Distinct immunometabolic signatures in circulating immune cells define disease outcome in acute-on-chronic liver failure

免疫系统 医学 疾病 肝衰竭 免疫学 内科学
作者
Rita Feio‐Azevedo,Markus Boesch,Silvia Radenkovic,Lukas Van Melkebeke,Lena Smets,Marie Wallays,Bram Boeckx,Gino Philips,Janaíne Prata de Oliveira,Mohammad Ghorbani,Wim Laleman,Philippe Meersseman,Alexander Wilmer,David Cassiman,Hannah van Malenstein,Evangelos Triantafyllou,Cristina Sánchez,Ferrán Aguilar,Frederik Nevens,Jef Verbeek
出处
期刊:Hepatology [Wiley]
卷期号:81 (2): 509-522 被引量:13
标识
DOI:10.1097/hep.0000000000000907
摘要

Background and Aims: Acute-on-chronic liver failure (ACLF) is a complication of cirrhosis characterized by multiple organ failure and high short-term mortality. The pathophysiology of ACLF involves elevated systemic inflammation leading to organ failure, along with immune dysfunction that heightens susceptibility to bacterial infections. However, it is unclear how these aspects are associated with recovery and nonrecovery in ACLF. Approach and Results: Here, we mapped the single-cell transcriptome of circulating immune cells from patients with ACLF and acute decompensated (AD) cirrhosis and healthy individuals. We further interrogate how these findings, as well as immunometabolic and functional profiles, associate with ACLF-recovery (ACLF-R) or nonrecovery (ACLF-NR). Our analysis unveiled 2 distinct states of classical monocytes (cMons). Hereto, ACLF-R cMons were characterized by transcripts associated with immune and stress tolerance, including anti-inflammatory genes such as RETN and LGALS1 . Additional metabolomic and functional validation experiments implicated an elevated oxidative phosphorylation metabolic program as well as an impaired ACLF-R cMon functionality. Interestingly, we observed a common stress-induced tolerant state, oxidative phosphorylation program, and blunted activation among lymphoid populations in patients with ACLF-R. Conversely, ACLF-NR cMon featured elevated expression of inflammatory and stress response genes such as VIM , LGALS2 , and TREM1 , along with blunted metabolic activity and increased functionality. Conclusions: This study identifies distinct immunometabolic cellular states that contribute to disease outcomes in patients with ACLF. Our findings provide valuable insights into the pathogenesis of ACLF, shedding light on factors driving either recovery or nonrecovery phenotypes, which may be harnessed as potential therapeutic targets in the future.
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