巨噬细胞
免疫系统
细胞生物学
生物
再生(生物学)
转录组
髓样
免疫学
免疫调节
刺激
下调和上调
M2巨噬细胞
原位杂交
受体
祖细胞
基因表达
炎症
干细胞
信号转导
免疫耐受
癌症研究
心肌梗塞
作者
Kaushik Chowdhury,Chia-Lin Huang,I-Ting Lin,Yu-Jen Hung,Khai Lone Lim,Hsing-Wei Liu,Ke-Hsuan Wei,Kai-Chien Yang,Yu‐Cheng Chang,Ben Shih-Lei Lai
标识
DOI:10.1073/pnas.2524705123
摘要
Myocardial infarction results in irreversible cardiomyocyte loss and fibrotic remodeling in adult mammals, whereas some vertebrates retain the ability to regenerate cardiac tissue. Comparative studies suggest that immune responses critically influence repair outcomes, yet the immune programs associated with regeneration remain incompletely defined. Here, we investigate how immune modulation accelerates cardiac repair in the nonregenerative medaka ( Oryzias latipes ). Using bulk and single-cell transcriptomics combined with functional assays, we show that stimulation with the Toll-like receptor 3 agonist poly I:C accelerates early immune activation and enhances macrophage-dependent debris clearance, associated with inflammatory resolution after cardiac injury. Single-cell analysis of enriched myeloid populations identifies regeneration-associated macrophage subsets characterized by phagocytic and immune-regulatory gene programs, including elevated expression of granulin-a ( grna ). Spatial analysis by hybridization chain reaction reveals increased numbers of grna -expressing macrophages in the injury border zone, coinciding with the regenerative niche of cardiomyocyte proliferation. Consistent with these findings, administration of recombinant Granulin A enhances cardiomyocyte proliferation and reduces scar burden in medaka hearts. Together, these findings indicate that immune modulation reshapes macrophage functional states during cardiac repair and link macrophage-associated granulin expression to regenerative outcomes, highlighting macrophage properties as a potential target for improving heart repair.
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