DOI: 10.1128/spectrum.01585-26 ISSN: 2165-0497
Innate host defense lysozyme may help control
Staphylococcus aureus
in atopic dermatitis
Patrick M. Schlievert, Samuel H. Kilgore, Evgeny Berdyshev, Michael Nodzenski, Gloria David, Takeshi Yoshida, Lisa A. Beck, Donald Y. M. Leung ABSTRACT
Atopic dermatitis (AD) is a chronic pruritic skin condition characterized by lesions associated with colonization and infection by
Staphylococcus aureus
. There is growing evidence that
S. aureus
contributes to symptoms and persistence of AD through production of cytotoxins, superantigens, and proteases. When AD is treated with the interleukin-4 receptor blocking antibody, dupilumab,
S. aureus
colonization declines rapidly. Here, we examined the possible involvement of the host lysozyme-mediated innate immune response in helping to control
S. aureus
burden in AD patients.
S. aureus
is not killed by lysozyme, but the molecule inhibits
S. aureus
exotoxin and exoenzyme (exoprotein) production. Reduced
S. aureus
abundance during dupilumab treatment correlated positively with reduced lysozyme levels.
S. aureus
colonization and lysozyme levels were not altered in placebo-treated participants until they entered the open-label phase of the study (non-blinded phase) when all participants were treated with dupilumab. During that phase, the
S. aureus
and lysozyme levels declined. These findings suggest that AD patients may respond to cutaneous
S. aureus
colonization by upregulating lysozyme production.
IMPORTANCE
Staphylococcus aureus
is increasingly viewed as an important contributor to atopic dermatitis (AD) persistence. The host responds to AD by producing cationic peptides, including lysozyme. Lysozyme cannot kill
S. aureus
, but the innate defense molecule downregulates exotoxin and exoenzyme production, limiting S. aureus-induced inflammation. Clinical improvement of AD likely requires balancing the inflammatory cascades induced by
S. aureus
versus host innate immunity.