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Proteomic profiling of plasma extracellular vesicles reveals a therapeutically targetable liver-heart axis in cardiac transplantation
Shiyu Dai, Wei Zhou, Fangyu Chen, Huanyu Zhang, Zhenchun Ji, Xuejing Zong, Wanruo Zhang, Jie Hu, Shumin Jiang, Fei Wang, Zhenya Shen
Shiyu Dai, Wei Zhou, Fangyu Chen, Huanyu Zhang, Zhenchun Ji, Xuejing Zong, Wanruo Zhang, Jie Hu, Shumin Jiang, Fei Wang, Zhenya Shen
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Research Article Cardiology Immunology

Proteomic profiling of plasma extracellular vesicles reveals a therapeutically targetable liver-heart axis in cardiac transplantation

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Abstract

Extracellular vesicle–mediated interorgan communication represents a promising frontier in transplant immunology; however, its role in cardiac allograft rejection remains poorly characterized. We performed proteomic profiling of plasma-derived extracellular vesicles in a rat heterotopic heart transplantation model and identified a distinct liver-predominant protein signature during acute rejection, with antithrombin III (ATIII) emerging as a top candidate. Functional validation revealed that pharmacological extracellular vesicle inhibition intensified systemic and intragraft inflammation, whereas adeno-associated virus–mediated silencing of hepatic ATIII directly accelerated allograft rejection. Conversely, adeno-associated virus–mediated hepatocyte-specific ATIII overexpression attenuated rejection pathology, reduced immune cell recruitment, and markedly prolonged median graft survival. This protective effect was achieved without evidence of coagulopathic complications, indicating an immunomodulatory mechanism beyond ATIII’s canonical anticoagulant function. Mechanistically, ATIII overexpression was associated with upregulation of heme oxygenase-1 (HO-1) in the liver and suppression of proinflammatory cytokine expression in the graft. These findings highlight hepatocyte-derived extracellular vesicles as important mediators of a liver-heart signaling axis in transplant rejection and further implicate the protein ATIII as a contributor to this axis. Our study reveals a therapeutically targetable liver-heart signaling axis in transplant rejection, whereby enhancing liver-derived ATIII or its downstream pathways (such as HO-1) could attenuate acute cardiac allograft rejection.

Authors

Shiyu Dai, Wei Zhou, Fangyu Chen, Huanyu Zhang, Zhenchun Ji, Xuejing Zong, Wanruo Zhang, Jie Hu, Shumin Jiang, Fei Wang, Zhenya Shen

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Figure 2

Proteomic profiling of plasma-derived EVs in cardiac allograft rejection.

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Proteomic profiling of plasma-derived EVs in cardiac allograft rejection...
(A) Venn diagram comparing proteins identified in the EV samples versus curated EV proteins in the Vesiclepedia database. (B) Volcano plots of differentially expressed proteins (DEPs) comparing the Iso group with the sham control. (C) Volcano plots of DEPs comparing the Allo group with the sham control. DEPs were identified via the limma package (|log2FC| > 1, P < 0.05). (D) Venn analysis of immune rejection-associated proteins. The boxed region represents 192 acute rejection-related proteins selected for functional annotation. (E–H) Functional enrichment analysis. Gene Ontology (GO) terms for biological processes (E), molecular functions (F), cellular components (G), and top-enriched Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways (H). Proteomic analysis was performed on EVs isolated from 3 rats per group (n = 3 biological replicates). Enrichment P values were calculated by hypergeometric test and Benjamini-Hochberg–adjusted FDR < 0.05.

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