ReviewCell transplantation
An Immunological and Translational Framework for Interspecies Exogenic Liver Transplantation.
Review in Cell transplantation. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
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5 authors.
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Abstract
Liver transplantation remains the only definitive therapy for end stage liver disease, yet its application is fundamentally constrained by donor organ scarcity. Despite advances in organ preservation, marginal graft utilization, and xenotransplantation, a scalable source of functional liver tissue has not been realized. Blastocyst complementation has emerged as a novel strategy to generate exogenic organs, enabling the development of human derived hepatocytes within a xenogeneic host. The approach introduces a distinct biological paradigm where human parenchymal cells coexist with partial xenogeneic non-parenchymal compartments, resulting in compartmentalized immunogenicity. Efficient human-porcine blastocyst complementation remains an evolving technology, and functional exogenic humanized livers have yet to be demonstrated in large-animal transplant models. We examine exogenic liver transplantation through an immunology-first, clinical framework with emphasis on early graft injury driven predominantly by innate immune mechanisms at the vascular interface, including complement activation, macrophage mediated clearance, thrombocytopenia, and coagulation dysregulation as a major barrier observed in liver xenotransplantation. While adaptive immune responses may be attenuated due to reduced antigenic burden, residual xenogeneic endothelial and stromal compartments remain critical drivers of immune activation. We highlight exogenic hepatocyte transplantation as a potential translational bridge, enabling functional validation of chimerism-derived human hepatocytes
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