Skeletal muscle MnSOD, mitochondrial complex II, and SIRT3 enzyme activities are decreased in maternal obesity during human pregnancy and gestational diabetes mellitus
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Elevated mitochondrial oxidative stress impairs metabolic adaptations to exercise in skeletal muscleGestational diabetes is characterized by reduced mitochondrial protein expression and altered calcium signaling proteins in skeletal muscleMitochondrial toxicity in human pregnancy: an update on clinical and experimental approaches in the last 10 years.ROS-triggered phosphorylation of complex II by Fgr kinase regulates cellular adaptation to fuel useEffects of maternal diet and exercise during pregnancy on glucose metabolism in skeletal muscle and fat of weanling ratsFemale offspring sired by diet induced obese male mice display impaired blastocyst development with molecular alterations to their ovaries, oocytes and cumulus cellsPositive Correlation between Enhanced Expression of TLR4/MyD88/NF-κB with Insulin Resistance in Placentae of Gestational Diabetes Mellitus.Mesenchymal Stem Cells From Infants Born to Obese Mothers Exhibit Greater Potential for Adipogenesis: The Healthy Start BabyBUMP Project.Plasma Markers of Oxidative Stress in Patients with Gestational Diabetes Mellitus in the Second and Third Trimester.Maternal and in utero determinants of type 2 diabetes risk in the young.Roles of sirtuins in the regulation of antioxidant defense and bioenergetic function of mitochondria under oxidative stress.Interleukin 37 reverses the metabolic cost of inflammation, increases oxidative respiration, and improves exercise tolerance.Obesity and Gestational Diabetes Mellitus Pathways for Programming in Mouse, Monkey, and Man—Where Do We Go Next? The 2014 Norbert Freinkel Award Lecture.Arsenic Induces Insulin Resistance in Mouse Adipocytes and Myotubes Via Oxidative Stress-Regulated Mitochondrial Sirt3-FOXO3a Signaling Pathway.Resveratrol improves high-fat diet induced insulin resistance by rebalancing subsarcolemmal mitochondrial oxidation and antioxidantion.Maternal obesity alters fatty acid oxidation, AMPK activity, and associated DNA methylation in mesenchymal stem cells from human infants.Comparison of Total Antioxidant Capacity of Saliva in Women with Gestational diabetes mellitus and Non-diabetic Pregnant Women.Altered gene expression and metabolism in fetal umbilical cord mesenchymal stem cells correspond with differences in 5-month-old infant adiposity gain.The postpartum effect of maternal diabetes on the circulating levels of sirtuins and superoxide dismutase.Aerobic Interval Training Regulated SIRT3 Attenuates High-Fat-Diet-Associated Cognitive Dysfunction.The protective effect of procyanidinson tert-butyl hydroperoxide induced human hepatocyte HL7702 cell injury
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P2860
Skeletal muscle MnSOD, mitochondrial complex II, and SIRT3 enzyme activities are decreased in maternal obesity during human pregnancy and gestational diabetes mellitus
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 16 August 2013
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Skeletal muscle MnSOD, mitocho ...... gestational diabetes mellitus
@en
Skeletal muscle MnSOD, mitocho ...... gestational diabetes mellitus.
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type
label
Skeletal muscle MnSOD, mitocho ...... gestational diabetes mellitus
@en
Skeletal muscle MnSOD, mitocho ...... gestational diabetes mellitus.
@nl
prefLabel
Skeletal muscle MnSOD, mitocho ...... gestational diabetes mellitus
@en
Skeletal muscle MnSOD, mitocho ...... gestational diabetes mellitus.
@nl
P2093
P2860
P921
P356
P1476
Skeletal muscle MnSOD, mitocho ...... gestational diabetes mellitus
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P2093
Jacob E Friedman
Rachel C Janssen
Sean A Newsom
P2860
P304
P356
10.1210/JC.2013-1943
P407
P577
2013-08-16T00:00:00Z