BACKGROUND: Fibroblast-to-myofibroblast conversion is a major driver of tissue remodelling in organ fibrosis. Distinct lineages of fibroblasts support homeostatic tissue niche functions, yet their specific activation states and phenotypic trajectories during injury and repair have remained unclear. METHODS: We combined spatial transcriptomics, multiplexed immunostainings, longitudinal single-cell RNA-sequencing and genetic lineage tracing to study fibroblast fates during mouse lung regeneration. Our findings were validated in idiopathic pulmonary fibrosis patient tissues in situ as well as in cell differentiation and invasion assays using patient lung fibroblasts. Cell differentiation and invasion assays established a function of SFRP1 in regulating human lung fibroblast invasion in response to transforming growth factor (TGF)β1. MEASUREMENTS AND MAIN RESULTS: We discovered a transitional fibroblast state characterised by high Sfrp1 expression, derived from both Tcf21-Cre lineage positive and negative cells. Sfrp1 (+) cells appeared early after injury in peribronchiolar, adventitial and alveolar locations and preceded the emergence of myofibroblasts. We identified lineage-specific paracrine signals and inferred converging transcriptional trajectories towards Sfrp1 (+) transitional fibroblasts and Cthrc1 (+) myofibroblasts. TGFβ1 downregulated SFRP1 in noninvasive transitional cells and induced their switch to an invasive CTHRC1(+) myofibroblast identity. Finally, using loss-of-function studies we showed that SFRP1 modulates TGFβ1-induced fibroblast invasion and RHOA pathway activity. CONCLUSIONS: Our study reveals the convergence of spatially and transcriptionally distinct fibroblast lineages into transcriptionally uniform myofibroblasts and identifies SFRP1 as a modulator of TGFβ1-driven fibroblast phenotypes in fibrogenesis. These findings are relevant in the context of therapeutic interventions that aim at limiting or reversing fibroblast foci formation.
Sfrp1 inhibits lung fibroblast invasion during transition to injury-induced myofibroblasts.
Sfrp1抑制肺成纤维细胞在向损伤诱导的肌成纤维细胞转变过程中的侵袭
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作者:Mayr Christoph H, Sengupta Arunima, Asgharpour Sara, Ansari Meshal, Pestoni Jeanine C, Ogar Paulina, Angelidis Ilias, Liontos Andreas, Rodriguez-Castillo José Alberto, Lang Niklas J, Strunz Maximilian, Porras-Gonzalez Diana, Gerckens Michael, De Sadeleer Laurens J, Oehrle Bettina, Viteri-Alvarez Valeria, Fernandez Isis E, Tallquist Michelle, Irmler Martin, Beckers Johannes, Eickelberg Oliver, Stoleriu Gabriel Mircea, Behr Jürgen, Kneidinger Nikolaus, Wuyts Wim A, Wasnick Roxana Maria, Yildirim Ali Ãnder, Ahlbrecht Katrin, Morty Rory E, Samakovlis Christos, Theis Fabian J, Burgstaller Gerald, Schiller Herbert B
| 期刊: | European Respiratory Journal | 影响因子: | 21.000 |
| 时间: | 2024 | 起止号: | 2024 Feb 8; 63(2):2301326 |
| doi: | 10.1183/13993003.01326-2023 | 研究方向: | 细胞生物学 |
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