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Quax, W.

Publications and source records attributed to Quax, W..

2 recordsLinked to original sources

Receptor agonist of NFκB signaling ligand directs lung epithelial cell expansion through RANK signaling

Chronic obstructive pulmonary disease (COPD) is the third leading cause of death globally, with progressive emphysema driven by repeated epithelial damage and impaired repair. Recently, we found that secretion of the osteokine "receptor agonist of nuclear factor {kappa}B signaling ligand" (RANKL) is higher in lung fibroblasts from patients with COPD compared to control and that RANKL represses lung epithelial cell death. However, the underlying mechanism, its cross-species conservation and the involved epithelial cell types remain unclear. To investigate how RANKL affects lung epithelial cells, we used primary lung organoids from human and mouse epithelial cells and showed that RANKL supplementation increased alveolar organoid forming capacity in these cultures compared to vehicle-treated controls. In elastase-treated mice, RANKL was able to rescue the elastase-induced loss of epithelial cells compared to vehicle-treated controls and it augmented the proportion of epithelial cells in transitional states expressing Krt8 and MHCII. Using A549 epithelial cells to investigate whether RANK or the alternative receptor for RANKL, "leucine-rich repeat-containing G-protein coupled receptor 4" (LGR4) were responding to RANKL treatment, we found that RANKL most likely acts through RANK These results suggest that RANKL may enhance stem cell survival of primarily alveolar epithelial cells in both mice and humans. We therefore conclude that RANKL is another osteokine, in addition to periostin, osteopontin, osteoglycin, and osteoprotegerin, that has a role in lung tissue repair and that its signaling pathway could be explored for therapeutic applications. New & NoteworthyRANKL enhances human and murine alveolar epithelial cell expansion. Using organoids and an elastase injury model, we show RANKL promotes alveolar epithelial type II cell expansion and rescues transitional cell type loss. RANKL/RANK signaling therefore emerges as a conserved lung regenerative pathway and may be a potential therapeutic target for diseases like COPD with impaired epithelial repair.

cell biology↗

Role of RANKL in Alveolar Epithelial Cell Regeneration: Potential Novel Contributor to Lung Tissue Repair

Receptor activator for NF-{kappa}{beta} (RANK) ligand (RANKL) is found in lung tissue and elevated in lung diseases like chronic obstructive pulmonary disease (COPD), cystic fibrosis and silica-induced pulmonary fibrosis. RANKL is a well-known stimulator of bone tissue degradation, which may explain the association between these lung diseases and osteoporosis. However, RANKL is also reported to be involved in epithelial cell regeneration in breast and thymus. We hypothesized that RANKL, which is produced directly in lung tissue, is involved in the regeneration of lung epithelial cells. Therefore, we aimed to clarify the specific role of RANKL in this process. Using an organoid model of lung epithelial development by co-culturing primary EpCAM+ lung epithelial cells with fibroblasts, we found higher numbers of alveolar organoids after soluble RANKL treatment compared to control. Importantly, this effect was similar in human RANKL-treated organoids derived from epithelial cells isolated from lung tissue of COPD patients. The effect of RANKL was abrogated upon addition of osteoprotegerin, the soluble inhibitor of RANKL. We also found that RANKL stimulated phosphorylation of Akt suggesting involvement of its receptor RANK in the signaling pathway. Moreover, in vivo RANKL administration resulted in more type II alveolar epithelial cells in lungs of mice with silica-induced pulmonary fibrosis. In conclusion, we found that RANKL promotes type II alveolar epithelial cell regeneration and may therefore be a novel contributor to lung tissue repair. New and NoteworthyOur study provides compelling evidence demonstrating an as of yet unknown function of receptor activator for NF-{kappa}{beta} ligand (RANKL) in lung tissue regeneration. We found that RANKL plays a role in the regeneration of lung epithelial cells, particularly type II alveolar epithelial cells. This may also have clinical implications as promotion of alveolar epithelial cell regeneration may enhance lung tissue repair, an important target in patients with lung diseases like COPD and fibrosis.

cell biology↗