Artigo Revisado por pares

Potassium channels in renal epithelial transport regulation

1992; American Physiological Society; Volume: 72; Issue: 1 Linguagem: Inglês

10.1152/physrev.1992.72.1.1

ISSN

1522-1210

Autores

Florian Läng, Wolfgang G Rehwald,

Tópico(s)

Plant Stress Responses and Tolerance

Resumo

articlePotassium channels in renal epithelial transport regulationF. Lang, and W. RehwaldF. LangInstitute for Physiology, University of Innsbruck, Austria., and W. RehwaldInstitute for Physiology, University of Innsbruck, Austria.Published Online:01 Jan 1992https://doi.org/10.1152/physrev.1992.72.1.1MoreSectionsPDF (9 MB)Download PDF ToolsExport citationAdd to favoritesGet permissionsTrack citations ShareShare onFacebookTwitterLinkedInWeChat Back to Top Next Download PDF FiguresReferencesRelatedInformation Cited ByRole of genetic and electrolyte abnormalities in prolonged QTc interval and sudden cardiac death in end-stage renal disease patients18 July 2018 | PLOS ONE, Vol. 13, No. 7On the putative purpose of AMPK sensitive Kv1.5 K + channel regulation15 July 2015 | Channels, Vol. 9, No. 4Molecular Aspects of Structure, Gating, and Physiology of pH-Sensitive Background K2P and Kir K+-Transport ChannelsFrancisco V. Sepúlveda, L. 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Pedersen1 January 2009 | Physiological Reviews, Vol. 89, No. 1Functional significance of channels and transporters expressed in the inner ear and kidneyFlorian Lang, Volker Vallon, Marlies Knipper, and Philine Wangemann1 October 2007 | American Journal of Physiology-Cell Physiology, Vol. 293, No. 4Impaired intestinal and renal glucose transport in PDK-1 hypomorphic miceFerruh Artunc*, Rexhep Rexhepaj*, Harald Völkl*, Florian Grahammer, Christine Remy, Diana Sandulache, Omaima Nasir, Carsten A. Wagner, Dario R. Alessi, and Florian Lang1 November 2006 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 291, No. 5Reduced intestinal and renal amino acid transport in PDK1 hypomorphic mice1 November 2006 | The FASEB Journal, Vol. 20, No. 13Proximal renal tubular acidosis in TASK2 K + channel-deficient mice reveals a mechanism for stabilizing bicarbonate transport12 May 2004 | Proceedings of the National Academy of Sciences, Vol. 101, No. 21Potassium channels in epithelial transport18 April 2003 | Pflügers Archiv - European Journal of Physiology, Vol. 446, No. 5Predominant expression of Kv1.3 voltage-gated K+ channel subunit in rat prostate cancer cell lines: electrophysiological, pharmacological and molecular characterisation1 July 2003 | Pflügers Archiv - European Journal of Physiology, Vol. 446, No. 5A novel cGMP‐regulated K + channel in immortalized human kidney epithelial cells (IHKE‐1)7 September 2004 | The Journal of Physiology, Vol. 519, No. 3Basolateral Na+ pump modulates apical Na+ and K+ conductances in rabbit cortical collecting ductsShigeaki Muto, Yasushi Asano, Donald Seldin, and Gerhard Giebisch1 January 1999 | American Journal of Physiology-Renal Physiology, Vol. 276, No. 1Functional Significance of Cell Volume Regulatory MechanismsFLORIAN LANG, GILLIAN L. BUSCH, MARKUS RITTER, HARALD VÖLKL, SIEGFRIED WALDEGGER, ERICH GULBINS, and DIETER HÄUSSINGER1 January 1998 | Physiological Reviews, Vol. 78, No. 1Secondary AldosteronismEndocrinology and Metabolism Clinics of North America, Vol. 24, No. 3Parvalbumin-immunoreactive material in the kidney of Xenopus laevisTissue and Cell, Vol. 26, No. 1From contractile vacuole to leaky epithelia. Coupling between salt and water fluxes in biological membranesBiochimica et Biophysica Acta (BBA) - Reviews on Biomembranes, Vol. 1113, No. 2 More from this issue > Volume 72Issue 1January 1992Pages 1-32 Copyright & PermissionsCopyright © 1992 the American Physiological Societyhttps://doi.org/10.1152/physrev.1992.72.1.1PubMed1731368History Published online 1 January 1992 Published in print 1 January 1992 Metrics

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