Placental glucose and amino acid transport in calorie-restricted wild-type and Glut3 null heterozygous mice
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The Programming Power of the PlacentaPlacental Responses to Changes in the Maternal Environment Determine Fetal GrowthPlacental Origins of Chronic Disease.Adenoviral-mediated placental gene transfer of IGF-1 corrects placental insufficiency via enhanced placental glucose transport mechanisms.Differential microRNA expression in human placentas of term intra-uterine growth restriction that regulates target genes mediating angiogenesis and amino acid transport.At Term, XmO and XpO Mouse Placentas Show Differences in Glucose Metabolism in the Trophectoderm-Derived Outer ZoneGenetic variations in the GLUT3 gene associated with myelomeningoceleA physiological increase in insulin suppresses muscle-specific ubiquitin ligase gene activation in fetal sheep with sustained hypoglycemiaPrenatal caloric restriction enhances DNA methylation and MeCP2 recruitment with reduced murine placental glucose transporter isoform 3 expressionIncreased placental nutrient transport in a novel mouse model of maternal obesity with fetal overgrowth.Adiponectin supplementation in pregnant mice prevents the adverse effects of maternal obesity on placental function and fetal growth.Placental phenotype and resource allocation to fetal growth are modified by the timing and degree of hypoxia during mouse pregnancy.Intrauterine Growth Restriction: Hungry for an AnswerIntrauterine calorie restriction affects placental DNA methylation and gene expressionDown-regulation of placental mTOR, insulin/IGF-I signaling, and nutrient transporters in response to maternal nutrient restriction in the baboon.The SLC38 family of sodium-amino acid co-transporters.Gestational food restriction decreases placental interleukin-10 expression and markers of autophagy and endoplasmic reticulum stress in murine intrauterine growth restriction.Maternal Calorie Restriction Causing Uteroplacental Insufficiency Differentially Affects Mammalian Placental Glucose and Leucine Transport Molecular Mechanisms.AMPK knockdown in placental trophoblast cells results in altered morphology and function.GLUT3 gene expression is critical for embryonic growth, brain development and survival.Transplacental Nutrient Transport Mechanisms of Intrauterine Growth Restriction in Rodent Models and Humans.Early dietary restriction in rats alters skeletal muscle tuberous sclerosis complex, ribosomal s6 and mitogen-activated protein kinase.
P2860
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P2860
Placental glucose and amino acid transport in calorie-restricted wild-type and Glut3 null heterozygous mice
description
2012 nî lūn-bûn
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2012年の論文
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2012年論文
@yue
2012年論文
@zh-hant
2012年論文
@zh-hk
2012年論文
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2012年論文
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2012年论文
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2012年论文
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2012年论文
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name
Placental glucose and amino ac ...... d Glut3 null heterozygous mice
@ast
Placental glucose and amino ac ...... d Glut3 null heterozygous mice
@en
type
label
Placental glucose and amino ac ...... d Glut3 null heterozygous mice
@ast
Placental glucose and amino ac ...... d Glut3 null heterozygous mice
@en
prefLabel
Placental glucose and amino ac ...... d Glut3 null heterozygous mice
@ast
Placental glucose and amino ac ...... d Glut3 null heterozygous mice
@en
P2093
P2860
P356
P1433
P1476
Placental glucose and amino ac ...... d Glut3 null heterozygous mice
@en
P2093
Amit Ganguly
Laura Collis
Sherin U Devaskar
P2860
P304
P356
10.1210/EN.2011-1973
P407
P577
2012-06-14T00:00:00Z