Maciej Siedlar

Kierownik Katedry, Kierownik Zakładu/profesor medycyny

Uniwersytet Jagiellonski Collegium Medicum
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Poland

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About

Dr. Maciej Siedlar is a Professor of Medicine and Head of the Department at Uniwersytet Jagielloński Collegium Medicum, Poland. His research encompasses a range of areas including immunotherapy, vascular biology, and autoimmune disorders, with recent publications examining biomarkers in systemic lupus erythematosus and spondyloarthritis. Additionally, he explores the implications of extracellular vesicles in colorectal cancer and the effects of the Krakow smog on inflammatory conditions.

Articles (19)

TNF-α protects from exacerbated myocarditis and cardiac death by suppressing expansion of activated heart-reactive CD4+ T cells

Aims Tumour necrosis factor α (TNF-α) represents a classical pro-inflammatory cytokine, and its increased levels positively correlate with the severity of many cardiovascular diseases. Surprisingly, some heart failure patients receiving high doses of anti-TNF-α antibodies showed serious health worsening. This work aimed to examine the role of TNF-α signalling on the development and progression of myocarditis and heart-specific autoimmunity. Methods and results Mice with genetic deletion of TNF-α (Tnf+/− and Tnf−/−) and littermate controls (Tnf+/+) were used to study myocarditis in the inducible and the transgenic T cell receptor (TCRM) models. Tnf+/− and Tnf−/− mice immunized with α-myosin heavy chain peptide (αMyHC) showed reduced myocarditis incidence, but the susceptible animals developed extensive inflammation in the heart. In the TCRM model, defective TNF-α production was associated with increased mortality at a young age due to cardiomyopathy and cardiac fibrosis. We could confirm that TNF-α as well as the secretome of antigen-activated heart-reactive effector CD4+ T (Teff) cells effectively activated the adhesive properties of cardiac microvascular endothelial cells (cMVECs). Our data suggested that TNF-α produced by endothelial in addition to Teff cells promoted leucocyte adhesion to activated cMVECs. Analysis of CD4+ T lymphocytes from both models of myocarditis showed a strongly increased fraction of Teff cells in hearts, spleens, and in the blood of Tnf+/− and Tnf−/− mice. Indeed, antigen-activated Tnf−/− Teff cells showed prolonged long-term survival and TNF-α cytokine-induced cell death of heart-reactive Teff. Conclusion TNF-α signalling promotes myocarditis development by activating cardiac endothelial cells. However, in the case of established disease, TNF-α protects from exacerbating cardiac inflammation by inducing activation-induced cell death of heart-reactive Teff. These data might explain the lack of success of standard anti-TNF-α therapy in heart failure patients and open perspectives for T cell–targeted approaches.

Year:

2023

Collaborators (13)

Krzysztof Bryniarski

professor

Uniwersytet Jagiellonski Collegium Medicum

POLAND

Urs Eriksson

Head of Department

-

SWITZERLAND

Przemysław Błyszczuk

Jagiellonian University Medical College

POLAND

Lukasz Skalniak

Jagiellonian University

POLAND

Gabriela Kania

University Hospital of Zurich

SWITZERLAND

Antoni M Szczepanik

Jagiellonian University Medical College

POLAND

Michal Korostynski

Institute of Pharmacology

POLAND

Justyna Kocik-Krol

Jesuit Ignatianum University in Krakow

POLAND

Jarosław Czyż

Jagiellonian University

POLAND

Bernadeta Nowak

Jagiellonian University

POLAND

Agnieszka Jaźwa-Kusior

Jagiellonian University

POLAND

Joanna Pera

Prof.

Uniwersytet Jagiellonski Collegium Medicum

POLAND

Mariusz Korkosz

Head

-

POLAND
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