High fructose diet suppresses exercise-induced increase in AQP7 expression in the in vivo rat heart

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High fructose diet suppresses exercise-induced increase in AQP7 expression in the in vivo rat heart is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.14744/ANATOLJCARDIOL.2016.6958
P8608Fatcat IDrelease_nypaxxidxnftfbevqsnbt47pgy
P932PMC publication ID5324910
P698PubMed publication ID27182614

P2093author name stringAziz Karaca
Ebru Taştekin
Fatma Nesrin Turan
Orkide Palabıyık
Selma Arzu Vardar
P2860cites workSucrose, high-fructose corn syrup, and fructose, their metabolism and potential health effects: what do we really know?Q24629127
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The influence of a pre-exercise sports drink (PRX) on factors related to maximal aerobic performanceQ33751776
The SLC2 (GLUT) family of membrane transportersQ33926133
Fructose modulates cardiomyocyte excitation-contraction coupling and Ca²⁺ handling in vitroQ34042977
Metabolic effects of fructose and the worldwide increase in obesity.Q34093669
Diet or exercise interventions vs combined behavioral weight management programs: a systematic review and meta-analysis of direct comparisonsQ34266700
Physical activity offsets the negative effects of a high-fructose dietQ34353165
AQP4-dependent water transport plays a functional role in exercise-induced skeletal muscle adaptationsQ34631897
Fatty acid homeostasis in the normoxic and ischemic heartQ35531455
Exercise training prevents diastolic dysfunction induced by metabolic syndrome in ratsQ36104100
Aquaporins and glycerol metabolismQ36400012
Metabolic, hemodynamic and structural adjustments to low intensity exercise training in a metabolic syndrome modelQ36972275
Fructose in perspectiveQ37003980
Molecular regulation of cardiac hypertrophyQ37137070
Carbohydrate and exercise performance: the role of multiple transportable carbohydratesQ37767344
Eccentric and concentric cardiac hypertrophy induced by exercise training: microRNAs and molecular determinants.Q37924622
The role of fructose-enriched diets in mechanisms of nonalcoholic fatty liver diseaseQ37963122
Regulation of plasma fructose and mortality in mice by the aldose reductase inhibitor lidorestatQ42139014
The heart requires glycerol as an energy substrate through aquaporin 7, a glycerol facilitatorQ42451072
Preventive role of exercise training in autonomic, hemodynamic, and metabolic parameters in rats under high risk of metabolic syndrome developmentQ43867681
Exercise enhances myocardial ischemic tolerance via an opioid receptor-dependent mechanismQ44336609
Fructose transporter GLUT5 expression in clear renal cell carcinomaQ45036054
Phosphoinositide 3-kinase p110α is a master regulator of exercise-induced cardioprotection and PI3K gene therapy rescues cardiac dysfunctionQ45879808
Alternate-day fasting diet improves fructose-induced insulin resistance in mice.Q47928315
Extracellular glycerol regulates the cardiac energy balance in a working rat heart model.Q51487808
The expression of aquaporin 8 and aquaporin 9 in fetal membranes and placenta in term pregnancies complicated by idiopathic polyhydramniosQ54414344
Fructose consumption enhances glucocorticoid action in rat visceral adipose tissueQ57579690
Catecholamine metabolic pathways and exercise training. Plasma and urine catecholamines, metabolic enzymes, and chromogranin-AQ68069853
Mechanism of sympathetic activation during prolonged physical exercise in dogs. The role of hepatic glucoreceptorsQ70177170
Fructose diet treatment in mice induces fundamental disturbance of cardiomyocyte Ca2+ handling and myofilament responsivenessQ83132399
P433issue12
P304page(s)916-922
P577publication date2016-04-26
P1433published inAnatolian Journal of CardiologyQ15716765
P1476titleHigh fructose diet suppresses exercise-induced increase in AQP7 expression in the in vivo rat heart
P478volume16

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cites work (P2860)
Q33616976Fructose Consumption in the Development of Obesity and the Effects of Different Protocols of Physical Exercise on the Hepatic Metabolism
Q47233139Implications of Aquaglyceroporin 7 in Energy Metabolism

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