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September 25, 2020Circulation275 citationsOpen Access

Single-Cell RNA Sequencing Analysis Reveals a Crucial Role for CTHRC1 (Collagen Triple Helix Repeat Containing 1) Cardiac Fibroblasts After Myocardial Infarction

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ARAdrián Ruiz‐VillalbaJRJuan P. RomeroSHSilvia C. Hernández

Key Result

CTHRC1-expressing cardiac fibroblasts emerge after myocardial infarction, localize to the scar, and are crucial for preventing ventricular rupture.

Structured PICO

P
Population
Mice (Collagen1α1-GFP positive), swine model of myocardial infarction, and heart tissue from patients with myocardial infarction and dilated cardiomyopathy
I
Intervention
Characterization of cardiac fibroblasts after myocardial infarction using single-cell and bulk RNA sequencing, ATAC-seq, and functional assays; evaluation of CTHRC1 absence
O
Outcome
Characterization of cardiac fibroblast heterogeneity during ventricular remodeling and underlying mechanisms regulating their functionsurrogate

CTHRC1 identifies a unique subpopulation of cardiac fibroblasts crucial for the healing scar process after myocardial infarction, preventing ventricular rupture.

Abstract

BACKGROUND: Cardiac fibroblasts (CFs) have a central role in the ventricular remodeling process associated with different types of fibrosis. Recent studies have shown that fibroblasts do not respond homogeneously to heart injury. Because of the limited set of bona fide fibroblast markers, a proper characterization of fibroblast population heterogeneity in response to cardiac damage is lacking. The purpose of this study was to define CF heterogeneity during ventricular remodeling and the underlying mechanisms that regulate CF function. METHODS: Collagen1α1-GFP (green fluorescent protein)-positive CFs were characterized after myocardial infarction (MI) by single-cell and bulk RNA sequencing, assay for transposase-accessible chromatin sequencing, and functional assays. Swine and patient samples were studied using bulk RNA sequencing. RESULTS: We identified and characterized a unique CF subpopulation that emerges after MI in mice. These activated fibroblasts exhibit a clear profibrotic signature, express high levels of Cthrc1 (collagen triple helix repeat containing 1), and localize into the scar. Noncanonical transforming growth factor-β signaling and different transcription factors including SOX9 are important regulators mediating their response to cardiac injury. Absence of CTHRC1 results in pronounced lethality attributable to ventricular rupture. A population of CFs with a similar transcriptome was identified in a swine model of MI and in heart tissue from patients with MI and dilated cardiomyopathy. CONCLUSIONS: as a novel regulator of the healing scar process and a target for future translational studies.

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Cite This Study

Ruiz‐Villalba et al. (2020) studied Myocardial Infarction. CTHRC1-expressing cardiac fibroblasts emerge after myocardial infarction, localize to the scar, and are crucial for preventing ventricular rupture.

synapsesocial.com/papers/6a07b4b744ff8ad339f69c03https://doi.org/10.1161/circulationaha.119.044557
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Also Consider

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  1. 1Tomo-Seq Identifies SOX9 as a Key Regulator of Cardiac Fibrosis During Ischemic Injury2017 · 122 citations
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