Pregestational diabetes (PGDM) leads to developmental impairment, especially cardiac dysfunction, in their offspring. The hyperglycemic microenvironment inside the uterus alters the cardiac plasticity characterized by electrical and structural remodeling of the heart. The altered expression of several transcription factors due to hyperglycemia during fetal development might be responsible for molecular defects and phenotypic changes in the heart. The molecular mechanism of the developmental defects in the heart due to PGDM remains unclear. To understand the molecular defects in the 2-days old neonatal rats, streptozotocin-induced diabetic female rats were bred with healthy male rats. We collected 2-day-old hearts from the neonates and ident...
<div><p>Hyperglycemia in diabetic mothers enhances the risk of fetal cardiac hypertrophy during gest...
Hyperglycemia in diabetic mothers enhances the risk of fetal cardiac hypertrophy during gestation. H...
International audienceOBJECTIVE: To evaluate modifications of arterial structure, gene expression, a...
Pregestational diabetes (PGDM) leads to developmental impairment, especially cardiac dysfunction, in...
Pregestational diabetes (PGDM) leads to developmental impairment, especially cardiac dysfunction, in...
Pregestational diabetes (PGDM) leads to developmental impairment, especially cardiac dysfunction, in...
Copyright © 2015 Erin E. Gordon et al.This is an open access article distributed under the Creative ...
Objective(s): Gestational diabetes increases the risk of congenital heart disease in the offspring, ...
<div><p>Abstract Purpose: To investigate the cause of congenital anomalies resulted from gestationa...
Abstract Purpose: To investigate the cause of congenital anomalies resulted from gestational diabet...
Objective: The purpose of this study was to examine the effect of maternal type 1 diabetes on the st...
Objective: The purpose of this study was to examine the effect of maternal type 1 diabetes on the st...
<p>Aim/hypothesis:In utero exposure to maternal diabetes increases the risk of developing hypertensi...
Background: Diabetes mellitus with uncontrolled hyperglycaemia is a major cause of cardiovascular co...
IntroductionPrevious studies have demonstrated that exposed to the initial suboptimal intrauterine e...
<div><p>Hyperglycemia in diabetic mothers enhances the risk of fetal cardiac hypertrophy during gest...
Hyperglycemia in diabetic mothers enhances the risk of fetal cardiac hypertrophy during gestation. H...
International audienceOBJECTIVE: To evaluate modifications of arterial structure, gene expression, a...
Pregestational diabetes (PGDM) leads to developmental impairment, especially cardiac dysfunction, in...
Pregestational diabetes (PGDM) leads to developmental impairment, especially cardiac dysfunction, in...
Pregestational diabetes (PGDM) leads to developmental impairment, especially cardiac dysfunction, in...
Copyright © 2015 Erin E. Gordon et al.This is an open access article distributed under the Creative ...
Objective(s): Gestational diabetes increases the risk of congenital heart disease in the offspring, ...
<div><p>Abstract Purpose: To investigate the cause of congenital anomalies resulted from gestationa...
Abstract Purpose: To investigate the cause of congenital anomalies resulted from gestational diabet...
Objective: The purpose of this study was to examine the effect of maternal type 1 diabetes on the st...
Objective: The purpose of this study was to examine the effect of maternal type 1 diabetes on the st...
<p>Aim/hypothesis:In utero exposure to maternal diabetes increases the risk of developing hypertensi...
Background: Diabetes mellitus with uncontrolled hyperglycaemia is a major cause of cardiovascular co...
IntroductionPrevious studies have demonstrated that exposed to the initial suboptimal intrauterine e...
<div><p>Hyperglycemia in diabetic mothers enhances the risk of fetal cardiac hypertrophy during gest...
Hyperglycemia in diabetic mothers enhances the risk of fetal cardiac hypertrophy during gestation. H...
International audienceOBJECTIVE: To evaluate modifications of arterial structure, gene expression, a...