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Published on: April 18, 2019
Cooperative Membrane Damage as a Mechanism for Pentamidine-Antibiotic Mutual Sensitization
1Institute of Chemical Biology and Nanomedicine, State Key Laboratory of Chemo/Biosensing and Chemometrics, Hunan Provincial Key Laboratory of Biomacromolecular Chemical Biology, and School of Chemistry and Chemical Engineering, Hunan University, Changsha, Hunan 410082, China.
Abstract:
Most Gram-positive-selective antibiotics have low activity against Gram-negative bacteria due to the presence of an outer membrane barrier. There is, therefore, interest in developing combination therapies that can penetrate the outer membrane (OM) with known antibiotics coupled with membrane-active sensitizing adjuvants. However, two unanswered questions hinder the development of such combination therapies: the sensitization spectrum of the sensitizer and the mechanism of antibiotic-sensitizer mutual potentiation. Here, with pentamidine as an example, we screened a library of 170 FDA-approved antibiotics in combination with pentamidine, a compound known to disturb the OM of Gram-negative bacteria. We found that four antibiotics, minocycline, linezolid, valnemulin, and nadifloxacin, displaced enhanced activity in combination with pentamidine against several multidrug-resistant Gram-negative bacteria. Through a descriptor-based structural-activity analysis and multiple cell-based biochemical assays, we found that hydrophobicity, partial charge, rigidity, and surface rugosity were key factors that affected sensitization via a cooperative membrane damage mechanism in which lipopolysaccharides and phospholipids were identified as sites of synergy. Finally, in vitro experiments showed that the linezolid-pentamidine combination slowed the generation of drug resistance, and there was also potent activity in in vivo experiments. Overall, our results highlight the importance of the physicochemical properties of antibiotics and cooperative membrane damage for synergistic pentamidine-antibiotic drug combinations.
Insights
Pentamidine combined with specific antibiotics like linezolid can overcome the outer membrane barrier in Gram-negative bacteria. This combination therapy shows potent activity and reduces drug resistance development.
Area of Science:
- Microbiology
- Pharmacology
- Drug Discovery
Background:
- Gram-positive antibiotics struggle against Gram-negative bacteria due to the outer membrane (OM).
- Combination therapies using OM-penetrating adjuvants with antibiotics are of interest.
- Key questions remain regarding sensitizer spectrum and mechanism of potentiation.
Purpose of the Study:
- To identify antibiotics potentiated by pentamidine against Gram-negative bacteria.
- To elucidate the mechanism of synergistic antibiotic-pentamidine activity.
- To assess the potential of combination therapy in reducing drug resistance.
Main Methods:
- Screened 170 FDA-approved antibiotics with pentamidine against Gram-negative bacteria.
- Conducted structural-activity analysis and cell-based biochemical assays.
- Performed in vitro and in vivo experiments to evaluate efficacy and resistance development.
Main Results:
- Four antibiotics (minocycline, linezolid, valnemulin, nadifloxacin) showed enhanced activity with pentamidine.
- Antibiotic hydrophobicity, charge, rigidity, and rugosity influenced sensitization.
- Synergy involved cooperative membrane damage targeting lipopolysaccharides and phospholipids.
- Linezolid-pentamidine combination slowed drug resistance and showed in vivo efficacy.
Conclusions:
- Physicochemical properties of antibiotics are crucial for synergistic pentamidine combinations.
- Cooperative membrane damage is a key mechanism for potentiation.
- Pentamidine-based combination therapies offer a promising strategy against multidrug-resistant Gram-negative bacteria.
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