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June 16, 2014Journal of Clinical Investigation636 citationsOpen Access

Resident fibroblast lineages mediate pressure overload–induced cardiac fibrosis

TMThomas Moore‐MorrisNGNuno Guimarães‐CamboaIBIndroneal Banerjee

Structured PICO

What is the cellular origin of cardiac fibroblasts in pressure overload-induced cardiac fibrosis?

P
Population
Murine models (multiple independent Cre lines and a collagen1a1-GFP fusion reporter)
I
Intervention
Pressure overload-induced injury
O
Outcome
Cellular origin of cardiac fibroblasts following pressure overloadsurrogate

Cardiac fibrosis following pressure overload is mediated by the proliferation of resident fibroblast lineages rather than endothelial-to-mesenchymal transition or circulating progenitors, suggesting therapeutic strategies should target these endogenous populations.

Abstract

Activation and accumulation of cardiac fibroblasts, which result in excessive extracellular matrix deposition and consequent mechanical stiffness, myocyte uncoupling, and ischemia, are key contributors to heart failure progression. Recently, endothelial-to-mesenchymal transition (EndoMT) and the recruitment of circulating hematopoietic progenitors to the heart have been reported to generate substantial numbers of cardiac fibroblasts in response to pressure overload-induced injury; therefore, these processes are widely considered to be promising therapeutic targets. Here, using multiple independent murine Cre lines and a collagen1a1-GFP fusion reporter, which specifically labels fibroblasts, we found that following pressure overload, fibroblasts were not derived from hematopoietic cells, EndoMT, or epicardial epithelial-to-mesenchymal transition. Instead, pressure overload promoted comparable proliferation and activation of two resident fibroblast lineages, including a previously described epicardial population and a population of endothelial origin. Together, these data present a paradigm for the origins of cardiac fibroblasts during development and in fibrosis. Furthermore, these data indicate that therapeutic strategies for reducing pathogenic cardiac fibroblasts should shift from targeting presumptive EndoMT or infiltrating hematopoietically derived fibroblasts, toward common pathways upregulated in two endogenous fibroblast populations.

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Cite This Study

Moore‐Morris et al. (2014) studied this question.

synapsesocial.com/papers/69d5721c75589c71d767e4e7https://doi.org/10.1172/jci74783
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