Christopher Peers

Affiliations: 
University Laboratory of Physiology (now DPAG) University of Oxford, Oxford, United Kingdom 
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"Christopher Peers"
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Al-Owais MM, Hettiarachchi NT, Boyle JP, et al. (2017) Multiple mechanisms mediating carbon monoxide inhibition of the voltage-gated K(+) channel Kv1.5. Cell Death & Disease. 8: e3163
Al-Owais MM, Hettiarachchi NT, Kirton HM, et al. (2017) A key role for peroxynitrite-mediated inhibition of cardiac ERG (Kv11.1) K(+) channels in carbon monoxide-induced proarrhythmic early afterdepolarizations. Faseb Journal : Official Publication of the Federation of American Societies For Experimental Biology
Elies J, Scragg JL, Boyle JP, et al. (2016) Regulation of the T-type Ca(2+) channel Cav3.2 by hydrogen sulfide: Emerging controversies concerning the role of H2 S in nociception. The Journal of Physiology
Dallas ML, Peers C, Golder FJ, et al. (2015) GAL-021 and GAL-160 are Efficacious in Rat Models of Obstructive and Central Sleep Apnea and Inhibit BKCa in Isolated Rat Carotid Body Glomus Cells. Advances in Experimental Medicine and Biology. 860: 361-70
Elies J, Scragg JL, Dallas ML, et al. (2015) Inhibition of T-type Ca(2+) Channels by Hydrogen Sulfide. Advances in Experimental Medicine and Biology. 860: 353-60
Duckles H, Al-Owais MM, Elies J, et al. (2015) T-Type Ca(2+) Channel Regulation by CO: A Mechanism for Control of Cell Proliferation. Advances in Experimental Medicine and Biology. 860: 291-300
Elies J, Johnson E, Boyle JP, et al. (2015) H2S does not regulate proliferation via T-type Ca2+ channels. Biochemical and Biophysical Research Communications. 461: 659-64
Karttunen S, Duffield M, Scrimgeour NR, et al. (2015) Oxygen-dependent hydroxylation by FIH regulates the TRPV3 ion channel. Journal of Cell Science. 128: 225-31
Peers C, Boyle JP, Scragg JL, et al. (2015) Diverse mechanisms underlying the regulation of ion channels by carbon monoxide. British Journal of Pharmacology. 172: 1546-56
Duckles H, Boycott HE, Al-Owais MM, et al. (2015) Heme oxygenase-1 regulates cell proliferation via carbon monoxide-mediated inhibition of T-type Ca2+ channels. PflüGers Archiv : European Journal of Physiology. 467: 415-27
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