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Simvastatin activates single skeletal RyR1 channels but exerts more complex regulation of the cardiac RyR2 isoform

(2018) British Journal of Pharmacology. 175(6). p.938-952
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Chicago
Venturi, Elisa, Chris Lindsay, Sabine Lotteau, Zhaokang Yang, Emma Steer, Katja Witschas, Abigail D Wilson, et al. 2018. “Simvastatin Activates Single Skeletal RyR1 Channels but Exerts More Complex Regulation of the Cardiac RyR2 Isoform.” British Journal of Pharmacology 175 (6): 938–952.
APA
Venturi, Elisa, Lindsay, C., Lotteau, S., Yang, Z., Steer, E., Witschas, K., Wilson, A. D., et al. (2018). Simvastatin activates single skeletal RyR1 channels but exerts more complex regulation of the cardiac RyR2 isoform. British Journal of Pharmacology, 175(6), 938–952.
Vancouver
1.
Venturi E, Lindsay C, Lotteau S, Yang Z, Steer E, Witschas K, et al. Simvastatin activates single skeletal RyR1 channels but exerts more complex regulation of the cardiac RyR2 isoform. British Journal of Pharmacology. Wiley; 2018;175(6):938–52.
MLA
Venturi, Elisa et al. “Simvastatin Activates Single Skeletal RyR1 Channels but Exerts More Complex Regulation of the Cardiac RyR2 Isoform.” British Journal of Pharmacology 175.6 (2018): 938–952. Print.
@article{8609518,
  author       = {Venturi, Elisa and Lindsay, Chris and Lotteau, Sabine and Yang, Zhaokang and Steer, Emma and Witschas, Katja and Wilson, Abigail D and Wickens, James R and Russell, Angela J and Steele, Derek and Calaghan, Sarah and Sitsapesan, Rebecca},
  issn         = {0007-1188},
  journal      = {British Journal of Pharmacology},
  number       = {6},
  pages        = {938--952},
  publisher    = {Wiley},
  title        = {Simvastatin activates single skeletal RyR1 channels but exerts more complex regulation of the cardiac RyR2 isoform},
  url          = {http://dx.doi.org/10.1111/bph.14136},
  volume       = {175},
  year         = {2018},
}

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