The four contributions by Ishibashi et al., Klussmann et al., Zeuthen and Larsen et al. summarize the current knowledge on the molecular mechanisms underlying the short and long term regulation of water channels (AQPs) in principal cells, fluid transport by leaky epithelia and cotransporters of the symport type which behave as molecular water pumps.
The four contributions by Ishibashi et al., Klussmann et al., Zeuthen and Larsen et al. summarize the current knowledge on the molecular mechanisms underlying the short and long term regulation of water channels (AQPs) in principal cells, fluid transport by leaky epithelia and cotransporters of the symport type which behave as molecular water pumps.
Produktdetails
Produktdetails
Reviews of Physiology, Biochemistry and Pharmacology 141
Molecular biology of aquaporins.- The mechanisms of aquaporin control in the renal collecting duct.- Molecular water pumps.- Role of lateral intercellular space and sodium recirculation for isotonic transport in leaky epithelia.
Molecular biology of aquaporins.- The mechanisms of aquaporin control in the renal collecting duct.- Molecular water pumps.- Role of lateral intercellular space and sodium recirculation for isotonic transport in leaky epithelia.
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