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Ando, M (1980). Chloride-dependent sodium and water transport in the seawater eel intestine. J. Comp. Physiol 138, 87-.

Ando, M (1981). Effects of ouabain on chloride movements across the seawater eel intestine. J. Comp. Physiol 145, 73-.

Ando, M (1983). Potassium-dependent chloride and water transport across the seawater eel intestine. J. Membr. Biol 73, 125-.[Medline]

Ando, M (1985). Relationship between coupled Na+\320K+\320Cltransport and water absorption across the seawater eel intestine. J. Comp. Physiol 155, 311-.

Ando, M. and Kobayashi, M (1978). Effects of stripping of the outer layers of the eel intestine on salt and water transport. Comp. Biochem. Physiol 61, 497-.

Booth, C., Patel, S., Bennion, G. R. and Potten, C. S (1995). The isolation and culture of adult mouse colonic epithelium. Epith. Cell Biol 4, 76-.[Medline]

Evans, G. S., Flint, N. and Potten, C. S (1994). Primary cultures for studies of cell regulation and physiology in intestinal epithelium. Annu. Rev. Physiol 56, 399-.[Medline]

Ferreira, K. T. G., Fernandes, P. L. and Ferreira, H. G (1992). Ion transport across the epithelium of rabbit caecum. Biochim. Biophys. Acta 1175, 27-.[Medline]

Giraldez, F. and Ferreira, K. T. G (1984). Intracellular chloride activity and membrane potential in stripped frog skin ( Rana temporaria ). Biochim. Biophys. Acta 769, 625-.[Medline]

Gray, M. A., Harris, A., Coleman, L., Greenwell, J. R. and Argent, B. E (1989). Two types of chloride channel on duct cells cultured from human fetal pancreas. Am. J. Physiol 257, 240-.

Hamill, O. P., Marty, A., Neher, E., Sakmann, B. and Sigworth, J. F (1981). Improved patch-clamp techniques for high-resolution current recording from cells and cell-free membrane patches. Pflugers Arch 391, 85-.[Medline]

Hayslett, J. P., G\232gelein, H., Kunzelmann, K. and Greger, R (1987). Characteristics of apical chloride channels in human colon cells (HT29). Pflugers Arch 410, 487-.[Medline]

Horn, R. and Marty, A (1988). Muscarinic activation of ionic currents measured by a new whole-cell recording method. J. Gen. Physiol 92, 145-.[Abstract/Free Full Text]

Krick, W., Disser, J., Hazama, A., Burckhardt, G. and Fr\232mter, E (1991). Evidence for a cytosolic inhibitor of epithelial chloride channels. Pflugers Arch 418, 491-.[Medline]

Kunzelmann, K., Pavenst\212dt, H. and Greger, R (1989). Properties and regulation of chloride channels in cystic fibrosis and normal airway cells. Pflugers Arch 415, 172-.[Medline]

Kunzelmann, K., Tilmann, M., Hansen, Ch. P. and Greger, R (1991). Inhibition of epithelial chloride channels by cytosol. Pflugers Arch 418, 479-.[Medline]

Loretz, C. A. and Fourtner, C. R (1988). Funtional characterization of a voltage-gated anion channel from teleost fish intestinal epithelium. J. Exp. Biol 136, 383-.[Abstract/Free Full Text]

Marv\213o, P., Em\222lio, M. G., Ferreira, K. G., Fernandes, P. L. andFerreira, H. G (1994). Ion transport in the intestine of Anguillaanguilla : gradients and translocators. J. Exp. Biol 193, 97-.[Abstract]

Oleson, D. R., DeFelice, L. J. and Donahoe, R. M (1993). A46comparison of K+channel characteristics in human T cell: Perforated-patch versus whole-cell recording techniques. J. Membr. Biol 132, 229-.[Medline]

Poncet, V., Tauc, M., Bidet, M. and Poujeol, P (1994). Chloride channels in the apical membrane of primary cultures of rabbit distal bright convoluted tubule. Am. J. Physiol 266, 543-.

Schwiebert, E. M., Flotte, T., Cutting, G. R. and Guggino, W. B (1994). Both CFTR and outwardly rectifying chloride channels contribute to cyclic AMP-stimulated whole cell chloride currents. Am. J. Physiol 266, 1464-.

Solc, C K. and Wine, J. J (1991). Swelling-induced and depolarization-induced Clchannels in normal and cystic fibrosis epithelial cells. Am. J. Physiol 261, 658-.

Trischitta, F., Denaro, M. D., Faggio, C., Mandolfino, M. and Schettino, T (1996). Different effects of cGMP and cAMP in the intestine of the European eel, Anguillaanguilla. J. Comp. Physiol 166, 30-.

Trischitta, F., Denaro, M. G., Faggio, C. and Schettino, T (1992). An attempt to determine the mechanisms of chloride exit across the basolateral membrane of eel intestine: use of different chloride transport pathway inhibitors. J. Exp. Zool 264, 11-.

Willumsen, N. J. and Hviid Larsen, E (1986). Membrane potentials and intracellular Clactivity of toad skin epithelium in relation to activation and deactivation of the transepithelial Cl conductance. J. Membr. Biol 94, 173-.[Medline]




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This Article
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