Disulfide-HMGB1 signals through TLR4 and TLR9 to induce inflammatory macrophages capable of innate-adaptive crosstalk in human liver transplantation

HMGB1 TLR4型 医学 TLR9型 免疫学 先天免疫系统 再灌注损伤 移植 获得性免疫系统 Toll样受体 炎症 免疫系统 抗原 生物 缺血 内科学 生物化学 基因表达 DNA甲基化 基因
作者
Allyson Q. Terry,Hidenobu Kojima,Rebecca A. Sosa,Fady M. Kaldas,Jackson L. Chin,Ying Zheng,Bita V. Naini,Daisuke Noguchi,Jessica Nevarez‐Mejia,Yiping Jin,Ronald W. Busuttil,Aaron S. Meyer,David W. Gjertson,Jerzy W. Kupiec‐Weglinski,Elaine F. Reed
出处
期刊:American Journal of Transplantation [Elsevier BV]
卷期号:23 (12): 1858-1871
标识
DOI:10.1016/j.ajt.2023.08.002
摘要

Ischemia-reperfusion injury (IRI) during orthotopic liver transplantation (OLT) contributes to graft rejection and poor clinical outcomes. The disulfide form of high mobility group box 1 (diS-HMGB1), an intracellular protein released during OLT-IRI, induces pro-inflammatory macrophages. How diS-HMGB1 differentiates human monocytes into macrophages capable of activating adaptive immunity remains unknown. We investigated if diS-HMGB1 binds toll-like receptor (TLR) 4 and TLR9 to differentiate monocytes into pro-inflammatory macrophages that activate adaptive immunity and promote graft injury and dysfunction. Assessment of 106 clinical liver tissue and longitudinal blood samples revealed that OLT recipients were more likely to experience IRI and graft dysfunction with increased diS-HMGB1 released during reperfusion. Increased diS-HMGB1 concentration also correlated with TLR4/TLR9 activation, polarization of monocytes into pro-inflammatory macrophages, and production of anti-donor antibodies. In vitro, healthy volunteer monocytes stimulated with purified diS-HMGB1 had increased inflammatory cytokine secretion, antigen presentation machinery, and reactive oxygen species production. TLR4 inhibition primarily impeded cytokine/chemokine and costimulatory molecule programs, whereas TLR9 inhibition decreased HLA-DR and reactive oxygen species production. diS-HMGB1-polarized macrophages also showed increased capacity to present antigens and activate T memory cells. In murine OLT, diS-HMGB1 treatment potentiated ischemia-reperfusion-mediated hepatocellular injury, accompanied by increased serum alanine transaminase levels. This translational study identifies the diS-HMGB1/TLR4/TLR9 axis as potential therapeutic targets in OLT-IRI recipients.

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