Pathologic up-regulation of TNFSF15–TNFRSF25 axis sustains endothelial dysfunction in unprovoked venous thromboembolism

Author:

Della Bella Silvia12,Calcaterra Francesca12,Bacci Monica3,Carenza Claudia12,Pandolfo Chiara1ORCID,Ferrazzi Paola3,Uva Paolo4ORCID,Pagani Massimiliano25,Lodigiani Corrado3ORCID,Mavilio Domenico12ORCID

Affiliation:

1. Unit of Clinical and Experimental Immunology, Humanitas Clinical and Research Center—IRCCS, via Manzoni 113, Rozzano, Milan, Italy

2. Department of Medical Biotechnologies and Translational Medicine, University of Milan, Milan, Italy

3. Thrombosis and Haemorragic Diseases Center, Humanitas Research Hospital, Rozzano, Milan, Italy

4. Center for Advanced Studies, Research and Development in Sardinia (CRS4), Science and Technology Park Polaris, Pula, Cagliari, Italy

5. INGM-National Institute of Molecular Genetics “Romeo ed Enrica Invernizzi” Milan, Milan, Italy

Abstract

Abstract Aims The pathogenetic mechanisms underlying unprovoked venous thromboembolism (uVTE) are largely unknown. In this study, we investigated the molecular mechanisms involved in uVTE pathogenesis by using ex vivo expanded endothelial colony-forming cells (ECFCs), which represent a valuable non-invasive tool for the assessment of endothelial function. Methods and results We isolated and expanded ECFCs from the peripheral blood of uVTE patients and observed that these cells underwent earlier senescence and showed lower growth rate compared with ECFCs obtained from healthy donors. Through microarray expression profiling, we demonstrated that 2905 genes were differentially expressed between patients and controls. Among them, the anti-angiogenic cytokine TNF superfamily member 15 (TNFSF15) and its death-receptor TNFRSF25 were up-regulated in uVTE ECFCs, and this finding was validated by RT-qPCR. TNFSF15 up-regulation was confirmed at the protein level in ECFC supernatants, and the in vivo relevance of these findings was further corroborated by demonstrating that also the plasmatic levels of TNFSF15 are increased in uVTE patients. After proving that exogenous TNFSF15 exerts pro-apoptotic and anti-proliferative activity on control ECFCs, we demonstrated through blocking experiments that TNFSF15 up-regulation contributes to impaired survival and proliferation of uVTE ECFCs. Conclusion By providing evidence that TNFSF15 impairs ECFC functions crucial to endothelial repair, and that uVTE patients have increased TNFSF15 levels both ex vivo and in vivo, the results of this study suggest that pathologic up-regulation of TNFSF15–TNFRSF25 axis may contribute to uVTE pathogenesis, and may represent the target for novel therapeutic strategies aimed at preventing recurrences in uVTE patients.

Funder

Fondazione Cariplo

per la Ricerca Biomedica

Associazione Italiana per la Ricerca sul Cancro

Humanitas Research Hospital

Department of Medical Biotechnologies and Translational Medicine, University of Milan

Guglielmina Lucatello e Gino Mazzega

Italian Foundation for Cancer Research

Associazione per la Lotta alla Trombosi e alle malattie cardiovascolari

Doctorate School of Experimental Medicine and Medical Biotechnologies

University of Milan

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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