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Proliferating SPP1/MERTK-expressing macrophages in idiopathic pulmonary fibrosis

European Respiratory Journal · 2019 · Vol. 54(2) · pp. 1802441–1802441
Christina MorseTracy TabibJohn SembratKristina L. BuschurHumberto E. Trejo BittarEleanor ValenziYale JiangDaniel J. KassKevin F. GibsonWei ChenAna L. MoraPanayiotis V. BenosMauricio RojasRobert Lafyatis

Abstract

A comprehensive understanding of the changes in gene expression in cell types involved in idiopathic pulmonary fibrosis (IPF) will shed light on the mechanisms underlying the loss of alveolar epithelial cells and development of honeycomb cysts and fibroblastic foci. We sought to understand changes in IPF lung cell transcriptomes and gain insight into innate immune aspects of pathogenesis.We investigated IPF pathogenesis using single-cell RNA-sequencing of fresh lung explants, comparing human IPF fibrotic lower lobes reflecting late disease, upper lobes reflecting early disease and normal lungs.IPF lower lobes showed increased fibroblasts, and basal, ciliated, goblet and club cells, but decreased alveolar epithelial cells, and marked alterations in inflammatory cells. We found three discrete macrophage subpopulations in normal and fibrotic lungs, one expressing monocyte markers, one highly expressing <i>FABP4</i> and <i>INHBA</i> (FABP4<sup>hi</sup>), and one highly expressing <i>SPP1</i> and <i>MERTK</i> (SPP1<sup>hi</sup>). SPP1<sup>hi</sup> macrophages in fibrotic lower lobes showed highly upregulated <i>SPP1</i> and <i>MERTK</i> expression. Low-level local proliferation of SPP1<sup>hi</sup> macrophages in normal lungs was strikingly increased in IPF lungs.Co-localisation and causal modelling supported the role for these highly proliferative SPP1<sup>hi</sup> macrophages in activation of IPF myofibroblasts in lung fibrosis. These data suggest that SPP1<sup>hi</sup> macrophages contribute importantly to lung fibrosis in IPF, and that therapeutic strategies targeting MERTK and macrophage proliferation may show promise for treatment of this disease.

Interstitial Lung Diseases and Idiopathic Pulmonary FibrosisExtracellular vesicles in diseaseNeonatal Respiratory Health ResearchMERTKIdiopathic pulmonary fibrosisFibrosisMedicinePathologyMacrophageLungInnate immune systemPulmonary fibrosisPathogenesis

MeSH terms

c-Mer Tyrosine KinaseEpithelial CellsFibroblastsHumansImmune SystemImmunity, InnateLungMacrophagesStochastic ProcessesSequence Analysis, RNAInhibin-beta SubunitsCell ProliferationFatty Acid-Binding ProteinsOsteopontinIdiopathic Pulmonary Fibrosis

Funding

  • National Institutes of Health
  • Children's Hospital of Pittsburgh
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