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Pflugers Archiv : European Journal of Physiology|January 29, 2000
Maitotoxin induces insertion of different ion channels into the Xenopus oocyte plasma membrane via Ca(2+)-stimulated exocytosisW M Weber, C Popp, W Clauss, et al.The Journal of Physiology|November 14, 1997
Electrophysiological analysis of the function of the mammalian renal peptide transporter expressed in Xenopus laevis oocytesS Amasheh, U Wenzel, W M Weber, et al.The Journal of Membrane Biology|December 1, 1995
The Ca(2+)-induced leak current in Xenopus oocytes is indeed mediated through a Cl- channelW M Weber, K M Liebold, F W Reifarth, et al.Pflugers Archiv : European Journal of Physiology|April 14, 2000
cAMP sensitivity conferred to the epithelial Na+ channel by alpha-subunit cloned from guinea-pig colonM Schnizler, L Mastroberardino, F Reifarth, et al.Pflugers Archiv : European Journal of Physiology|April 1, 1995
Influence of extracellular Ca2+ on endogenous Cl- channels in Xenopus oocytesW M Weber, K M Liebold, F W Reifarth, et al.The Journal of Pharmacology and Experimental Therapeutics|May 1, 1996
Transport characteristics of differently charged cephalosporin antibiotics in oocytes expressing the cloned intestinal peptide transporter PepT1 and in human intestinal Caco-2 cellsU Wenzel, I Gebert, H Weintraut, et al.Pflugers Archiv : European Journal of Physiology|October 16, 1999
Capacitance measurements reveal different pathways for the activation of CFTRW M Weber, H Cuppens, J J Cassiman, et al.The Journal of Biological Chemistry|March 22, 1996
Structural characterization of a novel neuropeptide from the central nervous system of the leech Erpobdella octoculata. The leech osmoregulator factorM Salzet, P Bulet, W M Weber, et al.Cellular Physiology and Biochemistry : International Journal of Experimental Cellular Physiology, Biochemistry, and Pharmacology|June 3, 1999
Minor role of Cl- secretion in non-cystic fibrosis and cystic fibrosis human nasal epitheliumC Rückes-Nilges, U Weber, H Lindemann, et al.Biochemical and Biophysical Research Communications|August 28, 1997
Amiloride-sensitive Na+ channels in human nasal epithelium are different from classical epithelial Na+ channelsC Rückes, U Blank, K Möller, et al.Pageof 21