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Biology subjects

Guth, C.

Publications and source records attributed to Guth, C..

2 recordsLinked to original sources

The neuroendocrine peptide catestatin promotes clearance of cutaneous Staphylococcus aureus through mast cell Mrgpr activation

Methicillin-resistant Staphylococcus aureus (MRSA) is a leading cause of cutaneous infections, underscoring the need for alternative therapeutic strategies. Catestatin, a neuroendocrine antimicrobial peptide produced by neurons and epithelial cells, has been implicated in skin defense against pathogens such as MRSA, though its mechanisms remain unclear. Here, we show that catestatin expression is upregulated in MRSA-infected skin wounds and that topical catestatin application significantly reduces MRSA burden in infected murine cutaneous wounds. This effect is dependent on the mast cell-specific G protein-coupled receptor Mrgprb2, the murine ortholog of human MRGPRX2. Notably, catestatin treatment leads to Mrgprb2-dependent suppression of inflammatory cytokine production and leukocyte infiltration, alongside upregulation of the antimicrobial peptide Defb14. In human mast cells, catestatin induces MRGPRX2-dependent degranulation, histamine release, prostaglandin D2 production, and cytokine expression. Pharmacological inhibition and western blot analysis reveal that catestatin activates multiple downstream G protein-dependent signaling pathways in an MRGPRX2-dependent manner. These findings demonstrate that catestatin promotes bacterial clearance by activating mast cells through Mrgprb2, thereby enhancing antimicrobial peptide production. Our study positions catestatin as a promising mast cell-targeting immunotherapeutic candidate for treating antibiotic-resistant skin infections.

immunology↗

Eosinophils are an endogenous source of IL-4 during filarial infections and contribute to the development of an optimal T helper 2 response

Interleukin-4 (IL-4) is a central regulator of type 2 immunity, crucial for the defense against multicellular parasites like helminths. This study focuses on its roles and cellular sources during Litomosoides sigmodontis infection, a model for human filarial infections. Our research uncovers eosinophils as a major source of IL-4, especially during the early phase of filarial infection. Using dblGATA mice lacking eosinophil and subsequently eosinophil-derived IL-4, we reveal their profound impact on the Th2 response. Lack of eosinophils impact Th2 polarization and resulted in impaired type 2 cytokine production. Surprisingly, eosinophil deficiency had no impact on macrophage polarization and proliferation as well as on antibody production. These findings shed new light on IL-4 dynamics and eosinophil effector functions in filarial infections. AUTHOR SUMMARYFilarial nematodes can cause severe diseases like onchocerciasis and lymphatic filariasis, posing a significant public health challenge in tropical regions, putting over a billion people at risk. The WHO categorizes these infections as neglected tropical diseases and aims to eliminate onchocerciasis transmission and lymphatic filariasis as a public health issue by 2030. To achieve this goal, we need a better understanding of the protective immune responses involved. Eosinophils have been identified as a key immune cell type in the well-established murine model for filarial infection, Litomosoides sigmodontis. However, their precise roles and interactions with other components of the type 2 immune response remain unclear. Our study reveals that eosinophils play a crucial role as a primary source of interleukin-4, the central cytokine in type 2 immunity. By using dblGATA mice, we found that the absence of eosinophils resulted in a reduced T helper 2 response but did not impact the alternative activation of macrophages or antibody production. In summary, our research uncovers an underappreciated function of eosinophils and their significant influence on type 2 immune responses.

immunology↗