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Published on: September 22, 2023
Hepatic CEACAM1 expression indicates donor liver quality and prevents early transplantation injury
Kojiro Nakamura1, Shoichi Kageyama1, Fady M Kaldas1
1Department of Surgery, Division of Liver and Pancreas Transplantation, Dumont-UCLA Liver Transplant Center.
Abstract:
Although CEACAM1 (CC1) glycoprotein resides at the interface of immune liver injury and metabolic homeostasis, its role in orthotopic liver transplantation (OLT) remains elusive. We aimed to determine whether/how CEACAM1 signaling may affect hepatic ischemia-reperfusion injury (IRI) and OLT outcomes. In the mouse, donor liver CC1 null mutation augmented IRI-OLT (CC1-KO→WT) by enhancing ROS expression and HMGB1 translocation during cold storage, data supported by in vitro studies where hepatic flush from CC1-deficient livers enhanced macrophage activation in bone marrow-derived macrophage cultures. Although hepatic CC1 deficiency augmented cold stress-triggered ASK1/p-p38 upregulation, adjunctive ASK1 inhibition alleviated IRI and improved OLT survival by suppressing p-p38 upregulation, ROS induction, and HMGB1 translocation (CC1-KO→WT), whereas ASK1 silencing (siRNA) promoted cytoprotection in cold-stressed and damage-prone CC1-deficient hepatocyte cultures. Consistent with mouse data, CEACAM1 expression in 60 human donor liver biopsies correlated negatively with activation of the ASK1/p-p38 axis, whereas low CC1 levels associated with increased ROS and HMGB1 translocation, enhanced innate and adaptive immune responses, and inferior early OLT function. Notably, reduced donor liver CEACAM1 expression was identified as one of the independent predictors for early allograft dysfunction (EAD) in human OLT patients. Thus, as a checkpoint regulator of IR stress and sterile inflammation, CEACAM1 may be considered as a denominator of donor hepatic tissue quality, and a target for therapeutic modulation in OLT recipients.
Insights
Carcinoembryonic antigen cell adhesion molecule 1 (CEACAM1) protects donor livers from ischemia-reperfusion injury (IRI) during transplantation. Low CEACAM1 levels predict poor outcomes and early allograft dysfunction in liver transplant recipients.
Area of Science:
- Immunology
- Transplantation Biology
- Hepatology
Background:
- CEACAM1 (CC1) plays a role in immune liver injury and metabolic homeostasis.
- The function of CEACAM1 in orthotopic liver transplantation (OLT) and hepatic ischemia-reperfusion injury (IRI) is not well understood.
Purpose of the Study:
- To investigate the role of CEACAM1 signaling in hepatic IRI and OLT outcomes.
- To determine if CEACAM1 can serve as a predictor of donor liver quality and a therapeutic target in OLT.
Main Methods:
- Utilized CEACAM1 knockout (CC1-KO) mouse models for liver transplantation (OLT) experiments.
- Assessed reactive oxygen species (ROS) expression, HMGB1 translocation, and macrophage activation.
- Investigated the ASK1/p-38 signaling pathway and its modulation by CEACAM1 deficiency and ASK1 inhibition.
- Analyzed human donor liver biopsies (n=60) for CEACAM1 expression and correlation with OLT outcomes.
Main Results:
- CEACAM1 deficiency in donor livers exacerbated IRI and OLT complications by increasing ROS and HMGB1.
- ASK1 inhibition ameliorated IRI and improved OLT survival in CC1-deficient recipients.
- Low CEACAM1 expression in human donor livers correlated with increased IRI markers, immune responses, and inferior early graft function.
- Reduced donor CEACAM1 was an independent predictor of early allograft dysfunction (EAD) in human OLT.
Conclusions:
- CEACAM1 acts as a checkpoint regulator of cold storage-induced stress and sterile inflammation in donor livers.
- CEACAM1 is a key determinant of donor hepatic tissue quality for OLT.
- Targeting CEACAM1 signaling presents a potential therapeutic strategy to improve OLT outcomes.
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