scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1038375852 |
P356 | DOI | 10.1186/1475-2840-12-142 |
P932 | PMC publication ID | 3851327 |
P698 | PubMed publication ID | 24093550 |
P5875 | ResearchGate publication ID | 257460471 |
P50 | author | Hemang Patel | Q37370664 |
P2093 | author name string | Juan Chen | |
Mahendra Kavdia | |||
Kumuda C Das | |||
P2860 | cites work | Biochemistry, physiology, and pathophysiology of NADPH oxidases in the cardiovascular system | Q26991619 |
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Subcellular localization of Nox4 and regulation in diabetes | Q28566200 | ||
Normalizing mitochondrial superoxide production blocks three pathways of hyperglycaemic damage | Q29616101 | ||
Heme oxygenase-1 protects retinal endothelial cells against high glucose- and oxidative/nitrosative stress-induced toxicity | Q31083347 | ||
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Assessment and treatment of endothelial dysfunction in humans | Q33731648 | ||
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Increasing glucose 6-phosphate dehydrogenase activity restores redox balance in vascular endothelial cells exposed to high glucose | Q34489884 | ||
Effects of antihypertensive drugs on endothelial dysfunction: clinical implications | Q34510978 | ||
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Oxidative stress and endothelial function: therapeutic interventions | Q83934632 | ||
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Endothelial cells (ECs) for vascular tissue engineering: venous ECs are less thrombogenic than arterial ECs | Q85488090 | ||
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Impact of mitochondrial ROS production in the pathogenesis of diabetes mellitus and its complications | Q36690229 | ||
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Oxidative stress and diabetic cardiovascular disorders: roles of mitochondria and NADPH oxidase | Q37731341 | ||
Diabesity: therapeutic options | Q37762294 | ||
Nrf2-ARE stress response mechanism: A control point in oxidative stress-mediated dysfunctions and chronic inflammatory diseases | Q37785105 | ||
Cellular dysfunction in diabetes as maladaptive response to mitochondrial oxidative stress | Q37976675 | ||
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Vascular memory: can we broaden the concept of the metabolic memory? | Q38006502 | ||
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Hyperglycemia and vascular metabolic memory: truth or fiction? | Q38086111 | ||
Resveratrol protects vascular endothelial cells from high glucose-induced apoptosis through inhibition of NADPH oxidase activation-driven oxidative stress | Q39144504 | ||
Mechanism of reversal of high glucose-induced endothelial nitric oxide synthase uncoupling by tanshinone IIA in human endothelial cell line EA.hy926. | Q39260102 | ||
Hyperglycemia and oxidative stress in cultured endothelial cells--a comparison of primary endothelial cells with an immortalized endothelial cell line. | Q39361437 | ||
Different modulation of dipeptidyl peptidase-4 activity between microvascular and macrovascular human endothelial cells | Q39705884 | ||
NO/peroxynitrite dynamics of high glucose-exposed HUVECs: chemiluminescent measurement and computational model | Q39861568 | ||
Activation of NF-E2-related factor-2 reverses biochemical dysfunction of endothelial cells induced by hyperglycemia linked to vascular disease | Q39960465 | ||
Proteomic profiling of human retinal and choroidal endothelial cells reveals molecular heterogeneity related to tissue of origin. | Q40144267 | ||
Differential effects of curcumin on vasoactive factors in the diabetic rat heart. | Q42075250 | ||
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Total and cardiovascular disease mortality predicted by metabolic syndrome is inferior relative to its components | Q42972070 | ||
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Hydrogen peroxide activates endothelial nitric-oxide synthase through coordinated phosphorylation and dephosphorylation via a phosphoinositide 3-kinase-dependent signaling pathway. | Q43823904 | ||
Hyperglycemia reduces nitric oxide synthase and glycogen synthase activity in endothelial cells | Q44180582 | ||
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High glucose condition increases NADPH oxidase activity in endothelial microparticles that promote vascular inflammation. | Q45027017 | ||
Hydrogen peroxide acts as both vasodilator and vasoconstrictor in the control of perfused mouse mesenteric resistance arteries | Q45270242 | ||
Ascorbic acid and uric acid suppress glucose-induced fibronectin and vascular endothelial growth factor production in human endothelial cells | Q45298767 | ||
Critical effect of VEGF in the process of endothelial cell apoptosis induced by high glucose | Q46379963 | ||
Enhanced mitochondrial superoxide in hyperglycemic endothelial cells: direct measurements and formation of hydrogen peroxide and peroxynitrite | Q46974160 | ||
Endothelial Nox4 NADPH oxidase enhances vasodilatation and reduces blood pressure in vivo. | Q47254622 | ||
C-peptide reduces high-glucose-induced apoptosis of endothelial cells and decreases NAD(P)H-oxidase reactive oxygen species generation in human aortic endothelial cells. | Q53231716 | ||
P407 | language of work or name | English | Q1860 |
P921 | main subject | hyperglycemia | Q271993 |
oxidative stress | Q898814 | ||
P304 | page(s) | 142 | |
P577 | publication date | 2013-10-05 | |
P1433 | published in | Cardiovascular Diabetology | Q2468083 |
P1476 | title | Hyperglycemia induces differential change in oxidative stress at gene expression and functional levels in HUVEC and HMVEC. | |
P478 | volume | 12 |
Q39565276 | A microdialysis method to measure in vivo hydrogen peroxide and superoxide in various rodent tissues. |
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Q41922933 | Azilsartan, an angiotensin II type 1 receptor blocker, restores endothelial function by reducing vascular inflammation and by increasing the phosphorylation ratio Ser(1177)/Thr(497) of endothelial nitric oxide synthase in diabetic mice |
Q35278126 | Beneficial effect of troxerutin on diabetes-induced vascular damages in rat aorta: histopathological alterations and antioxidation mechanism |
Q34708380 | Bmi1 enhances skeletal muscle regeneration through MT1-mediated oxidative stress protection in a mouse model of dystrophinopathy |
Q54982064 | CD40-mediated HIF-1α expression underlying microangiopathy in diabetic nerve pathology. |
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Q64260539 | Carnosol as a Nrf2 Activator Improves Endothelial Barrier Function Through Antioxidative Mechanisms |
Q40105411 | Comparative effects of microvascular and macrovascular disease on the risk of major outcomes in patients with type 2 diabetes |
Q46246551 | Decreased EDHF-mediated relaxation is a major mechanism in endothelial dysfunction in resistance arteries in aged mice on prolonged high-fat sucrose diet |
Q36775423 | Deregulation of arginase induces bone complications in high-fat/high-sucrose diet diabetic mouse model |
Q28068603 | Diabetes mellitus and oxidative stress-A concise review |
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Q34324055 | Endothelial Na+/H+ exchanger NHE1 participates in redox-sensitive leukocyte recruitment triggered by methylglyoxal |
Q35858496 | Genetic risk factors affecting mitochondrial function are associated with kidney disease in people with Type 1 diabetes. |
Q91660619 | Hedgehog pathway inhibition causes primary follicle atresia and decreases female germline stem cell proliferation capacity or stemness |
Q37347292 | High Glucose Induces Reactivation of Latent Kaposi's Sarcoma-Associated Herpesvirus |
Q36195357 | Identification of novel targets of diabetic nephropathy and PEDF peptide treatment using RNA-seq |
Q51766095 | Impact of carbonylation on glutathione peroxidase-1 activity in human hyperglycemic endothelial cells. |
Q41870337 | Induced peroxidase and cytoprotective enzyme expressions support adaptation of HUVECs to sustain subsequent H2O2 exposure |
Q36274208 | Interpretation of metabolic memory phenomenon using a physiological systems model: What drives oxidative stress following glucose normalization? |
Q111441864 | Longitudinal shear stress response in human endothelial cells to atheroprone and atheroprotective conditions |
Q38575779 | Markers of Oxidative Stress during Diabetes Mellitus. |
Q46373924 | Mechanism of Generation of Oxidative Stress and Pathophysiology of Type 2 Diabetes Mellitus: How Are They Interlinked? |
Q36847079 | MicroRNAs in Hyperglycemia Induced Endothelial Cell Dysfunction |
Q37595822 | Nitrones reverse hyperglycemia-induced endothelial dysfunction in bovine aortic endothelial cells |
Q35073993 | Plasma extracellular superoxide dismutase concentration, allelic variations in the SOD3 gene and risk of myocardial infarction and all-cause mortality in people with type 1 and type 2 diabetes |
Q34432247 | Polyphenol fraction of extra virgin olive oil protects against endothelial dysfunction induced by high glucose and free fatty acids through modulation of nitric oxide and endothelin-1. |
Q59792692 | Programming of Vascular Dysfunction in the Intrauterine Milieu of Diabetic Pregnancies |
Q38478574 | ROS signaling and redox biology in endothelial cells |
Q37726715 | The effect of alogliptin on pulmonary function in obese patients with type 2 diabetes inadequately controlled by metformin monotherapy |
Q46708553 | The novel NADPH oxidase 4 inhibitor GLX351322 counteracts glucose intolerance in high-fat diet-treated C57BL/6 mice |
Q39223951 | The use of human umbilical vein endothelial cells (HUVECs) as an in vitro model to assess the toxicity of nanoparticles to endothelium: a review |
Q92923522 | Vascular Endothelium in Neonatal Sepsis: Basic Mechanisms and Translational Opportunities |
Q88985401 | Vascular endothelial dysfunction, a major mediator in diabetic cardiomyopathy |
Q33684215 | Vascular endothelial growth factor-D modulates oxidant-antioxidant balance of human vascular endothelial cells |
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