The Proteinase Activated Receptor-2 mediates Protective Immunity in Early Experimental Leishmaniasis

Resistance to Leishmania (L.) major depends on the development of a L. major-specific Th1 response, while Th2 differentiation results in susceptibility. We previously showed that the early microenvironment of infected skin delivers important signals for T cell differentiation. We found increased expression levels of coagulation factor X (F10 and FX for protein, respectively) 16 h after infection in the skin of resistant as compared to susceptible mice. Activated FX is a ligand of proteinase-activated receptor-2 (PAR2), a modulator of inflammatory responses.To assess the role of PAR2, we analyzed the course of L. major infection in PAR2-deficient (PAR2−/−) mice on a resistant C57BL/6 background. PAR2−/− mice developed significantly larger lesions and harboured more parasites in footpads and draining lymph nodes compared to wild-type mice. In addition, their antigen-specific T cell response in was shifted towards Th2.Conversely, early treatment of susceptible BALB/c mice with a PAR2-agonist reduced parasite loads in footpads and spleens and shifted the T cell response towards Th1. This was accompanied by significantly higher expression of the Th1-promoting cytokines IL-6, IL-12, and TNF-α in the infected skin. We conclude that PAR2 activation favours Th1-differentiation and resistance in experimental leishmaniasis due to an altered initial microenvironment with increased expression of Th1-promoting cytokines in the infected skin.

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Publication Details

Journal
Emerging Microbes & Infections
Published
2026-09-04
DOI
https://doi.org/10.1080/22221751.2026.2725993
Primary Topic
Blood Coagulation and Thrombosis Mechanisms
Type
article
Field-Weighted Citation Impact
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article

The Proteinase Activated Receptor-2 mediates Protective Immunity in Early Experimental Leishmaniasis

Yvonne Kusche, Kirsten Roebrock, Linda Nemetschke, Lena Fischer‐Riepe et al.
Emerging Microbes & Infections
Blood Coagulation and Thrombosis Mechanisms
article

The Proteinase Activated Receptor-2 mediates Protective Immunity in Early Experimental Leishmaniasis

Yvonne Kusche, Kirsten Roebrock, Linda Nemetschke, Lena Fischer‐Riepe, Eva Nattkemper, Johannes Roth, Kerstin Vischedyk, Niels de Munck, Jan Ehrchen, Martin Steinhoff, Cord Sunderkötter
article en

Abstract

Resistance to Leishmania (L.) major depends on the development of a L. major-specific Th1 response, while Th2 differentiation results in susceptibility. We previously showed that the early microenvironment of infected skin delivers important signals for T cell differentiation. We found increased expression levels of coagulation factor X (F10 and FX for protein, respectively) 16 h after infection in the skin of resistant as compared to susceptible mice. Activated FX is a ligand of proteinase-activated receptor-2 (PAR2), a modulator of inflammatory responses.To assess the role of PAR2, we analyzed the course of L. major infection in PAR2-deficient (PAR2−/−) mice on a resistant C57BL/6 background. PAR2−/− mice developed significantly larger lesions and harboured more parasites in footpads and draining lymph nodes compared to wild-type mice. In addition, their antigen-specific T cell response in was shifted towards Th2.Conversely, early treatment of susceptible BALB/c mice with a PAR2-agonist reduced parasite loads in footpads and spleens and shifted the T cell response towards Th1. This was accompanied by significantly higher expression of the Th1-promoting cytokines IL-6, IL-12, and TNF-α in the infected skin. We conclude that PAR2 activation favours Th1-differentiation and resistance in experimental leishmaniasis due to an altered initial microenvironment with increased expression of Th1-promoting cytokines in the infected skin.

Emerging Microbes & Infections
Cornell University (US), University of Münster (DE), MSB Medical School Berlin (DE), Institute of Immunology (HR), Hamad bin Khalifa University (QA), University Hospital in Halle (DE), Weill Cornell Medical College in Qatar (QA), Hamad Medical Corporation (QA)
Deutsche Forschungsgemeinschaft
Openalex Percentile: Top 10%
Blood Coagulation and Thrombosis Mechanisms
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