Dynamic responses to rejection in the transplanted human heart revealed through spatial transcriptomics

人的心脏 转录组 心脏移植 心脏移植 计算机科学 计算生物学 生物 移植 心脏病学 医学 内科学 基因表达 遗传学 基因
作者
Kaushik Amancherla,Angela M. Taravella Oill,Xavier Bledsoe,Arianna L. Williams-Katek,Nelson Chow,Shilin Zhao,Quanhu Sheng,David W. Bearl,Robert Hoffman,Jonathan N. Menachem,Hasan K. Siddiqi,D. Marshall Brinkley,Evan D. Mee,Niran Hadad,Vineet Agrawal,Jeffrey Schmeckpepper,Aniket S. Rali,Stacy Tsai,Eric Farber‐Eger,Quinn S. Wells
出处
期刊: [Cold Spring Harbor Laboratory]
被引量:7
标识
DOI:10.1101/2025.02.28.640852
摘要

ABSTRACT Allograft rejection following solid-organ transplantation is a major cause of graft dysfunction and mortality. Current approaches to diagnosis rely on histology, which exhibits wide diagnostic variability and lacks access to molecular phenotypes that may stratify therapeutic response. Here, we leverage image-based spatial transcriptomics at sub-cellular resolution in longitudinal human cardiac biopsies to characterize transcriptional heterogeneity in 62 adult and pediatric heart transplant (HT) recipients during and following histologically-diagnosed rejection. Across 28 cell types, we identified significant differences in abundance in CD4 + and CD8 + T cells, fibroblasts, and endothelial cells across different biological classes of rejection (cellular, mixed, antibody-mediated). We observed a broad overlap in cellular transcriptional states across histologic rejection severity and biological class and significant heterogeneity within rejection severity grades that would qualify for immunomodulatory treatment. Individuals who had resolved rejection after therapy had a distinct transcriptomic profile relative to those with persistent rejection, including 216 genes across 6 cell types along pathways of inflammation, IL6-JAK-STAT3 signaling, IFNα/IFNγ response, and TNFα signaling. Spatial transcriptomics also identified genes linked to long-term prognostic outcomes post-HT. These results underscore importance of subtyping immunologic states during rejection to stratify immune-cardiac interactions following HT that are therapeutically relevant to short- and long-term rejection-related outcomes.
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