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Publication : Restoration of Megalin-Mediated Clearance of Alveolar Protein as a Novel Therapeutic Approach for Acute Lung Injury.

First Author  Vohwinkel CU Year  2017
Journal  Am J Respir Cell Mol Biol Volume  57
Issue  5 Pages  589-602
PubMed ID  28678521 Mgi Jnum  J:323150
Mgi Id  MGI:6220799 Doi  10.1165/rcmb.2016-0358OC
Citation  Vohwinkel CU, et al. (2017) Restoration of Megalin-Mediated Clearance of Alveolar Protein as a Novel Therapeutic Approach for Acute Lung Injury. Am J Respir Cell Mol Biol 57(5):589-602
abstractText  Acute respiratory distress syndrome constitutes a significant disease burden with regard to both morbidity and mortality. Current therapies are mostly supportive and do not address the underlying pathophysiologic mechanisms. Removal of protein-rich alveolar edema-a clinical hallmark of acute respiratory distress syndrome-is critical for survival. Here, we describe a transforming growth factor (TGF)-beta-triggered mechanism, in which megalin, the primary mediator of alveolar protein transport, is negatively regulated by glycogen synthase kinase (GSK) 3beta, with protein phosphatase 1 and nuclear inhibitor of protein phosphatase 1 being involved in the signaling cascade. Inhibition of GSK3beta rescued transepithelial protein clearance in primary alveolar epithelial cells after TGF-beta treatment. Moreover, in a bleomycin-based model of acute lung injury, megalin(+/-) animals (the megalin(-/-) variant is lethal due to postnatal respiratory failure) showed a marked increase in intra-alveolar protein and more severe lung injury compared with wild-type littermates. In contrast, wild-type mice treated with the clinically relevant GSK3beta inhibitors, tideglusib and valproate, exhibited significantly decreased alveolar protein concentrations, which was associated with improved lung function and histopathology. Together, we discovered that the TGF-beta-GSK3beta-megalin axis is centrally involved in disturbances of alveolar protein clearance in acute lung injury and provide preclinical evidence for therapeutic efficacy of GSK3beta inhibition.
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