Properties and role of calcium-activated chloride channels in pancreatic duct cells

Author:

Gray Michael A.,Winpenny John P.,Verdon Bernard,O'Reilly Catherine M.,Argent Barry E.

Publisher

Elsevier

Reference75 articles.

1. ATP-induced [Ca2+]i oscillations in a human pancreatic duct cell line (HPAF);Adair;J. Physiol. (Lond.),1999

2. Anion secretion and intracellular calcium concentration in a human pancreatic duct cell line (HPAF);Adair;J. Physiol. (Lond.),1999

3. The effects of protein kinase C on calcium mobilisation in a human pancreatic duct cell line (HPAF);Adair;J. Physiol. (Lond.),2000

4. Identification of three novel members of the calcium-dependent chloride channel (CaCC) family predominantly expressed in the digestive tract and trachea;Angel;FEBS Lett.,1999

5. Regulation and formation of fluid and electrolyte secretions by pancreatic ductal epithelium;Argent,1997

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1. Cell Physiology of Pancreatic Ducts;Physiology of the Gastrointestinal Tract;2012

2. Bestrophin expression and function in the human pancreatic duct cell line, CFPAC-1;The Journal of Physiology;2009-05-14

3. % MathType!Translator!2!1!AMS LaTeX.tdl!TeX -- AMS-LaTeX! % MathType!MTEF!2!1!+- % feaaeaart1ev0aaatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbbjxAHX % garmWu51MyVXgatuuDJXwAK1uy0HwmaeHbfv3ySLgzG0uy0Hgip5wz % aebbnrfifHhDYfgasaacH8qrps0lbbf9q8WrFfeuY-Hhbbf9v8qqaq % Fr0xc9pk0xbba9q8WqFfea0-yr0RYxir-Jbba9q8aq0-yq-He9q8qq % Q8frFve9Fve9Ff0dmeaabaqaciGacaGaaeqabaWaaeWaeaaakeaaca % qGibGaae4qaiaab+eadaqhaaWcbaGaae4maaqaaiaab2caaaaaaa!3B86! $$ {\text{HCO}}^{{\text{ - }}}_{{\text{3}}}$$ -dependent pHi recovery and overacidification induced by % MathType!Translator!2!1!AMS LaTeX.tdl!TeX -- AMS-LaTeX! % MathType!MTEF!2!1!+- % feaaeaart1ev0aaatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbbjxAHX % garmWu51MyVXgatuuDJXwAK1uy0HwmaeHbfv3ySLgzG0uy0Hgip5wz % aebbnrfifHhDYfgasaacH8qrps0lbbf9q8WrFfeuY-Hhbbf9v8qqaq % Fr0xc9pk0xbba9q8WqFfea0-yr0RYxir-Jbba9q8aq0-yq-He9q8qq % Q8frFve9Fve9Ff0dmeaabaqaciGacaGaaeqabaWaaeWaeaaakeaaca % qGobGaaeisamaaDaaaleaacaaI0aaabaGaey4kaScaaaaa!3AF9! $$ {\text{NH}}^{ + }_{4}$$ pulse in rat lung alveolar type II cells: % MathType!Translator!2!1!AMS LaTeX.tdl!TeX -- AMS-LaTeX! % MathType!MTEF!2!1!+- % feaaeaart1ev0aaatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbbjxAHX % garmWu51MyVXgatuuDJXwAK1uy0HwmaeHbfv3ySLgzG0uy0Hgip5wz % aebbnrfifHhDYfgasaacH8qrps0lbbf9q8WrFfeuY-Hhbbf9v8qqaq % Fr0xc9pk0xbba9q8WqFfea0-yr0RYxir-Jbba9q8aq0-yq-He9q8qq % Q8frFve9Fve9Ff0dmeaabaqaciGacaGaaeqabaWaaeWaeaaakeaaca % qGibGaae4qaiaab+eadaqhaaWcbaGaaG4maaqaaiabgkHiTaaaaaa!3BCA! $$ {\text{HCO}}^{ - }_{3} $$ -dependent NH3 excretion from lungs?;Pflügers Archiv - European Journal of Physiology;2007-06-12

4. CFTR gene transfer to human cystic fibrosis pancreatic duct cells using a Sendai virus vector;Journal of Cellular Physiology;2007

5. Cell Physiology of Pancreatic Ducts;Physiology of the Gastrointestinal Tract;2006

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