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Danielle Altieri, PhD
Danielle Altieri, PhD
Other namesDanielle I Lee, Danielle I Altieri
Post-Doctoral Researcher, University Health Network, Toronto
Verified email at uhn.ca
Title
Cited by
Cited by
Year
Disparate effects of stilbenoid polyphenols on hypertrophic cardiomyocytes in vitro vs. In the spontaneously hypertensive heart failure rat
BC Akinwumi, P Raj, DI Lee, C Acosta, L Yu, SM Thomas, ...
Molecules 22 (2), 204, 2017
192017
Peripheral and cerebral resistance arteries in the spontaneously hypertensive heart failure rat: Effects of stilbenoid polyphenols
DI Lee, C Acosta, CM Anderson, HD Anderson
Molecules 22 (3), 380, 2017
182017
Activation of Cannabinoid Receptors Attenuates Endothelin-1–Induced Mitochondrial Dysfunction in Rat Ventricular Myocytes
Y Lu, DI Lee, SR Chowdhury, P Lu, A Kamboj, CM Anderson, ...
Journal of cardiovascular pharmacology 75 (1), 54-63, 2020
102020
Cannabinoid receptor agonist inhibits atrial electrical remodeling in a tachypaced ex vivo rat model
DI Lee, M Murninkas, S Elyagon, Y Etzion, HD Anderson
Frontiers in Pharmacology 12, 642398, 2021
72021
A new implantable tool for repeated assessment of supraventricular electrophysiology and atrial fibrillation susceptibility in freely moving rats
M Murninkas, R Gillis, DI Lee, S Elyagon, NS Bhandarkar, O Levi, R Polak, ...
American Journal of Physiology-Heart and Circulatory Physiology 320 (2 …, 2021
62021
Dual cannabinoid receptor agonist, CB13, modulates signaling in ventricular hypertrophy and atrial remodeling
D Lee
University of Manitoba, 2022
2022
Peripherally Restricted Dual Cannabinoid Receptor Agonist Modifies Mitochondrial Signaling and Inhibits Atrial Electrical Remodeling in a Tachypaced Ex Vivo Rat …
DI Lee, M Murninkas, S Elyagon, Y Etzion, HD Anderson
The FASEB Journal 34 (S1), 1-1, 2020
2020
Effect of stilbenoid polyphenols on resistance artery structure and mechanical properties in the spontaneously hypertensive heart failure rat
D Lee
MDPI, 2017
2017
Atrial Remodeling is Attenuated by Dual Cannabinoid Receptor Agonist Via AMPK Activation and AERP Reduction
DI Lee, M Murninkas, S Elyagon, Y Etzion, HD Anderson
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