus and to delineate the concentration-resistance…”
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10
Concentration-dependent enrichment of resistant Enterococcus faecium exposed to linezolid in an in vitro dynamic model
Published in Journal of chemotherapy (Florence) (17-11-2018)“…To explore the relationship between pharmacokinetic variables and enterococcal resistance to linezolid, a vancomycin-resistant strain whose mutant prevention…”
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11
Fluorescence Microscopy: Determination of Meropenem Activity against IKlebsiella pneumoniae/I
Published in Antibiotics (Basel) (01-07-2023)“…The development and implementation of diagnostic methods that allow rapid assessment of antibiotic activity against pathogenic microorganisms is an important…”
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12
Meropenem MICs at Standard and High Inocula and Mutant Prevention Concentration Inter-Relations: Comparative Study with Non-Carbapenemase-Producing and OXA-48-, KPC- and NDM-Producing IKlebsiella pneumoniae/I
Published in Antibiotics (Basel) (01-05-2023)“…The minimal inhibitory concentration (MIC) is conventionally used to define in vitro levels of susceptibility or resistance of a specific bacterial strain to…”
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