Barbara Bröker
Professor, Head of Department
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Barbara Bröker is a Professor and Head of Department at University Medicine Greifswald, Germany. Her research focuses on immunology, particularly in the context of antibody responses to infections and vaccinations, including COVID-19. Recent articles highlight her work on the humoral immune response, the interaction of immune cells with pathogens, and the immune implications in various conditions such as chronic rhinosinusitis and acute pancreatitis.
Articles (16)
TLR4 sensing of IsdB of <i>Staphylococcus aureus</i> induces a proinflammatory cytokine response via the NLRP3-caspase-1 inflammasome cascade
The iron-regulated surface determinant protein B (IsdB) of Staphylococcus aureus is involved in the acquisition of iron from hemoglobin. Moreover, IsdB elicits an adaptive immune response in mice and humans. Here, we show that IsdB also has impact on innate immunity. IsdB induces the release of proinflammatory cytokines, including IL-6 and IL-1β, in innate immune cells of humans and mice. In silico analysis and thermophoresis show that IsdB directly binds to TLR4 with high affinity. TLR4 sensing was essential for the IsdB-mediated production of IL-6, IL-1β, and other cytokines as it was abolished by blocking of TLR4-MyD88-IRAK1/4-NF-κB signaling. The release of IL-1β additionally required activation of the NLRP3 inflammasome. In human monocytes infected with live S. aureus , IsdB was necessary for maximal IL-1β release. Our studies identify S. aureus IsdB as a novel pathogen-associated molecular pattern that triggers innate immune defense mechanisms. IMPORTANCE The prevalence of multidrug-resistant Staphylococcus aureus is of global concern, and vaccines are urgently needed. The iron-regulated surface determinant protein B (IsdB) of S. aureus was investigated as a vaccine candidate because of its essential role in bacterial iron acquisition but failed in clinical trials despite strong immunogenicity. Here, we reveal an unexpected second function for IsdB in pathogen-host interaction: the bacterial fitness factor IsdB triggers a strong inflammatory response in innate immune cells via Toll-like receptor 4 and the inflammasome, thus acting as a novel pathogen-associated molecular pattern of S. aureus . Our discovery contributes to a better understanding of how S. aureus modulates the immune response, which is necessary for vaccine development against the sophisticated pathogen.
Year:
2024
Collaborators (18)
Ralf Ewert
University Medicine Greifswald
Markus M. Lerch
University Medicine Greifswald
Frank Ulrich Weiss
Head of Laboratory
University Medicine Greifswald
Janosch Schoon
University Medicine Greifswald
Jens Fielitz
Univ.-Prof. Dr. med.
University Medicine Greifswald
Stefan Gross
-
Hans J Grabe
Senior Psychiatrist & Researcher, Prof. Dr. med.
University Medicine Greifswald
Apoena de Aguiar Ribeiro
Associate Professor
University of North Carolina
Silva Holtfreter
University Medicine Greifswald
Philippe Gevaert
Professor
Ghent University
Stephan Michalik
-
Thomas Thurnheer
-
Murty N. Darisipudi
University Medicine Greifswald
Ali Aghdassi
University Medicine Greifswald
Uwe Völker
Porf, Head of Department
Universitätsmedizin Greifswald
Corinna Bergelt
University Medical Center Hamburg-Eppendorf
Lena Ulm
-
Matthias Nauck
University Medicine Greifswald

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