Small Molecules Produced by Commensal Staphylococcus epidermidis Disrupt Formation of Biofilms by Staphylococcus aureus
作者
Thaís Glatthardt,Juliana Curityba de Mello Campos,Raiane Cardoso Chamon,Thiago Freitas de Sá Coimbra,Giulia de Almeida Rocha,Marília Alves Figueira de Melo,Thiago Estevam Parente,Leandro Araújo Lobo,L. Caetano M. Antunes,Kátia Regina Netto dos Santos,Rosana B. R. Ferreira
S. aureus is a leading agent of infections worldwide, and its main virulence characteristic is the ability to produce biofilms on surfaces such as medical devices. Biofilms are known to confer increased resistance to antimicrobials and to the host immune responses, requiring aggressive antibiotic treatment and removal of the infected surface. Here, we investigated a new source of antibiofilm compounds, the skin microbiome. Specifically, we found that a commensal strain of S. epidermidis produces molecules with antibiofilm activity, leading to a significant decrease of S. aureus biofilm formation and to a reduction of previously established biofilms. The molecules potentiated the activity of antibiotics and affected the expression of hundreds of S. aureus genes, including those associated with biofilm formation. Our research highlights the search for compounds that can aid us in the fight against S. aureus infections.