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Syndecan 4 Mediates Nrf2-dependent Expansion of Bronchiolar Progenitors That Protect Against Lung Inflammation. | LitMetric

AI Article Synopsis

  • The study investigates the biology of lung progenitors and identifies anti-inflammatory properties in a specific subset called bronchiolar progenitors, linked to the protein secretory leukocyte protease inhibitor (SLPI).
  • Impaired SLPI expression leads to an increase in bronchiolar progenitors and reduced lung inflammation, while the protein syndecan 4 is found to be crucial for promoting these progenitors and activating anti-inflammatory pathways.
  • The findings suggest that targeting the SLPI and syndecan 4 interaction may provide new therapeutic strategies for treating inflammatory lung diseases.

Article Abstract

The use of lung progenitors for regenerative medicine appears promising, but their biology is not fully understood. Here, we found anti-inflammatory attributes in bronchiolar progenitors that were sorted as a multipotent subset of mouse club cells and found to express secretory leukocyte protease inhibitor (SLPI). Notably, the impaired expression of SLPI in mice increased the number of bronchiolar progenitors and decreased the lung inflammation. We determined a transcriptional profile for the bronchiolar progenitors of Slpi-deficient mice and identified syndecan 4, whose expression was markedly elevated as compared to that of wild-type mice. Systemic administration of recombinant syndecan 4 protein caused a substantial increase in the number of bronchiolar progenitors with concomitant attenuation of both airway and alveolar inflammation. The syndecan 4 administration also resulted in activation of the Keap1-Nrf2 antioxidant pathway in lung cells, which is critically involved in the therapeutic responses to the syndecan 4 treatment. Moreover, in 3D culture, the presence of syndecan 4 induced differentiated club cells to undergo Nrf2-dependent transition into bronchiolar progenitors. Our observations reveal that differentiative switches between bronchiolar progenitors and club cells are under the Nrf2-mediated control of SLPI and syndecan 4, suggesting the possibility of new therapeutic approaches in inflammatory lung diseases.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4754542PMC
http://dx.doi.org/10.1038/mt.2015.153DOI Listing

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