Accès gratuit
Med Sci (Paris)
Volume 17, Numéro 11, Novembre 2001
Page(s) 1224 - 1225
Section Nouvelles
Publié en ligne 15 novembre 2001
  1. Verkman, AS, Mitra, AK. Structure and function of aquaporin water channels. Am J Physiol 2000; 278 : F13–28.
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  3. Loo DDF, Zeuthen T, Chandy G, Wright EM. Cotransport of water by the Na+/glucose cotrans-porter. Proc Natl Acad Sci USA 1996; 93 : 13367–70.
  4. Zeuthen T, Meinild AK, Klaerke DA, et al. Water transport by the Na+/glucose cotransporter under isotonic conditions. Biol Cell 1997; 89 : 307–12.
  5. Zeuthen T, Meinild AK, Loo DDF, Wright EM, Klaerke DA. Isotonic transport by the Na+-glucose cotransporter SGLT1 from humans and rabbit. J Physiol 2001; 531 : 631–44.
  6. Meinild AK, Klaerke DA, Loo DDF, Wright EM, Zeuthen T. The human Na+-glucose cotransporter is a molecular water pump. J Physiol 1998; 508 : 15–21.
  7. Zeuthen T. Molecular water pumps. Rev Physiol Biochem Pharmacol 2000; 141 : 97–151.
  8. Duquette PP, Bissonnette P, Lapointe JY. Local osmotic gradients drive the water flux associated with Na+/glucose cotransport. Proc Natl Acad Sci USA 2001; 98 : 3796–801.
  9. Baumgartner W, Islas L, Sigworth FJ. Twomicroelectrode voltage clamp of Xenopus oocytes : voltage errors and compensation for local current flow. Biophys J 1999; 77 : 1980–91.
  10. Meinild AK, Loo DDF, Pajor AM, Zeuthen T, Wright EM. Water transport by the renal Na+-dicarboxylate cotransporter. Am J Renal Physiol 2000; 278 : F777–83.
  11. Loo DDF, Hirayama BA, Meinild AK, Chandy G, Zeuthen T, Wright EM. Passive water and ion transport by cotransporters. J Physiol 1999; 518 : 195–202.

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