The mechanism of neuroprotection by positive modulation of Ca2+-activated K+ channels of cerebellar neurons in primary culture
Author:
Publisher
Pleiades Publishing Ltd
Subject
Cell Biology,Biochemistry,Biophysics
Link
http://link.springer.com/content/pdf/10.1134/S1990747817030084.pdf
Reference15 articles.
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2. Abushik P.A., Sibarov D.A., Eaton M.J., Skatchkov S.N., Antonov S.M. 2013. Kainate-induced calcium overload of cortical neurons in vitro: Dependence on expression of AMPAR GluA2-subunit and down-regulation by subnanomolar ouabain. Cell Calcium. 54 (2), 95–104.
3. Dolga A.M., Terpolilli N., Kepura F., Nijholt I.M., Knaus H.-G., D’Orsi B., Prehn J.H.M., Eisel T., Plant U.L.M., Plesnila N., Culmsee C. 2011. KCa2 channels activation prevents [Ca2+]i deregulation and reduces neuronal death following glutamate toxicity and cerebral ischemia. Cell Death Dis. 2 (4), e147.
4. Egorova P.A., Karelina T.V., Vlasova O.L., Antonov S.M., Besprozvanny I.B. The effect of modulators of SKchannels on simple spike firing frequency in the discharge of the cerebellar Purkinje cells in laboratory mice. Zh. Evol. Biokhim. Fiziol. (Rus.). 50 (2), 102–108.
5. Karelina T.V., Stepanenko Yu.D., Abushik P.A., Sibarov D.A., Antonov S.M. 2016. Downregulation of Purkinje cell activity by modulators of small conductance calcium-activated potassium channels in rat cerebellum. Acta Naturae. 8 (4), 91–99.
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