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Review
. 2003 Jun;23(3):315-29.
doi: 10.1023/a:1023636620721.

Aquaporin-mediated fluid regulation in the inner ear

Affiliations
Review

Aquaporin-mediated fluid regulation in the inner ear

Eric Beitz et al. Cell Mol Neurobiol. 2003 Jun.

Abstract

1. The sensory functions of the inner ear (hearing and balance) critically depend on the precise regulation of two fluid compartments of highly desparate ion composition, i.e., the endolymph and the perilymph. 2. The parameters volume, ion composition, and pH need to be held at homeostasis irrespective of the hydration status of the total organism. 3. Specific cellular water channels, aquaporins, have been shown to be essential for the fluid regulation of several organs, e.g., kidney, lung, and brain. 4. Because of functional similarities of water regulation in the kidney and inner ear this review initially summarizes some aquaporin functions in the kidney and then focuses on 6 out of 11 mammalian aquaporins that are present in the inner ear (AQP1-6). 5. Their potential role in the inner ear fluid control will be discussed on the basis of the respective expression patterns and individual pore properties. 6. Further, a working model is presented of how the endolymphatic sac may contribute to inner ear fluid regulation.

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References

    1. Agre, P., Borgnia, M. J., Yasui, M., Neely, J. D., Carbrey, J., Kozono, D., Beitz, E., Hoffert, J., Leitch, V., and King, L. S. (2001). Discovery of the aquaporins and their impact on basic and clinical physiology. Curr. Topics Membranes 51:1–38.
    1. Beitz, E., Kumagami, H., Krippeit-Drews, P., Ruppersberg, J. P., and Schultz, J. E. (1999). Expression pattern of aquaporin water channels in the inner ear of the rat. The molecular basis for a water regulation system in the endolymphatic sac. Hear. Res. 132:76–84. - PubMed
    1. Comacchio, F., Boggian, O., Poletto, E., Beghi, A., Martini, A., and Rampazzo, A. (1992). Meniere's disease in congenital nephrogenic diabetes insipidus: Report of two twins. Am. J. Otol. 13:477–481. - PubMed
    1. Dallos, P. (1996). Overview: Cochlear neurobiology. In Dallos, P., Popper, A. N., and Fay, R. R. (eds.), The Cochlea, Springer, New York, pp. 1–43.
    1. Deen, P. M., van Balkom, B. W., and Kamsteeg, E. J. (2000). Routing of the aquaporin-2 water channel in health and disease. Eur. J. Cell Biol. 79:523–530. - PubMed