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ORIGINAL RESEARCH

Differentiation of Tracheal Basal Cells to Ciliated Cells and Tissue Reconstruction on the Synthesized Basement Membrane Substratum In Vitro

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Pages 9-18 | Received 21 Apr 2006, Accepted 15 Sep 2006, Published online: 06 Aug 2009

REFERENCES

  • Whitcutt M. J., Adler K. B., Wu R. A biphasic chamber system for maintaining polarity of differentiation of cultured respiratory tract epithelial cells. In Vitro Cell Dev. Biol. 1988; 24: 420–428
  • Sachs L. A., Finkbeiner W. E., Widdicombe J. H. Effects of media on differentiation of cultured human tracheal epithelium. In Vitro Cell Dev. Biol. Anim. 2003; 39: 56–62
  • Kaartinen L., Nettesheim P., Adler K. B., Randell S. H. Rat tracheal epithelial cell differentiation in vitro. In Vitro Cell Dev. Biol. 1993; 29A: 481–492
  • Davenport E. A., Nettesheim P. Regulation of mucociliary differentiation of rat tracheal epithelial cells by type I collagen gel substratum. Am J. Respir. Cell Mol. Biol. 1996; 14: 19–26
  • Moghal N., Neel B. G. Integration of growth factor, extracellular matrix, and retinoid signals during bronchial epithelial cell differentiation. Mol. Cell Biol. 1998; 18: 6666–6678
  • Ostrowski L. E., Randell S. H., Clark A. B., Gray T. E., Nettesheim P. Ciliogenesis of rat tracheal epithelial cells in vitro. Meth. Cell Biol. 1995; 47: 57–63
  • Yamaya M., Finkbeiner W. E., Chun S. Y., Widdicombe J. H. Differentiated structure and function of cultures from human tracheal epithelium. Am. J. Physiol. Lung Cell Mol. Physiol. 1992; 262: L713–L724
  • Davidson D. J., Kilanowski F. M., Randell S. H., Sheppard D. N., Dorin J. R. A primary culture model of differentiated murine tracheal epithelium. Am. J. Physiol. Lung Cell Mol. Physiol. 2000; 279: L766–L778
  • Clark A. B., Randell S. H., Nettesheim P., Gray T. E., Bagnell B., Ostrowski L. E. Regulation of ciliated cell differentiation in cultures of rat tracheal epithelial cells. Am. J. Respir. Cell Mol. Biol. 1995; 12: 329–338
  • Yurchenco P. D., Schittny J. C. Molecular architecture of basement membranes. FASEB J. 1990; 4: 1577–1590
  • Crouch E. C., Martin G. R., Brody J. S., Laurie G. W. Basement membrane. The Lung: Scientific Foundations2nd ed., R. G. Crystal, J. B. West, P. J. Barnes, E. R. Weibel. Williams & Wilkins, Philadelphia, Lippincott 1996; 53.1–53.23
  • Davenport E. A., Nettesheim P. Type I collagen gel modulates extracellular matrix synthesis and deposition by tracheal epithelial cells. Exp. Cell Res. 1996; 223: 155–162
  • Goto Y., Noguchi Y., Nomura A., Sakamoto T., Ishii Y., Bitoh S., Picton C., Fujita Y., Watanabe T., Hasegawa S., Uchida Y. In vitro reconstitution of the tracheal epithelium. Am. J. Respir. Cell Mol. Biol. 1999; 20: 312–318
  • Furuyama A., Mochitate K. Assembly of the exogenous extracellular matrix during basement membrane formation by alveolar epithelial cells in vitro. J. Cell Sci. 2000; 113: 859–868
  • Furuyama A., Kimata K., Mochitate K. Assembly of basement membrane in vitro by cooperation between alveolar epithelial cells and pulmonary fibroblasts. Cell Struct. Funct. 1997; 22: 603–614
  • Clement A., Steele M. P., Brody J. S., Riedel N. SV40T2-immortalized lung alveolar epithelial cells display post-transcriptional regulation of proliferation-related genes. Exp. Cell Biol. 1991; 196: 198–205
  • Doi M., Thyboll J., Kortesmaa J., Jansson K., Iivanainen A., Parvardeh M., Timpl R., Hedin U., Swedenborg J., Tryggvason K. Recombinant human laminin-10 (α5β1γ1): production, purification, and migration-promoting activity on vascular endothelial cells. J. Biol. Chem. 2002; 277: 12741–12748
  • You Y., Richer E. J., Huang T., Brody S. L. Growth and differentiation of mouse tracheal epithelial cells: selection of a proliferative population. Am. J. Physiol. Lung Cell Mol. Physiol. 2002; 283: L1315–L1321
  • Jetten A. M., Brody A. R., Deas M. A., Hook G. E. R., Rearick J. I., Thacher S. M. Retinoic acid and substratum regulate the differentiation of rabbit tracheal epithelial cells into squamous and secretory phenotypes. Lab. Invest. 1987; 56: 654–664
  • Van Scott M. R., Lee N. P., Yankaskas J. R., Boucher R. C. Effect of hormones on growth and function of cultured canine tracheal epithelial cells. Am. J. Physiol. Cell Physiol. 1988; 255: C237–C245
  • Kondo M., Finkbeiner W. E., Widdicombe J. H. Cultures of bovine tracheal epithelium with differentiated ultrastructure and ion transport. In Vitro Cell Dev. Biol. 1993; 29A: 19–24
  • Nettesheim P., Jetten A. M., Inayama Y., Brody A. R., George M. A., Gilmore L. B., Gray T., Hook G. E. R. Pathway of differentiation of airway epithelial cells. Environ. Health Perspect. 1990; 85: 317–329
  • Robinson C. B., Wu R. Mucin synthesis and secretion by cultured tracheal cells: effects of collagen gel substratum thickness. In Vitro Cell Dev. Biol. 1993; 29A: 469–477
  • Baeza-Squiban A., Boisvieux-Ulrich E., Guilianelli C., Houcine O., Geraud G., Guennou C., Marano F. Extracellular matrix-dependent differentiation of rabbit tracheal epithelial cells in primary culture. In Vitro Cell Dev. Biol. 1994; 30A: 56–67
  • Reddel R. R., Ke Y., Gerwin B. I., McMenamin M. G., Lechner J. F., Su R. T., Brash D. E., Park J. -B., Rhim J. S., Harris C. C. Transformation of human bronchial epithelial cells by infection with SV40 or adenovirus-12 SV40 hybrid virus, or transfection via strontium phosphate coprecipitation with a plasmid containing SV40 early region genes. Cancer Res. 1988; 48: 1904–1909
  • Doherty M. M., Liu J., Randell S. H., Carter C. A., Davis C. W., Nettesheim P., Ferriola P. C. Phenotype and differentiation potential of novel rat tracheal epithelial cell line. Am. J. Respir. Cell Mol. Biol. 1995; 12: 385–395
  • Chang L. Y., Wu R., Nettesheim P. Morphological changes in rat tracheal cells during the adaptive and early growth phase in primary cell culture. J. Cell Sci. 1985; 74: 283–301
  • Furuyama A., Iwata M., Hayashi T., Mochitate K. Transforming growth factor-β1 regulates basement membrane formation by alveolar epithelial cells in vitro. Eur. J. Cell Biol. 1999; 78: 867–875
  • Furuyama A., Mochitate K. Hepatocyte growth factor inhibits the formation of the basement membrane of alveolar epithelial cells in vitro. Am. J. Physiol. Lung Cell Mol. Physiol. 2004; 286: L939–L946
  • Hong K. U., Reynolds S. D., Watkins S., Fuchs E., Stripp B. R. Basal cells are a multipotent progenitor capable of renewing the bronchial epithelium. Am. J. Pathol. 2004; 164: 577–588
  • Nguyen N. M., Bai Y., Mochitate K., Senior R. M. Laminin α-chain expression and basement membrane formation by MLE-15 respiratory epithelial cells. Am. J. Physiol. Lung Cell Mol. Physiol. 2002; 282: L1004–L1011
  • Pierce R. A., Griffin G. L., Mudd M., Moxley M. A., Longmore W. J., Sanes J. R., Miner J. H., Senior R. M. Expression of laminin α3, α4, and α5 chains by alveolar epithelial cells and fibroblasts. Am. J. Respir. Cell Mol. Biol. 1998; 19: 237–244
  • Vukicevic S., Kleinman H. K., Luyten F. P., Roberts A. B., Roche N. S., Reddi A. H. Identification of multiple active growth factors in basement membrane Matrigel® suggests caution on interpretation of cellular activity related to extracellular matrix components. Exp. Cell Res. 1992; 202: 1–8
  • Taipale J., Keski-Oja J. Growth factors in the extracellular matrix. FASEB J. 1997; 11: 51–59

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