Basic research toward understanding the pathobiology of cystic fibrosis requires a continuing and dependable source of cells, obtained from patients with and without the disease. Thus, the primary objective of the CORE Airway Cell Culture Facility is to acquire airway tissues and culture airway surface epithelial and tracheobronchial gland cells. A tissue procurement system for obtaining normal and CF airway tissue has already been established. Once obtained, tissue is enzymatically digested and the dispersed cells are established in primary culture. Tracheobronchial gland cells are expanded through a single passage. Surface epithelial and gland cell cultures are evaluated for differentiated properties using light microscopy, electron microscopy and measurements of short circuit current and transepithelial resistance. Confluent cell sheets are distributed to investigators. Additionally, established cell lines routinely used by investigators are maintained and distributed by the CORE Cell Culture Facility. The Cell Culture CORE will also continue its efforts to improve cultures, particularly those derived from tracheobronchial gland cells. The effects of media additives (growth factors, hormones, other chemicals) on airway gland cell growth and differentiation will be tested. The effects of air interface feeding and of a variety of growth supports (e.g. different filters, various collagens and extracellular matrix components) will also be assessed. These experiments should allow us to determine a relatively simple set of culture conditions which allows full expression of ion transport and mucus secretory function from low plating densities.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Specialized Center (P50)
Project #
5P50HL042368-10
Application #
6109988
Study Section
Project Start
1997-09-01
Project End
1999-08-31
Budget Start
1996-10-01
Budget End
1997-09-30
Support Year
10
Fiscal Year
1997
Total Cost
Indirect Cost
Name
University of California San Francisco
Department
Type
DUNS #
073133571
City
San Francisco
State
CA
Country
United States
Zip Code
94143
Verkman, A S; Matthay, M A; Song, Y (2000) Aquaporin water channels and lung physiology. Am J Physiol Lung Cell Mol Physiol 278:L867-79
Verkman, A S; Mitra, A K (2000) Structure and function of aquaporin water channels. Am J Physiol Renal Physiol 278:F13-28
Jepsen, M; Graham, S; Karp, P H et al. (2000) Effect of topical nasal pharmaceuticals on sodium and chloride transport by human airway epithelia. Am J Rhinol 14:405-9
Rao, S; Verkman, A S (2000) Analysis of organ physiology in transgenic mice. Am J Physiol Cell Physiol 279:C1-C18
Shen, B Q; Widdicomb, J H; Mrsny, R J (1999) Hepatocyte growth factor inhibits amiloride-sensitive Na(+) channel function in cystic fibrosis airway epithelium in vitro. Pulm Pharmacol Ther 12:157-64
Wu, D X; Lee, C Y; Uyekubo, S N et al. (1998) Regulation of the depth of surface liquid in bovine trachea. Am J Physiol 274:L388-95
Evans, D J; Matsumoto, P S; Widdicombe, J H et al. (1998) Pseudomonas aeruginosa induces changes in fluid transport across airway surface epithelia. Am J Physiol 275:C1284-90
Zabner, J; Smith, J J; Karp, P H et al. (1998) Loss of CFTR chloride channels alters salt absorption by cystic fibrosis airway epithelia in vitro. Mol Cell 2:397-403
Partikian, A; Olveczky, B; Swaminathan, R et al. (1998) Rapid diffusion of green fluorescent protein in the mitochondrial matrix. J Cell Biol 140:821-9
Lee, M C; Penland, C M; Widdicombe, J H et al. (1998) Evidence that Calu-3 human airway cells secrete bicarbonate. Am J Physiol 274:L450-3

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