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Updated: Jul 9, 2025

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Published on: September 9, 2022
Structure-Interaction Relationship of Polymyxins with Lung Surfactant
Xukai Jiang1, Nitin A Patil2, Yuwen Xu3
1National Glycoengineering Research Center, Shandong University, Qingdao 266237, China.
Lung surfactant hinders polymyxin antibiotics against Gram-negative superbugs. A new analog, FADDI-235, shows potent activity, offering hope for treating resistant bacterial pneumonia.
Area of Science:
- Microbiology
- Biochemistry
- Pharmacology
Background:
- Multidrug-resistant Gram-negative bacteria pose a significant global health threat.
- Polymyxins are last-resort antibiotics but have poor efficacy in pulmonary infections.
- Alveolar lung surfactant is implicated in reduced polymyxin effectiveness.
Purpose of the Study:
- To investigate how alveolar lung surfactant affects polymyxin antibacterial activity.
- To elucidate the interaction mechanisms between polymyxins and lung surfactant.
- To develop novel polymyxin analogs with improved efficacy against Gram-negative lung infections.
Main Methods:
- Integrated chemical biology approaches.
- Molecular dynamics simulations.
- Structure-interaction relationship analysis.
- Thermodynamic elucidation of polymyxin penetration through surfactant barriers.
Main Results:
- Lung surfactant acts as a phospholipid-based permeability barrier, reducing polymyxin efficacy.
- Detailed structure-interaction and thermodynamic data of polymyxin-surfactant interactions were obtained.
- A novel polymyxin analog, FADDI-235, demonstrated potent activity against Gram-negative bacteria, irrespective of lung surfactant presence.
Conclusions:
- Lung surfactant sequesters polymyxins, compromising their activity against Gram-negative bacteria.
- Understanding these interactions is crucial for overcoming antibiotic resistance in pulmonary infections.
- Findings facilitate the rational design of next-generation lipopeptide antibiotics for treating Gram-negative bacterial pneumonia.
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