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Adipobiology

Physiology and pathophysiology of aquaporins

Amaia Rodríguez, Victoria Catalán, Sara Becerril, Andoni Lancha, Beatriz Ramírez, Javier Salvador, Javier Gómez-Ambrosi, Giovanna Valenti, Giuseppe Calamita, Gema Frühbeck

Abstract

Aquaporins (AQPs) are water channels that facilitate a rapid transport of water, across cell membranes. In some cases, these pores are also permeated by small solutes, particularly glycerol. Thirteen aquaporins (AQP0-12) have been identified so far in mammalian tissues. The disruption of the genes encoding aquaporins in transgenic mice has revealed their implication in physiological and pathophysiological processes, including renal water absorption, neural function, digestion, tumor angiogenesis, and reproduction. A subset of aquaporins that transport both water and glycerol, the 'aquaglyceroporins', regulate glycerol content in epidermal, fat and other tissues, and are involved in skin hydration, fat metabolism and gluconeogenesis. Better understanding of the exact mechanisms and regulation of aquaporins might be useful for designing potential drug targets against different metabolic disorders, such as stroke, glaucoma, brain edema, cancer, diabetes and obesity.

Adipobiology 2010; 2: 9-22.


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DOI: http://dx.doi.org/10.14748/adipo.v2.256

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About The Authors

Amaia Rodríguez
University of Navarra of Pamplona
Spain

Victoria Catalán
University of Navarra of Pamplona
Spain

Sara Becerril
University of Navarra of Pamplona
Spain

Andoni Lancha
University of Navarra of Pamplona
Spain

Beatriz Ramírez
University of Navarra of Pamplona
Spain

Javier Salvador
University of Navarra of Pamplona
Spain

Javier Gómez-Ambrosi
University of Navarra of Pamplona
Spain

Giovanna Valenti
University of Bari Aldo Moro
Italy

Giuseppe Calamita
University of Bari Aldo Moro
Italy

Gema Frühbeck
University of Navarra of Pamplona
Spain

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