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Updated: Jan 20, 2026

Subcutaneous Infection of Methicillin Resistant Staphylococcus Aureus MRSA
Published on: February 9, 2011
Z‑Amino Acids Present Innovative Antimicrobial and Antibiofilm Properties against Methicillin-Susceptible and
Alexa Sowers1,2, Bingyun Li1
1Department of Orthopaedics, School of Medicine, West Virginia University, Morgantown, West Virginia 26506, United States.
Abstract:
One of the challenges associated with bacteria is their ability to form biofilms that can grow on medical equipment, resulting in more severe and persistent infections. Unfortunately, most antibiotics are optimized for planktonic bacteria, and their therapeutic window is limited when targeting biofilms. Eradicating biofilms typically requires concentrations that are much higher than the minimum inhibitory concentration (MIC), increasing the concern about cytotoxicity toward mammalian cells. In this study, benzyloxycarbonyl-protected amino acids (Z-amino acids), for the first time, were analyzed for both antimicrobial and antibiofilm activity against Staphylococcus aureus (S. aureus), a strain prevalent in surgical infections. It was determined that Z-amino acids, especially Z-glycine (Z-Gly), exhibited fast antimicrobial properties against S. aureus, causing early depolarization and leading to enhanced membrane permeability. Severe membrane disruption of S. aureus after treatment with Z-glutamine (Z-Gln) was confirmed microscopically. Additionally, Z-amino acids effectively inhibited biofilm formation at 1× MIC and dispersed mature biofilms at 2× MIC. Notably, Z-Gln had the most favorable antimicrobial activity profile with minimal toxicity toward mammalian cells at both 1× and 2× MIC. These concentrations were effective against both planktonic and biofilm-associated bacteria while maintaining at least 80% viability of osteoblast cells after a 24 h exposure. These Z-amino acids also exhibited similar toxicity toward epithelial cells (e.g., BEAS-2B cells), indicating a consistent safety profile against different cell types. These findings suggest that Z-amino acids, particularly Z-Gln, show promise as a new therapeutic agent that targets both planktonic and biofilm-associated infections.
Insights
Benzyloxycarbonyl-protected amino acids, like Z-glutamine, show promise against Staphylococcus aureus biofilms. These compounds effectively combat planktonic and biofilm bacteria with low mammalian cell toxicity.
Area of Science:
- Microbiology
- Biochemistry
- Drug Discovery
Background:
- Bacterial biofilms on medical devices cause persistent infections.
- Standard antibiotics are less effective against biofilms and can be cytotoxic.
- New antimicrobial strategies are needed to target biofilm infections.
Purpose of the Study:
- To evaluate benzyloxycarbonyl-protected amino acids (Z-amino acids) for antimicrobial and antibiofilm activity.
- To assess the safety profile of Z-amino acids against mammalian cells.
- To identify potential therapeutic agents for Staphylococcus aureus infections.
Main Methods:
- Antimicrobial and antibiofilm assays against Staphylococcus aureus.
- Microscopic analysis of bacterial membrane disruption.
- Mammalian cell viability assays (osteoblasts, BEAS-2B cells).
Main Results:
- Z-amino acids, particularly Z-glycine, demonstrated rapid antimicrobial effects.
- Z-glutamine caused significant membrane disruption in S. aureus.
- Z-amino acids inhibited biofilm formation and dispersed mature biofilms.
- Z-glutamine showed efficacy at 1x and 2x MIC with minimal toxicity to osteoblast and epithelial cells.
Conclusions:
- Z-amino acids possess potent antimicrobial and antibiofilm properties.
- Z-glutamine exhibits a favorable therapeutic profile with low cytotoxicity.
- Z-amino acids represent a promising new class of agents for treating S. aureus infections, including those involving biofilms.
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