β1- and β2-adrenergic stimulation-induced electrogenic transport by human endolymphatic sac epithelium and its clinical implications
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/srep42217.pdf
Reference31 articles.
1. Kim, S. H. et al. Electrogenic transport and K(+) ion channel expression by the human endolymphatic sac epithelium. Sci Rep 5, 18110 (2015).
2. Goutman, J. D., Elgoyhen, A. B. & Gomez-Casati, M. E. Cochlear hair cells: The sound-sensing machines. FEBS Lett 589, 3354–3361 (2015).
3. Meredith, F. L. & Rennie, K. J. Channeling your inner ear potassium: K+ channels in vestibular hair cells. Hear Res 338, 40–51 (2016).
4. Moller, M. N. et al. Gene expression in the human endolymphatic sac: the solute carrier molecules in endolymphatic fluid homeostasis. Otol Neurotol 36, 915–922 (2015).
5. Kim, C. H. et al. Dopamine increases Na+ absorption in the Reissner’s membrane of the gerbil cochlea. Auris Nasus Larynx 40, 266–272 (2013).
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