Related Experiment Video
Updated: Feb 6, 2026

Effects of Exposure of Formaldehyde to a Rat Model of Atopic Dermatitis Induced by Neonatal Capsaicin Treatment
Published on: September 27, 2017
Adhesion of Staphylococcus aureus to Corneocytes from Atopic Dermatitis Patients Is Controlled by Natural
Cécile Feuillie1, Pauline Vitry1, Maeve A McAleer2,3,4
1Institute of Life Sciences, Université Catholique de Louvain, Louvain-la-Neuve, Belgium.
Insights
Staphylococcus aureus adhesion to skin is strengthened by low natural moisturizing factor (NMF) levels in atopic dermatitis (AD). This bacterial colonization mechanism, mediated by clumping factor B (ClfB) and enhanced by mechanical stress, offers a potential therapeutic target.
Area of Science:
- Microbiology
- Dermatology
- Biophysics
Background:
- Atopic dermatitis (AD) is exacerbated by Staphylococcus aureus skin colonization.
- Molecular mechanisms of S. aureus-skin adhesion in AD are poorly understood.
- Reduced natural moisturizing factor (NMF) correlates with AD severity, but its direct role in bacterial adhesion is unclear.
Purpose of the Study:
- To investigate the relationship between NMF levels in AD skin and S. aureus adhesion strength.
- To elucidate the molecular determinants of S. aureus-corneocyte interactions in the context of varying NMF levels.
- To identify potential therapeutic targets for reducing S. aureus colonization in AD.
Main Methods:
- Microscopy to analyze corneocyte surface morphology.
- Bacterial adhesion assays using S. aureus isolated from AD patients.
- Investigating the role of clumping factor B (ClfB) in adhesion.
- Applying mechanical stress to study adhesion dynamics.
Main Results:
- Low-NMF corneocytes exhibit nanoscale villus protrusions, promoting denser bacterial coverage.
- S. aureus exhibits significantly stronger adhesion to low-NMF corneocytes compared to high-NMF ones.
- Clumping factor B (ClfB) mediates strong adhesion through specific interactions with skin ligands.
- Mechanical tension enhances ClfB-mediated adhesion, similar to catch bond behavior.
Conclusions:
- Patient NMF levels directly regulate S. aureus-corneocyte adhesion strength, the initial step in skin colonization.
- The ClfB binding mechanism, enhanced by mechanical stress, represents a novel target for therapeutic interventions against S. aureus in AD.
- Understanding bacterium-skin interactions and protein mechanobiology is crucial for developing new treatments for skin disorders.
Abstract:
The bacterial pathogen Staphylococcus aureus plays an important role in atopic dermatitis (AD), a chronic disorder that mostly affects children. Colonization of the skin of AD patients by S. aureus exacerbates the disease, but the molecular determinants of the bacterium-skin adhesive interactions are poorly understood. Specifically, reduced levels of natural moisturizing factor (NMF) in the stratum corneum have been shown to be associated with more severe AD symptoms, but whether this is directly related to S. aureus adhesion is still an open question. Here, we demonstrate a novel relationship between NMF expression in AD skin and strength of bacterial adhesion. Low-NMF corneocytes, unlike high-NMF ones, are covered by a dense layer of nanoscale villus protrusions. S. aureus bacteria isolated from AD skin bind much more strongly to corneocytes when the NMF level is reduced. Strong binding forces originate from a specific interaction between the bacterial adhesion clumping factor B (ClfB) and skin ligands. Remarkably, mechanical tension dramatically strengthens ClfB-mediated adhesion, as observed with catch bonds, demonstrating that physical stress plays a role in promoting colonization of AD skin by S. aureus Collectively, our findings demonstrate that patient NMF levels regulate the strength of S. aureus-corneocyte adhesion, the first step in skin colonization, and suggest that the ClfB binding mechanism could represent a potential target for new therapeutic treatments.IMPORTANCE Bacterium-skin interactions play important roles in skin disorders, yet their molecular details are poorly understood. In this study, we decipher the molecular forces at play during adhesion of Staphylococcus aureus to skin corneocytes in the clinically important context of atopic dermatitis (AD), also known as eczema. We identify a unique relationship between the level of natural moisturizing factor (NMF) in the skin and the strength of bacterium-corneocyte adhesion. Bacterial adhesion is primarily mediated by the surface protein clumping factor B (ClfB) and is enhanced by physical stress, highlighting the role of protein mechanobiology in skin colonization. Similar to a catch bond behavior, this mechanism represents a promising target for the development of novel antistaphylococcal agents.
Related Concept Videos
Factors Affecting Protein-Drug Binding: Patient-Related Factors
Age stands as a key determinant in protein-drug binding. Neonates, characterized by low albumin content, experience heightened concentrations of unbound drugs such as phenytoin and...
Nature and Nurture
Adhesion
Capillary action is a result of water’s adhesive tendencies. When a narrow...
Moisture Content and Bulking of Aggregate
When aggregates are exposed to rain or sit in stockpiles, they absorb moisture, which must be...
What is Natural Selection?
Factors Affecting Renal Clearance: Drug's Physicochemical Properties and Plasma Levels
One important factor is the drug's molecular size. The kidneys readily excrete smaller molecules below 300 Daltons (Da). On the other hand, molecules weighing between 300 and 500 Da are excreted through both urine and bile. Larger molecules above 500 Da tend to be excreted...

