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Updated: Dec 30, 2025

Nanomechanics of Drug-target Interactions and Antibacterial Resistance Detection
Published on: October 25, 2013
The antibiotic vancomycin induces complexation and aggregation of gastrointestinal and submaxillary mucins
Vlad Dinu1,2, Yudong Lu1, Nicola Weston3
1National Centre for Macromolecular Hydrodynamics, School of Biosciences, University of Nottingham, Sutton Bonington, LE12 5RD, UK.
Abstract:
Vancomycin, a branched tricyclic glycosylated peptide antibiotic, is a last-line defence against serious infections caused by staphylococci, enterococci and other Gram-positive bacteria. Orally-administered vancomycin is the drug of choice to treat pseudomembranous enterocolitis in the gastrointestinal tract. However, the risk of vancomycin-resistant enterococcal infection or colonization is significantly associated with oral vancomycin. Using the powerful matrix-free assay of co-sedimentation analytical ultracentrifugation, reinforced by dynamic light scattering and environmental scanning electron microscopy, and with porcine mucin as the model mucin system, this is the first study to demonstrate strong interactions between vancomycin and gastric and intestinal mucins, resulting in very large aggregates and depletion of macromolecular mucin and occurring at concentrations relevant to oral dosing. In the case of another mucin which has a much lower degree of glycosylation (~60%) - bovine submaxillary mucin - a weaker but still demonstrable interaction is observed. Our demonstration - for the first time - of complexation/depletion interactions for model mucin systems with vancomycin provides the basis for further study on the implications of complexation on glycopeptide transit in humans, antibiotic bioavailability for target inhibition, in situ generation of resistance and future development strategies for absorption of the antibiotic across the mucus barrier.
Insights
Vancomycin interacts strongly with gut mucins, forming large aggregates. This interaction may impact antibiotic bioavailability and resistance development when taken orally.
Area of Science:
- Microbiology
- Biochemistry
- Drug Delivery
Background:
- Vancomycin is a critical antibiotic for Gram-positive bacterial infections.
- Oral vancomycin is used for enterocolitis but linked to resistance.
- Mucins form a protective barrier in the gastrointestinal tract.
Purpose of the Study:
- To investigate vancomycin interactions with gastric and intestinal mucins.
- To understand the impact of these interactions on antibiotic behavior in the gut.
Main Methods:
- Co-sedimentation analytical ultracentrifugation.
- Dynamic light scattering.
- Environmental scanning electron microscopy.
- Porcine and bovine submaxillary mucin models.
Main Results:
- Vancomycin strongly interacts with porcine mucins, forming large aggregates.
- Significant depletion of mucin macromolecules was observed.
- Weaker interactions were noted with bovine submaxillary mucin.
- Interactions occurred at concentrations relevant to oral vancomycin dosing.
Conclusions:
- Vancomycin complexation with mucins is demonstrated for the first time.
- This interaction may affect antibiotic transit, bioavailability, and resistance.
- Further research is needed to explore implications for human treatment and drug development.
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