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Citations to this article

AMP-activated protein kinase mediates ischemic glucose uptake and prevents postischemic cardiac dysfunction, apoptosis, and injury
Raymond R. Russell III, … , Morris J. Birnbaum, Lawrence H. Young
Raymond R. Russell III, … , Morris J. Birnbaum, Lawrence H. Young
Published August 16, 2004
Citation Information: J Clin Invest. 2004;114(4):495-503. https://doi.org/10.1172/JCI19297.
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Article Cardiology Article has an altmetric score of 6

AMP-activated protein kinase mediates ischemic glucose uptake and prevents postischemic cardiac dysfunction, apoptosis, and injury

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Abstract

AMP-activated protein kinase (AMPK) is an important regulator of diverse cellular pathways in the setting of energetic stress. Whether AMPK plays a critical role in the metabolic and functional responses to myocardial ischemia and reperfusion remains uncertain. We examined the cardiac consequences of long-term inhibition of AMPK activity in transgenic mice expressing a kinase dead (KD) form of the enzyme. The KD mice had normal fractional shortening and no heart failure, cardiac hypertrophy, or fibrosis, although the in vivo left ventricular (LV) dP/dt was lower than that in WT hearts. During low-flow ischemia and postischemic reperfusion in vitro, KD hearts failed to augment glucose uptake and glycolysis, although glucose transporter content and insulin-stimulated glucose uptake were normal. KD hearts also failed to increase fatty acid oxidation during reperfusion. Furthermore, KD hearts demonstrated significantly impaired recovery of LV contractile function during postischemic reperfusion that was associated with a lower ATP content and increased injury compared with WT hearts. Caspase-3 activity and TUNEL-staining were increased in KD hearts after ischemia and reperfusion. Thus, AMPK is responsible for activation of glucose uptake and glycolysis during low-flow ischemia and plays an important protective role in limiting damage and apoptotic activity associated with ischemia and reperfusion in the heart.

Authors

Raymond R. Russell III, Ji Li, David L. Coven, Marc Pypaert, Christoph Zechner, Monica Palmeri, Frank J. Giordano, James Mu, Morris J. Birnbaum, Lawrence H. Young

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Citations to this article in year 2016 (17)

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YC Lai, DM Tabima, JJ Dube, KS Hughan, DA Goncharov, RR Vanderpool, CM st. Croix, A Garcia-Ocaña, EA Goncharova, SP Tofovic, AL Mora, MT Gladwin
Circulation 2016
Possible Role of Interaction between PPAR α and Cyclophilin D in Cardioprotection of AMPK against In Vivo Ischemia-Reperfusion in Rats
G Barreto-Torres, S Javadov
PPAR Research 2016
Targeting the energy guardian AMPK: another avenue for treating cardiomyopathy?
T Li, S Jiang, Z Yang, Z Ma, W Yi, D Wang, Y Yang
Cellular and Molecular Life Sciences 2016
Intravenous Administration of Lycopene, a Tomato Extract, Protects against Myocardial Ischemia-Reperfusion Injury
C Tong, C Peng, L Wang, L Zhang, X Yang, P Xu, J Li, T Delplancke, H Zhang, H Qi
Nutrients 2016
Lost in translation: miRNAs and mRNAs in ischemic preconditioning and ischemia/reperfusion injury
RA Gottlieb, S Pourpirali
Journal of Molecular and Cellular Cardiology 2016
The protective effect of trimetazidine on myocardial ischemia/reperfusion injury through activating AMPK and ERK signaling pathway
Z Liu, JM Chen, H Huang, M Kuznicki, S Zheng, W Sun, N Quan, L Wang, H Yang, HM Guo, J Li, J Zhuang, P Zhu
Metabolism 2016
AMPK is critical for mitochondrial function during reperfusion after myocardial ischemia
VG Zaha, D Qi, KN Su, M Palmeri, HY Lee, X Hu, X Wu, GI Shulman, PS Rabinovitch, RR rd, LH Young
Journal of Molecular and Cellular Cardiology 2016
Insulin Signaling in Bupivacaine-induced Cardiac Toxicity: Sensitization during Recovery and Potentiation by Lipid Emulsion
MR Fettiplace, K Kowal, R Ripper, A Young, K Lis, I Rubinstein, M Bonini, R Minshall, G Weinberg
Anesthesiology 2016
Cereblon in health and disease
HK Kim, TH Ko, B Nyamaa, SR Lee, N Kim, KS Ko, BD Rhee, CS Park, B Nilius, J Han
Pflügers Archiv - European Journal of Physiology 2016
Protection against cardiac hypertrophy by geniposide involves the GLP-1 receptor / AMPKα signalling pathway: Geniposide protects against cardiac hypertrophy
ZG Ma, J Dai, WB Zhang, Y Yuan, HH Liao, N Zhang, ZY Bian, QZ Tang
British Journal of Pharmacology 2016
Macrophage migration inhibitory factor promotes cardiac stem cell proliferation and endothelial differentiation through the activation of the PI3K/Akt/mTOR and AMPK pathways
J Cui, F Zhang, Y Wang, J Liu, X Ming, J Hou, B Lv, S Fang, B Yu
International journal of molecular medicine 2016
Cardiac-Specific Deletion of the Pdha1 Gene Sensitizes Heart to Toxicological Actions of Ischemic Stress
W Sun, N Quan, L Wang, H Yang, D Chu, Q Liu, X Zhao, J Leng, J Li
Toxicological Sciences 2016
Cardioprotection by combination of three compounds from ShengMai preparations in mice with myocardial ischemia/reperfusion injury through AMPK activation-mediated mitochondrial fission
F Li, X Fan, Y Zhang, L Pang, X Ma, M Song, J Kou, B Yu
Scientific Reports 2016
Thapsigargin sensitizes human esophageal cancer to TRAIL-induced apoptosis via AMPK activation
Z Ma, C Fan, Y Yang, S Di, W Hu, T Li, Y Zhu, J Han, Z Xin, G Wu, J Zhao, X Li, X Yan
Scientific Reports 2016
Frontline Science: D1 dopaminergic receptor signaling activates the AMPK-bioenergetic pathway in macrophages and alveolar epithelial cells and reduces endotoxin-induced ALI
NB Bone, Z Liu, JF Pittet, JW Zmijewski
Journal of leukocyte biology 2016
The Emerging Role of Thioredoxin-Interacting Protein in Myocardial Ischemia/Reperfusion Injury
BF Wang, J Yoshioka
Journal of cardiovascular pharmacology and therapeutics 2016
Early glycogen synthase kinase‐3β and protein phosphatase 2A independent tau dephosphorylation during global brain ischaemia and reperfusion following cardiac arrest and the role of the adenosine monophosphate kinase pathway
S Majd, JH Power, SA Koblar, HJ Grantham, P Bolam
The European journal of neuroscience 2016

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