Literature DB >> 17515862

In vitro transdifferentiation of human fetal type II cells toward a type I-like cell.

Cherie D Foster1, Linda S Varghese, Rachel B Skalina, Linda W Gonzales, Susan H Guttentag.   

Abstract

For alveolar type I cells, phenotype plasticity and physiology other than gas exchange await further clarification due to in vitro study difficulties in isolating and maintaining type I cells in primary culture. Using an established in vitro model of human fetal type II cells, in which the type II phenotype is induced and maintained by adding hormones, we assessed for transdifferentiation in culture toward a type I-like cell with hormone removal for up to 144 h, followed by electron microscopy, permeability studies, and RNA and protein analysis. Hormone withdrawal resulted in diminished type II cell characteristics, including decreased microvilli, lamellar bodies, and type II cell marker RNA and protein. There was a simultaneous increase in type I characteristics, including increased epithelial cell barrier function indicative of a tight monolayer and increased type I cell marker RNA and protein. Our results indicate that hormone removal from cultured human fetal type II cells results in transdifferentiation toward a type I-like cell. This model will be useful for continued in vitro studies of human fetal alveolar epithelial cell differentiation and phenotype plasticity.

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Year:  2007        PMID: 17515862      PMCID: PMC3074248          DOI: 10.1203/pdr.0b013e3180332c6d

Source DB:  PubMed          Journal:  Pediatr Res        ISSN: 0031-3998            Impact factor:   3.756


  39 in total

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  14 in total

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Review 2.  When Is an Alveolar Type 2 Cell an Alveolar Type 2 Cell? A Conundrum for Lung Stem Cell Biology and Regenerative Medicine.

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3.  Regulated gene expression in cultured type II cells of adult human lung.

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6.  The Rho pathway mediates transition to an alveolar type I cell phenotype during static stretch of alveolar type II cells.

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8.  Pepsinogen C proteolytic processing of surfactant protein B.

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9.  Differential Regulation of Gene Expression of Alveolar Epithelial Cell Markers in Human Lung Adenocarcinoma-Derived A549 Clones.

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10.  Transient in utero disruption of cystic fibrosis transmembrane conductance regulator causes phenotypic changes in alveolar type II cells in adult rats.

Authors:  Ashraf Gad; Delon L Callender; Erin Killeen; Joseph Hudak; Malgosia A Dlugosz; Janet E Larson; J Craig Cohen; Avinash Chander
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