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Cell Calcium|February 25, 2014
Ca²⁺-dependent K⁺ channels in exocrine salivary glandsMarcelo A Catalán, Gaspar Peña-Munzenmayer, James E MelvinAnnual Review of Physiology|February 16, 2005
Regulation of fluid and electrolyte secretion in salivary gland acinar cellsJames E Melvin, David Yule, Trevor Shuttleworth, et al.Journal of Cellular Physiology|February 16, 2019
The apical Na+ -HCO3 - cotransporter Slc4a7 (NBCn1) does not contribute to bicarbonate transport by mouse salivary gland ductsNing-Yan Yang, Taro Mukaibo, Ira Kurtz, et al.Toxicology Letters|July 26, 2005
Vinyl acetate induces intracellular acidification in mouse oral buccal epithelial cellsTetsuji Nakamoto, Mark Wagner, James E Melvin, et al.American Journal of Physiology. Cell Physiology|January 30, 2009
The role of cell cholesterol and the cytoskeleton in the interaction between IK1 and maxi-K channelsVictor G Romanenko, Kurt S Roser, James E Melvin, et al.The Journal of Biological Chemistry|July 29, 2006
Molecular identification and physiological roles of parotid acinar cell maxi-K channelsVictor Romanenko, Tetsuji Nakamoto, Alaka Srivastava, et al.American Journal of Physiology. Cell Physiology|January 25, 2008
Apical maxi-K (KCa1.1) channels mediate K+ secretion by the mouse submandibular exocrine glandTetsuji Nakamoto, Victor G Romanenko, Atsushi Takahashi, et al.American Journal of Physiology. Gastrointestinal and Liver Physiology|September 6, 2003
Cl(-)/HCO(3)(-) exchange is acetazolamide sensitive and activated by a muscarinic receptor-induced [Ca(2+)](i) increase in salivary acinar cellsHa-Van Nguyen, Alan Stuart-Tilley, Seth L Alper, et al.Physiological Reports|December 14, 2019
Slc4a11 disruption causes duct cell loss and impairs NaCl reabsorption in female mouse submandibular glandsNing-Yan Yang, Taro Mukaibo, Xin Gao, et al.Archives of Oral Biology|June 24, 2008
Age and gender related differences in human parotid gland gene expressionAlaka Srivastava, Jianghua Wang, Hui Zhou, et al.Pageof 7