Evaluation of the in vitro synergy of polymyxin B-based combinations against polymyxin B -resistant gram-negative bacilli. (May 2022)
- Record Type:
- Journal Article
- Title:
- Evaluation of the in vitro synergy of polymyxin B-based combinations against polymyxin B -resistant gram-negative bacilli. (May 2022)
- Main Title:
- Evaluation of the in vitro synergy of polymyxin B-based combinations against polymyxin B -resistant gram-negative bacilli
- Authors:
- Li, You
Guo, Siwei
Li, Xin
Yu, Yunsong
Yan, Bingqian
Tian, Miaomei
Xu, Bing
Hu, Huangdu - Abstract:
- Abstract: Objectives: This study aimed to evaluate the in vitro synergy of polymyxin B (PMB) combined with 11 other antibiotics against PMB-resistant gram-negative bacilli (GNBs). Methods: Thirty-six clinical isolates of PMB-resistant GNBs were used. The MICs of all the antimicrobials tested were determined by the broth microdilution method and the checkerboard assay method. Carbapenemase genes were detected by PCR. In vitro synergy results were interpreted using the fractional inhibitory concentration index (FICI). Four combinations that showed positive interactions were subsequently evaluated in a time-kill study. Results: Among the 36 strains, 15 harboured the carbapenemase gene, and bla KPC was the predominant carbapenemase. The resistance rates of the 36 strains to tigecycline, meropenem, ceftazidime, and cefepime were 100% (36/36), 97% (35/36), 94% (34/36), and 97% (35/36), respectively. For Enterobacteriaceae and Pseudomonas aeruginosa, the resistance rates to aztreonam and ceftazidime-avibactam (avibactam at a fixed concentration of 4 mg/L) were 95% (19/20) and 25% (5/20), respectively. The PMB-based combinations exhibited synergism to a certain degree. The most synergistic combinations were PMB plus meropenem-avibactam (avibactam at a fixed concentration of 4 mg/L) and PMB plus tigecycline, with the synergy rates of 83.3% and 80.6%, respectively. Compared to tazobactam- and sulbactam-based β-lactam–β-lactamase inhibitor combinations (BL-BLIs), PMB withAbstract: Objectives: This study aimed to evaluate the in vitro synergy of polymyxin B (PMB) combined with 11 other antibiotics against PMB-resistant gram-negative bacilli (GNBs). Methods: Thirty-six clinical isolates of PMB-resistant GNBs were used. The MICs of all the antimicrobials tested were determined by the broth microdilution method and the checkerboard assay method. Carbapenemase genes were detected by PCR. In vitro synergy results were interpreted using the fractional inhibitory concentration index (FICI). Four combinations that showed positive interactions were subsequently evaluated in a time-kill study. Results: Among the 36 strains, 15 harboured the carbapenemase gene, and bla KPC was the predominant carbapenemase. The resistance rates of the 36 strains to tigecycline, meropenem, ceftazidime, and cefepime were 100% (36/36), 97% (35/36), 94% (34/36), and 97% (35/36), respectively. For Enterobacteriaceae and Pseudomonas aeruginosa, the resistance rates to aztreonam and ceftazidime-avibactam (avibactam at a fixed concentration of 4 mg/L) were 95% (19/20) and 25% (5/20), respectively. The PMB-based combinations exhibited synergism to a certain degree. The most synergistic combinations were PMB plus meropenem-avibactam (avibactam at a fixed concentration of 4 mg/L) and PMB plus tigecycline, with the synergy rates of 83.3% and 80.6%, respectively. Compared to tazobactam- and sulbactam-based β-lactam–β-lactamase inhibitor combinations (BL-BLIs), PMB with avibactam-based BL-BLIs exhibited a better synergistic effect. For Acinetobacter baumannii, PMB plus sulbactam exhibited a strong synergism with a 2∼7-fold MIC reduction of PMB. In time-kill studies, the highest degree of synergism was observed for PMB with cefepime-avibactam on all the tested isolates. For isolates with low-level resistance to PMB, PMB combined with other partner antimicrobials also showed a certain degree of synergism. Conclusions: PMB in combination with tigecycline and avibactam-based BL-BLIs could be a potential clinical option for clinical treatment of infections caused by PMB -resistant GNBs. Highlights: Polymyxin B-based combinations are used clinically to treat serious infections caused by gram-negative bacilli. There is insufficient in vitro data to support polymyxin B combined with BL-BLIs. Polymyxin B with tigecycline and avibactam-based BL-BLIs could be of potential clinical option for polymyxin B-resistant GNB infections. … (more)
- Is Part Of:
- Microbial pathogenesis. Volume 166(2022)
- Journal:
- Microbial pathogenesis
- Issue:
- Volume 166(2022)
- Issue Display:
- Volume 166, Issue 2022 (2022)
- Year:
- 2022
- Volume:
- 166
- Issue:
- 2022
- Issue Sort Value:
- 2022-0166-2022-0000
- Page Start:
- Page End:
- Publication Date:
- 2022-05
- Subjects:
- Polymyxin B -- Resistant -- Gram-negative bacilli -- Combination -- Synergy
Pathogenic microorganisms -- Periodicals
Pathology, Molecular -- Periodicals
Communicable Diseases -- microbiology -- Periodicals
Communicable Diseases -- parasitology -- Periodicals
Micro-organismes pathogènes -- Périodiques
Pathologie moléculaire -- Périodiques
Electronic journals
616.9041 - Journal URLs:
- http://www.sciencedirect.com/science/journal/08824010 ↗
http://firstsearch.oclc.org ↗
http://firstsearch.oclc.org/journal=0882-4010;screen=info;ECOIP ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.micpath.2022.105517 ↗
- Languages:
- English
- ISSNs:
- 0882-4010
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- Legaldeposit
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