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α7nAChR activation in AT2 cells promotes alveolar regeneration through WNT7B signaling in acute lung injury
Xiaoyan Chen, Cuiping Zhang, Tianchang Wei, Jie Chen, Ting Pan, Miao Li, Lu Wang, Juan Song, Cuicui Chen, Yan Zhang, Yuanlin Song, Xiao Su
Xiaoyan Chen, Cuiping Zhang, Tianchang Wei, Jie Chen, Ting Pan, Miao Li, Lu Wang, Juan Song, Cuicui Chen, Yan Zhang, Yuanlin Song, Xiao Su
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Research Article Pulmonology Stem cells

α7nAChR activation in AT2 cells promotes alveolar regeneration through WNT7B signaling in acute lung injury

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Abstract

Reducing inflammatory damage and improving alveolar epithelium regeneration are two key approaches to promoting lung repair in acute lung injury/acute respiratory distress syndrome (ALI/ARDS). Stimulation of cholinergic α7 nicotinic acetylcholine receptor (α7nAChR, coded by Chrna7) signaling could dampen lung inflammatory injury. However, whether activation of α7nAChR in alveolar type II (AT2) cells promotes alveolar epithelial injury repair and underlying mechanisms is elusive. Here, we found that α7nAChR was expressed on AT2 cells and was upregulated in response to LPS-induced ALI. Meanwhile, deletion of Chrna7 in AT2 cells impeded lung repair process and worsened lung inflammation in ALI. Using in vivo AT2 lineage–labeled mice and ex vivo AT2 cell–derived alveolar organoids, we demonstrated that activation of α7nAChR expressed on AT2 cells improved alveolar regeneration by promoting AT2 cells to proliferate and subsequently differentiate toward alveolar type I cells. Then, we screened out the WNT7B signaling pathway by the RNA-Seq analysis of in vivo AT2 lineage–labeled cells and further confirmed its indispensability for α7nAChR activation–mediated alveolar epithelial proliferation and differentiation. Thus, we have identified a potentially unrecognized pathway in which cholinergic α7nAChR signaling determines alveolar regeneration and repair, which might provide us a novel therapeutic target for combating ALI.

Authors

Xiaoyan Chen, Cuiping Zhang, Tianchang Wei, Jie Chen, Ting Pan, Miao Li, Lu Wang, Juan Song, Cuicui Chen, Yan Zhang, Yuanlin Song, Xiao Su

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Figure 7

α7nAChR-driven WNT7B signaling is integral for α7nAChR-promoted AT2 cell proliferation and differentiation.

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α7nAChR-driven WNT7B signaling is integral for α7nAChR-promoted AT2 cell...
(A) Schematic of organoid coculture of Sftpc lineage–labeled cells (CD45–CD31–EPCAM+tdTomato+) isolated from indicated mice, with lung mesenchymal cells (CD45–CD31–EPCAM–) isolated from α7nAChR-knockout (Chrna7–/–) mice, and the intervention diagram. (B) Effect of selective knockout of α7nAChR on AT2 cells and supplementation of WNT7B (100 ng/mL) on the proliferation of lineage-traced AT2 cells in organoids on day 10, as judged by Ki67 (proliferative marker) (tdTomato, red; Ki67, green; DAPI, blue). Scale bars: 200 μm. (C) Effect of selective knockout of α7nAChR on AT2 cells and supplementation of WNT7B (100 ng/mL) on the differentiation of lineage-traced AT2 cells in organoids on day 12, as judged by PDPN (AT1 marker) (tdTomato, red; PDPN, cyan; DAPI, blue). Scale bars: 200 μm. (D) qPCR analysis of Mki67 from mouse AT2 organoids. (E) qPCR analysis of Pdpn from mouse AT2 organoids. One-way ANOVA with Tukey’s post hoc analysis was used in D and E. Data are presented as mean ± SD (*P < 0.05).

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