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Updated: Feb 10, 2026

A Mouse Model to Assess Innate Immune Response to Staphylococcus aureus Infection
Published on: February 28, 2019
Lactoferrin bridges antimicrobial and healing responses in Staphylococcus aureus skin infections
Katarzyna Kosznik-Kwaśnicka1, Urszula Leszczyńska2, Lidia Piechowicz1
1Department of Medical Microbiology, Faculty of Medicine, Medical University of Gdańsk, Gdańsk, Poland.
Abstract:
Staphylococcus aureus is a leading cause of skin and wound infections worldwide, with methicillin-resistant strains (MRSA) posing a persistent clinical challenge due to antibiotic tolerance and biofilm formation. Lactoferrin, an iron-binding glycoprotein abundant in mammals' secretions and neutrophil granules, has emerged as a promising multifunctional agent that could help manage staphylococcal skin and wound infections, as it combines direct antimicrobial activity with immunomodulatory and tissue-repair effects. This mini-review aims to synthesize current evidence on the role of lactoferrin in the prevention and treatment of staphylococcal skin and wound infections, focusing on its antimicrobial mechanisms, modulation of host responses, and therapeutic applications. In vitro studies demonstrate that lactoferrin inhibits S. aureus growth through iron sequestration and membrane disruption, and it can also disrupt biofilm formation and persistence. Additionally, experiments showed that lactoferrin modulates inflammation, reduces oxidative stress, and promotes fibroblast migration and collagen deposition, facilitating wound closure. Lactoferrin incorporated into hydrogels, films, or nanocarriers enhanced antibacterial activity and synergized with antibiotics or bacteriophages in preclinical models. Nonetheless, variability in dosing, formulation, and study design limits cross-study comparisons, and potential bacterial resistance mechanisms remain underexplored. Therefore, further controlled and standardized studies are needed in order to optimize clinical translation and integration into modern wound care.
Insights
Lactoferrin shows potential in treating Staphylococcus aureus skin infections by inhibiting bacterial growth and aiding wound repair. Further research is needed to optimize its clinical use against infections like MRSA.
Area of Science:
- Biochemistry
- Microbiology
- Wound Healing Research
Background:
- Staphylococcus aureus, including methicillin-resistant strains (MRSA), is a major cause of skin and wound infections.
- Antibiotic tolerance and biofilm formation by S. aureus present significant clinical challenges.
- Lactoferrin, a mammalian glycoprotein, exhibits antimicrobial, immunomodulatory, and tissue-repair properties.
Purpose of the Study:
- To review the evidence on lactoferrin's role in preventing and treating staphylococcal skin and wound infections.
- To explore lactoferrin's antimicrobial mechanisms, host response modulation, and therapeutic potential.
- To identify limitations and future research directions for lactoferrin in wound care.
Main Methods:
- Literature review synthesizing in vitro and preclinical data on lactoferrin.
- Analysis of lactoferrin's effects on S. aureus growth, biofilm formation, and host inflammatory responses.
- Evaluation of lactoferrin formulations and synergistic effects with other treatments.
Main Results:
- Lactoferrin inhibits S. aureus growth via iron sequestration and membrane disruption.
- Lactoferrin disrupts S. aureus biofilm formation and persistence.
- Lactoferrin modulates inflammation, reduces oxidative stress, and promotes wound healing processes.
Conclusions:
- Lactoferrin demonstrates multifaceted therapeutic potential for staphylococcal skin and wound infections.
- Formulations like hydrogels and nanocarriers enhance lactoferrin's efficacy.
- Standardized clinical studies are required to optimize lactoferrin's application in wound management.
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