Thomas Roger Eykyn
Affiliations: | King’s College London, London, England, United Kingdom |
Area:
Physical Chemistry, Nuclear Magnetic Resonance, chemical kinetics, metabolismGoogle:
"Thomas Eykyn"Mean distance: (not calculated yet)
Parents
Sign in to add mentorGeoffrey Bodenhausen | grad student | University of Lausanne + EPFL | |
Keith Alan McLauchlan | grad student | Oxford | |
Philip Küchel | post-doc | University of Sydney | |
Martin Leach | post-doc | Institute of Cancer Research, London, UK |
Children
Sign in to add traineeJulia Blower | grad student | King’s College London | |
Cristina Gabellieri | grad student | Institute of Cancer Research | |
Melissa Gargaro | grad student | King’s College London | |
Ella-May Hards | grad student | King’s College London (Imaging Tree) | |
Deborah Hill | grad student | Institute of Cancer Research | |
Zoe Hoare | grad student | King’s College London | |
Erika Mariotti | grad student | King’s College London | |
Aidan Michaels | grad student | King’s College London | |
Brett O’Brien | grad student | King’s College London | |
Shefali Saxena | grad student | King’s College London |
Collaborators
Sign in to add collaboratorMichael Shattock | collaborator | King’s College London (Physiology Academic Tree) | |
Richard Southworth | collaborator | King's College | |
Dunja Aksentijevic | collaborator | 2013- | King's College (Physiology Academic Tree) |
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Publications
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Chase D, Eykyn TR, Shattock MJ, et al. (2023) Empagliflozin improves cardiac energetics during ischaemia/reperfusion by directly increasing cardiac ketone utilisation. Cardiovascular Research |
Eykyn TR, Elliott SJ, Kuchel PW. (2021) Extended Bloch-McConnell equations for mechanistic analysis of hyperpolarized C magnetic resonance experiments on enzyme systems. Magnetic Resonance (Gottingen, Germany). 2: 421-446 |
Waters ECT, Baark F, Yu Z, et al. (2021) Detecting Validated Intracellular ROS Generation with F-dihydroethidine-Based PET. Molecular Imaging and Biology |
Chung YJ, Park KC, Tokar S, et al. (2021) SGLT2 inhibitors and the cardiac Na+/H+ exchanger-1: the plot thickens. Cardiovascular Research |
Chung YJ, Park KC, Tokar S, et al. (2020) Off-target effects of SGLT2 blockers: empagliflozin does not inhibit Na+/H+ exchanger-1 or lower [Na+]i in the heart. Cardiovascular Research |
Aksentijević D, Karlstaedt A, Basalay MV, et al. (2020) Intracellular sodium elevation reprograms cardiac metabolism. Nature Communications. 11: 4337 |
Aksentijević D, Zervou S, Eykyn TR, et al. (2019) Age-Dependent Decline in Cardiac Function in Guanidinoacetate--Methyltransferase Knockout Mice. Frontiers in Physiology. 10: 1535 |
Faulkes CG, Eykyn TR, Aksentijevic D. (2019) Cardiac metabolomic profile of the naked mole-rat-glycogen to the rescue. Biology Letters. 15: 20190710 |
Baark F, Shaughnessy F, Pell VR, et al. (2019) Tissue acidosis does not mediate the hypoxia selectivity of [Cu][Cu(ATSM)] in the isolated perfused rat heart. Scientific Reports. 9: 499 |
Safee ZM, Baark F, Waters ECT, et al. (2019) Detection of anthracycline-induced cardiotoxicity using perfusion-corrected Tc sestamibi SPECT. Scientific Reports. 9: 216 |