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avibactam

  • Select β-Lactam Combinations Exhibit Synergy against <em>Mycobacterium abscessus In Vitro</em>
    Susceptibility
    Select β-Lactam Combinations Exhibit Synergy against Mycobacterium abscessus In Vitro

    Mycobacterium abscessus is a nontuberculous mycobacterium that causes invasive pulmonary infections in patients with structural lung disease. M. abscessus is intrinsically resistant to several classes of antibiotics, and an increasing number of strains isolated from patients exhibit resistance to...

    Elizabeth Story-Roller, Emily C. Maggioncalda, Gyanu Lamichhane
  • Molecular Basis for the Potent Inhibition of the Emerging Carbapenemase VCC-1 by Avibactam
    Mechanisms of Resistance
    Molecular Basis for the Potent Inhibition of the Emerging Carbapenemase VCC-1 by Avibactam

    In 2016, we identified a new class A carbapenemase, VCC-1, in a nontoxigenic Vibrio cholerae strain that had been isolated from retail shrimp imported into Canada for human consumption. Shortly thereafter, seven additional VCC-1-producing V. cholerae isolates were recovered along the German...

    Chand S. Mangat, Grishma Vadlamani, Viktor Holicek, Mitchell Chu, Veronica L. C. Larmour, David J. Vocadlo, Michael R. Mulvey, Brian L. Mark
  • <em>In Vitro</em> and Intracellular Activity of Imipenem Combined with Tedizolid, Rifabutin, and Avibactam against <em>Mycobacterium abscessus</em>
    Mechanisms of Action: Physiological Effects
    In Vitro and Intracellular Activity of Imipenem Combined with Tedizolid, Rifabutin, and Avibactam against Mycobacterium abscessus

    Mycobacterium abscessus infections are difficult to treat because of their resistance to many antibiotics. In vitro, tedizolid combined with imipenem displayed a moderate synergistic effect (fractional inhibitory concentration index, 0.41) but no bactericidal activity.

    Eva Le Run, Michel Arthur, Jean-Luc Mainardi
  • Mutation-Driven Evolution of <span class="named-content genus-species" id="named-content-1">Pseudomonas aeruginosa</span> in the Presence of either Ceftazidime or Ceftazidime-Avibactam
    Mechanisms of Resistance
    Mutation-Driven Evolution of Pseudomonas aeruginosa in the Presence of either Ceftazidime or Ceftazidime-Avibactam

    Ceftazidime-avibactam is a combination of β-lactam/β-lactamase inhibitor, the use of which is restricted to some clinical cases, including cystic fibrosis patients infected with multidrug-resistant Pseudomonas aeruginosa, in which mutation is the main driver of resistance. This study aims to predict the mechanisms of mutation-driven resistance that are selected for...

    Fernando Sanz-García, Sara Hernando-Amado, José Luis Martínez
  • Mechanisms of Resistance
    Combination of Amino Acid Substitutions Leading to CTX-M-15-Mediated Resistance to the Ceftazidime-Avibactam Combination

    Single amino acid substitutions in the Ω loop of KPC β-lactamases are known to lead to resistance to the ceftazidime-avibactam combination. Here, we investigate this mechanism of resistance in CTX-M enzymes, which are the most widely spread extended-spectrum β-lactamases worldwide.

    Fabrice Compain, Delphine Dorchène, Michel Arthur
  • Mechanisms of Resistance
    TEM-184, a Novel TEM-Derived Extended-Spectrum β-Lactamase with Enhanced Activity against Aztreonam

    TEM-184, a novel TEM-derived extended-spectrum β-lactamase (ESBL), was isolated from an Escherichia coli ST354 clinical strain. Compared to TEM-1, TEM-184 contains the mutations Q6K, E104K, I127V, R164S, and M182T.

    Alessandra Piccirilli, Mariagrazia Perilli, Gianfranco Amicosante, Viola Conte, Carlo Tascini, Gian Maria Rossolini, Tommaso Giani
  • Mechanisms of Action: Physiological Effects
    In Vitro and Intracellular Activity of Imipenem Combined with Rifabutin and Avibactam against Mycobacterium abscessus

    Repurposing drugs may be useful as an add-on in the treatment of Mycobacterium abscessus pulmonary infections, which are particularly difficult to cure. M. abscessus naturally produces a β-lactamase, BlaMAb, which is inhibited by avibactam.

    Eva Le Run, Michel Arthur, Jean-Luc Mainardi
  • Minireview
    Avibactam Pharmacokinetic/Pharmacodynamic Targets
    Wright W. Nichols, Paul Newell, Ian A. Critchley, Todd Riccobene, Shampa Das
  • Mechanisms of Resistance
    Defining Substrate Specificity in the CTX-M Family: the Role of Asp240 in Ceftazidime Hydrolysis
    Barbara Ghiglione, María Margarita Rodríguez, Lucrecia Curto, Florencia Brunetti, Milena Dropa, Robert A. Bonomo, Pablo Power, Gabriel Gutkind
  • Mechanisms of Resistance
    Probing the Mechanism of Inactivation of the FOX-4 Cephamycinase by Avibactam
    Michiyoshi Nukaga, Krisztina M. Papp-Wallace, Tyuji Hoshino, Scott T. Lefurgy, Christopher R. Bethel, Melissa D. Barnes, Elise T. Zeiser, J. Kristie Johnson, Robert A. Bonomo

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