AbstractT1α, a differentiation gene of lung alveolar epithelial type I cells, is developmentally regulated and encodes an apical membrane protein of unknown function. Morphological differentiation of type I cells to form the air-blood barrier starts in the last few days of gestation and continues postnatally. Although T1α is expressed in the foregut endoderm before the lung buds, T1α mRNA and protein levels increase substantially in late fetuses when expression is restricted to alveolar type I cells. We generated T1α null mutant mice to study the role of T1α in lung development and differentiation and to gain insight into its potential function. Homozygous null mice die at birth of respiratory failure, and their lungs cannot be inflated to ...
SummaryLung development-associated diseases are major causes of morbidity and lethality in preterm i...
Abstract Background Alveolar septation marks the beginning of the transition from the saccular to al...
Type II cells are the defenders of the alveolus. They produce surfactant to prevent alveolar collaps...
AbstractT1α, a differentiation gene of lung alveolar epithelial type I cells, is developmentally reg...
BACKGROUND. Development of lung alveolar sacs of normal structure and size at late gestation is nece...
AbstractWe report here the identification and characterization of a novel gene, T1α, expressed in hi...
AbstractHypoxia inducible factor (HIF) 1a, EPAS1 and NEPAS are expressed in the embryonic mouse lung...
<p>(A) Immunohistochemical analysis of T1α at E18.5. T1α, a marker of alveolar epithelial type I cel...
AbstractLaminin α5 is prominent in the basement membrane of alveolar walls, airways, and pleura in d...
AbstractLung development requires reciprocal epithelial/mesenchymal interactions, mediated by signal...
AbstractTransforming growth factor-β1 (TGF-β1) influences the morphogenesis of many organs, regulati...
AbstractLung maturation at the terminal sac stage of lung development is characterized by a coordina...
© 2016 Li et al.Background: Epithelial-mesenchymal cross talk is centerpiece in the development of m...
Alveolar epithelial type II (ATII) cells are small, cuboidal cells that constitute approximately 60%...
Abstract Background Alveolar septation marks the beginning of the transition from the saccular to al...
SummaryLung development-associated diseases are major causes of morbidity and lethality in preterm i...
Abstract Background Alveolar septation marks the beginning of the transition from the saccular to al...
Type II cells are the defenders of the alveolus. They produce surfactant to prevent alveolar collaps...
AbstractT1α, a differentiation gene of lung alveolar epithelial type I cells, is developmentally reg...
BACKGROUND. Development of lung alveolar sacs of normal structure and size at late gestation is nece...
AbstractWe report here the identification and characterization of a novel gene, T1α, expressed in hi...
AbstractHypoxia inducible factor (HIF) 1a, EPAS1 and NEPAS are expressed in the embryonic mouse lung...
<p>(A) Immunohistochemical analysis of T1α at E18.5. T1α, a marker of alveolar epithelial type I cel...
AbstractLaminin α5 is prominent in the basement membrane of alveolar walls, airways, and pleura in d...
AbstractLung development requires reciprocal epithelial/mesenchymal interactions, mediated by signal...
AbstractTransforming growth factor-β1 (TGF-β1) influences the morphogenesis of many organs, regulati...
AbstractLung maturation at the terminal sac stage of lung development is characterized by a coordina...
© 2016 Li et al.Background: Epithelial-mesenchymal cross talk is centerpiece in the development of m...
Alveolar epithelial type II (ATII) cells are small, cuboidal cells that constitute approximately 60%...
Abstract Background Alveolar septation marks the beginning of the transition from the saccular to al...
SummaryLung development-associated diseases are major causes of morbidity and lethality in preterm i...
Abstract Background Alveolar septation marks the beginning of the transition from the saccular to al...
Type II cells are the defenders of the alveolus. They produce surfactant to prevent alveolar collaps...