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A Reference Broth Microdilution Method for Dalbavancin In Vitro Susceptibility Testing of Bacteria that Grow Aerobically
Published on: September 9, 2015
Dalbavancin Activity When Tested against Streptococcus pneumoniae Isolated in Medical Centers on Six Continents (2011
Ronald N Jones1, Jason E Schuchert2, Rodrigo E Mendes2
1JMI Laboratories, North Liberty, Iowa, USA ronald-jones@jmilabs.com.
Abstract:
Dalbavancin, a novel lipoglycopeptide, was approved for use in 2014 by regulatory agencies in the United States and Europe for the treatment of skin and skin structure infections. The activity of dalbavancin was also widely assessed by determination of its activity against Streptococcus pneumoniae clinical isolates collected from patients on six continents monitored during two time intervals (2011 to 2013 and 2014). A total of 18,186 pneumococcal isolates were obtained from 49 nations and submitted to a monitoring laboratory as part of the SENTRY Antimicrobial Surveillance Program for reference susceptibility testing. The potency of dalbavancin against S. pneumoniae was consistent across the years that it was monitored, with the MIC50 and MIC90 being 0.015 and 0.03 μg/ml, respectively, and all isolates were inhibited by ≤0.12 μg/ml. The activity of dalbavancin was not adversely influenced by nonsusceptibility to β-lactams (ceftriaxone or penicillin), macrolides, clindamycin, fluoroquinolones, or tetracyclines or multidrug resistance (MDR). Regional variations in dalbavancin activity were not detected, but S. pneumoniae strains isolated in the Asia-Pacific region were more likely to be nonsusceptible to penicillin and ceftriaxone as well as to be MDR than strains isolated in North or South America and Europe. Direct comparisons of potency illustrated that dalbavancin (MIC50 and MIC90, 0.015 and 0.03 μg/ml, respectively) was 16-fold or more active than vancomycin (MIC50, 0.25 μg/ml), linezolid (MIC50, 1 μg/ml), levofloxacin (MIC50, 1 μg/ml), ceftriaxone (MIC90, 1 μg/ml), and penicillin (MIC90, 2 μg/ml). In conclusion, dalbavancin had potent and consistent activity against this contemporary (2011 to 2014) collection of S. pneumoniae isolates.
Insights
Dalbavancin demonstrates potent and consistent activity against Streptococcus pneumoniae, including drug-resistant strains. This lipoglycopeptide antibiotic maintained its efficacy from 2011 to 2014, offering a reliable treatment option.
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- Dalbavancin, a lipoglycopeptide, received regulatory approval in 2014 for treating skin infections.
- Streptococcus pneumoniae is a significant pathogen causing various infections globally.
Purpose of the Study:
- To assess the in vitro activity of dalbavancin against a large, contemporary collection of Streptococcus pneumoniae clinical isolates.
- To evaluate dalbavancin's consistency and potency against S. pneumoniae over time and across different geographic regions.
Main Methods:
- Susceptibility testing of 18,186 S. pneumoniae isolates from 49 nations (2011-2014) using the SENTRY Antimicrobial Surveillance Program.
- Determination of Minimum Inhibitory Concentrations (MICs) for dalbavancin and comparative agents.
- Analysis of dalbavancin activity against isolates with varying resistance profiles (beta-lactams, macrolides, fluoroquinolones, tetracyclines, MDR).
Main Results:
- Dalbavancin exhibited potent and consistent activity, with MIC50 and MIC90 values of 0.015 and 0.03 μg/ml, respectively; all isolates were inhibited by ≤0.12 μg/ml.
- Activity was unaffected by resistance to other antibiotic classes or multidrug resistance (MDR).
- Dalbavancin was significantly more potent (≥16-fold) than vancomycin, linezolid, levofloxacin, ceftriaxone, and penicillin.
Conclusions:
- Dalbavancin possesses potent and consistent in vitro activity against contemporary S. pneumoniae isolates.
- Its efficacy is maintained regardless of resistance mechanisms or geographic origin, highlighting its therapeutic potential.
- Dalbavancin represents a valuable option for treating S. pneumoniae infections, including those caused by resistant strains.
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