Involvement of ICOS and ICOSL System in Platelet Function 2327673

D Deepika Pantham (University of Eastern Piedmont) I Ian Stoppa (university of eastern piedmont) A Alessia Provera (university of eastern piedmont) F Foteini Christaki (university of eastern piedmont) M Marco Corazzari (university of eastern piedmont) S Salvatore Sutti (university of eastern piedmont) A Alessandra Bertoni (university of eastern piedmont) U Umberto Dianzani (university of eastern piedmont)

Abstract

Abstract Introduction Platelets are non-nucleated, megakaryocyte-derived cell fragments involved in hemostasis and thrombosis. Beyond this activity, they express T cell co-stimulatory/co-inhibitory molecules, including CD40L, CD86, and PD-L1. ICOS and ICOSL are T-cell co-stimulatory molecules that belong to the CD28 and B7 families, respectively. Recent studies show that the ICOS-ICOSL axis also influences non-immune processes including wound healing and endothelial cell function, but its role in platelet biology is poorly defined. This study aimed to evaluate the role of ICOS and ICOSL in platelets formation and function in mice. Methods ADP-induced platelet aggregation was assessed by light transmission aggregometry using platelet-rich plasma from wild-type (WT) mice and mice deficient for ICOS (ICOS⁻/⁻) or ICOSL (ICOSL⁻/⁻). Then, platelet activation induced by thrombin (0.05 and 0.1u/mL) was assessed by staining the activation markers CD62P and GPIIb/IIIa and flow cytometry analysis. Differentiation of primary bone marrow megakaryocytes was evaluated by DNA ploidy analysis by flow cytometry. Results Platelets from ICOS-/- or ICOSL-/- mice exhibited significantly impaired aggregation compared to that detected in WT mice. Thrombin fully activated wild-type platelets at both 0.1 and 0.05 U/ml, whereas platelets from ICOS-/- and ICOSL-/- mice were fully activated by 0.1 U/ml thrombin only. ICOSL-/- mice displayed a reduction in the 2N and 4N megakaryocyte populations compared to WT (p < 0.05), indicating impaired megakaryocyte maturation, whereas maturation was normal in ICOS-/- mice. Primary mouse megakaryocytes were found to express both ICOS and ICOSL in wild-type mice, as determined by confocal microscopy. Conclusion These findings show that ICOS and ICOSL are involved in platelet function and early megakaryocyte development. The mechanisms of this activity deserve further investigation. Funding Source this project is funded by AIRC -Italian Association for Cancer Research Topic Categories Immune Response Regulation: Molecular Mechanisms (IRM)

Article Details

Volume / Issue Vol. 215, Issue Supplement_1
Published August 01, 2026
ISSN 0022-1767
Publisher American Association of Immunologists

Authors (8)

D

Deepika Pantham

University of Eastern Piedmont

I

Ian Stoppa

university of eastern piedmont

A

Alessia Provera

university of eastern piedmont

F

Foteini Christaki

university of eastern piedmont

M

Marco Corazzari

university of eastern piedmont

S

Salvatore Sutti

university of eastern piedmont

A

Alessandra Bertoni

university of eastern piedmont

U

Umberto Dianzani

university of eastern piedmont