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Macrophages enhance contractile force in iPSC-derived human engineered cardiac tissue

GSE266797 Homo sapiens Expression profiling by high throughput sequencing 6 samples Submitted 2024/05/10 Platform GPL24676
Summary
Resident cardiac macrophages are critical mediators of cardiac function. Despite their known importance to cardiac electrophysiology and tissue maintenance, there are currently no stem-cell derived models of human engineered cardiac tissues (hECT) that include resident macrophages. In this study, we made an iPSC-derived hECT model with a resident population of macrophages (iM0) to better recapitulate the native myocardium, and characterized their impact on tissue function. Macrophage retention within the hECTs was confirmed via immunofluorescence after 28 days of cultivation. Inclusion of iM0 significantly impacted hECT function, increasing contractile force production. A potential mechanism underlying these changes was revealed by interrogation of calcium signaling, which demonstrated modulation of β-adrenergic signaling in +iM0 hECTs. Collectively, these findings demonstrate that macrophages significantly enhance cardiac function in iPSC-derived hECT models, emphasizing the need to further explore their contributions not only in healthy hECT models, but also in the contexts of disease and injury.
Published in
Macrophages enhance contractile force in iPSC-derived human engineered cardiac tissue
Lock RI, Graney PL, Tavakol DN et al. · Cell reports 2024 · PMID 38824644 · doi:10.1016/j.celrep.2024.114302
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Also filed as BioProject PRJNA1108328 and SRA study SRP505985. Searching any of these in the dataset finder brings you back here.

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