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Platelet-derived S100A9 contributes to endotheliopathy in alcohol-associated hepatitis
Fallyn Kirlin, Nima Fattahi, Rolando Garcia-Milian, Florine Collin, Weiwei Wang, Yohan Kim, Fabrice Lucien, Zhaoli Sun, TuKiet T. Lam, John Hwa, Yasuko Iwakiri, Matthew J. McConnell
Fallyn Kirlin, Nima Fattahi, Rolando Garcia-Milian, Florine Collin, Weiwei Wang, Yohan Kim, Fabrice Lucien, Zhaoli Sun, TuKiet T. Lam, John Hwa, Yasuko Iwakiri, Matthew J. McConnell
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Research Article Hematology Hepatology

Platelet-derived S100A9 contributes to endotheliopathy in alcohol-associated hepatitis

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Abstract

Alcohol-associated liver disease (ALD) is a growing global health concern, with alcohol-associated hepatitis (AH) leading to the highest morbidity and mortality. Available therapies are limited and often inadequate. Platelets contribute in a variety of ways to liver disease pathogenesis, but their role in AH remains largely unexplored. In this study, we addressed the hypothesis that platelets contribute to pathological inflammation in AH. Using patient samples and a multiomics approach, we found that platelets undergo proinflammatory transcriptomic and proteomic changes in AH, with 2 alarmins, S100A8 and S100A9, being among the top upregulated genes/proteins. Additionally, the abundance of platelet-derived microparticles containing S100A8 and S100A9 in AH patient plasma was increased and correlated with disease severity (assessed by model for end-stage liver disease sodium [MELD-Na]) and endotheliopathy (assessed by ICAM1, CXCL8, and vWF). We mechanistically linked S100A9 with endotheliopathy via crosstalk between primary human liver sinusoidal endothelial cells and primary human monocytes. We also demonstrated that IL-6 upregulates S100A9 in megakaryocytic cells in a JAK/STAT-dependent manner, modeling changes occurring in the bone marrow in patients with AH. Our studies establish proinflammatory platelets as important contributors to AH pathology. Moreover, antiplatelet agents — or, more specifically, S100A9 targeted drugs — are potential therapeutic strategies in AH.

Authors

Fallyn Kirlin, Nima Fattahi, Rolando Garcia-Milian, Florine Collin, Weiwei Wang, Yohan Kim, Fabrice Lucien, Zhaoli Sun, TuKiet T. Lam, John Hwa, Yasuko Iwakiri, Matthew J. McConnell

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Figure 5

S100A9 is upregulated via IL-6 and JAK/STAT signaling in human megakaryocytic cells.

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S100A9 is upregulated via IL-6 and JAK/STAT signaling in human megakary...
(A) Ingenuity Pathway Analysis was done to predict potential upstream regulators of S100A9 in our RNA-seq data from alcohol-associated hepatitis (AH) patient platelets. (B) qPCR for expression of CD61, a megakaryocyte marker, to assess K562 cell differentiation to a megakaryocyte phenotype with phorbol 12-myristate 13-acetate (PMA) (80 nM) compared with control. Representative image and geometric means of CD61 expression in K562 cells differentiated with PMA compared with control measured via flow cytometry. (C) qPCR for S100A9 and IL-6 downstream signals in K562 cells treated with PMA (80 nM) for 18 hours with or without IL-6 (20 ng/mL) for 6 hours. (D) qPCR for S100A9 and IL-6 downstream signals in K562 cells differentiated with PMA (80 nM) for 18 hours, pretreated with or without Ruxolitinib (2 μM) for 20 minutes followed by 6 hours, treated with or without IL-6 (20 ng/mL) for 6 hours. Data are a compilation of 3 experiments. One-way ANOVA with Tukey’s test for multiple groups, or 2-tailed unpaired t test for 2 groups was used. **P < 0.01, ***P < 0.001, ****P < 0.0001. CD61, integrin B3; PMA, phorbol 12-myristate 13-acetate.

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