Acid-treated Staphylococcus aureus induces acute silkworm hemolymph melanization

Author:

Matsumoto YasuhikoORCID,Sato Eri,Sugita Takashi

Abstract

The skin microbiome maintains healthy human skin, and disruption of the microbiome balance leads to inflammatory skin diseases such as folliculitis and atopic dermatitis. Staphylococcus aureus and Cutibacterium acnes are pathogenic bacteria that simultaneously inhabit the skin and cause inflammatory diseases of the skin through the activation of innate immune responses. Silkworms are useful invertebrate animal models for evaluating innate immune responses. In silkworms, phenoloxidase generates melanin as an indicator of innate immune activation upon the recognition of bacterial or fungal components. We hypothesized that S. aureus and C. acnes interact to increase the innate immunity-activating properties of S. aureus. In the present study, we showed that acidification is involved in the activation of silkworm hemolymph melanization by S. aureus. Autoclaved-killed S. aureus (S. aureus [AC]) alone does not greatly activate silkworm hemolymph melanization. On the other hand, applying S. aureus [AC] treated with C. acnes culture supernatant increased the silkworm hemolymph melanization. Adding C. acnes culture supernatant to the medium decreased the pH. S. aureus [AC] treated with propionic acid, acetic acid, or lactic acid induced higher silkworm hemolymph melanization activity than untreated S. aureus [AC]. S. aureus [AC] treated with hydrochloric acid also induced silkworm hemolymph melanization. The silkworm hemolymph melanization activity of S. aureus [AC] treated with hydrochloric acid was inhibited by protease treatment of S. aureus [AC]. These results suggest that acid treatment of S. aureus induces innate immune activation in silkworms and that S. aureus proteins are involved in the induction of innate immunity in silkworms.

Funder

Japan Society for the Promotion of Science

Japan Agency for Medical Research and Development

Kose Cosmetology Research Foundation

Bio-oriented Technology Research Advancement Institution

Publisher

Public Library of Science (PLoS)

Reference33 articles.

1. The human skin microbiome;AL Byrd;Nat Rev Microbiol,2018

2. Exploring the human hair follicle microbiome;MB Lousada;Br J Dermatol,2021

3. The Skin Microbiome: Current Landscape and Future Opportunities.;P Smythe;Int J Mol Sci.,2023

4. Atopic dermatitis: New insights and opportunities for therapeutic intervention;DYM Leung;J Allergy Clin Immunol,2000

5. Staphylococcus aureus and Host Immunity;D Nowicka;Recurrent Furunculosis. Dermatology,2019

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