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PGF2α signaling drives fibrotic remodeling and fibroblast population dynamics in mice
Luis R. Rodriguez, … , Garret A. FitzGerald, Michael F. Beers
Luis R. Rodriguez, … , Garret A. FitzGerald, Michael F. Beers
Published November 7, 2023
Citation Information: JCI Insight. 2023;8(24):e172977. https://doi.org/10.1172/jci.insight.172977.
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Research Article Pulmonology

PGF2α signaling drives fibrotic remodeling and fibroblast population dynamics in mice

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Abstract

Idiopathic pulmonary fibrosis (IPF) is a chronic parenchymal lung disease characterized by repetitive alveolar cell injury, myofibroblast proliferation, and excessive extracellular matrix deposition for which unmet need persists for effective therapeutics. The bioactive eicosanoid, prostaglandin F2α, and its cognate receptor FPr (Ptgfr) are implicated as a TGF-β1–independent signaling hub for IPF. To assess this, we leveraged our published murine PF model (IER-SftpcI73T) expressing a disease-associated missense mutation in the surfactant protein C (Sftpc) gene. Tamoxifen-treated IER-SftpcI73T mice developed an early multiphasic alveolitis and transition to spontaneous fibrotic remodeling by 28 days. IER-SftpcI73T mice crossed to a Ptgfr-null (FPr–/–) line showed attenuated weight loss and gene dosage–dependent rescue of mortality compared with FPr+/+ cohorts. IER-SftpcI73T/FPr–/– mice also showed reductions in multiple fibrotic endpoints for which administration of nintedanib was not additive. Single-cell RNA-Seq, pseudotime analysis, and in vitro assays demonstrated Ptgfr expression predominantly within adventitial fibroblasts, which were reprogrammed to an “inflammatory/transitional” cell state in a PGF2α /FPr-dependent manner. Collectively, the findings provide evidence for a role for PGF2α signaling in IPF, mechanistically identify a susceptible fibroblast subpopulation, and establish a benchmark effect size for disruption of this pathway in mitigating fibrotic lung remodeling.

Authors

Luis R. Rodriguez, Soon Yew Tang, Willy Roque Barboza, Aditi Murthy, Yaniv Tomer, Tian-Quan Cai, Swati Iyer, Katrina Chavez, Ujjalkumar Subhash Das, Soumita Ghosh, Charlotte H. Cooper, Thalia T. Dimopoulos, Apoorva Babu, Caitlin Connelly, Garret A. FitzGerald, Michael F. Beers

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Figure 5

Ptgfr expression is limited to adventitial and alveolar fibroblasts.

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Ptgfr expression is limited to adventitial and alveolar fibroblasts.
(A...
(A) UMAP clustering 94,258 cells identifies 4 primary cell compartments in IER-SftpcI73T/Ptgfr+/+, IER-SftpcI73T/Ptgfr–/–, and uninduced controls. Subclustering of the mesenchymal compartment identifies 8 mesenchymal clusters defined by marker genes depicted as a gradient dot plot. (B) UMAP projections of Pdgfra+ mesenchymal populations across time identifies 2 injury-specific clusters (fibrotic and transitional/inflammatory). (C) UMAP projection of all cells identifies the restriction of Ptgfr expression to the mesenchymal compartment and lack of Ptgfr expression in IER-SftpcI73T/Ptgfr–/– mice. Gradient dot plot of Ptgfr expression within the mesenchyme demonstrates increased expression and increased percent expression of Ptgfr in adventitial fibroblasts as compared with alveolar fibroblasts.

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