Type 2 diabetes mellitus induces congenital heart defects in murine embryos by increasing oxidative stress, endoplasmic reticulum stress, and apoptosis

被引:77
作者
Wu, Yanqing [1 ]
Reece, Albert [1 ,2 ]
Zhong, Jianxiang [1 ]
Dong, Daoyin [1 ]
Shen, Wei-Bin [1 ]
Harman, Christopher R. [1 ]
Yang, Peixin [1 ,2 ]
机构
[1] Univ Maryland, Sch Med, Dept Obstet Gynecol & Reprod Sci, Baltimore, MD 21201 USA
[2] Univ Maryland, Sch Med, Dept Biochem & Mol Biol, Baltimore, MD 21201 USA
关键词
apoptosis; endoplasmic reticulum stress; heart defects; oxidative stress; type 2 diabetes mellitus; UNFOLDED PROTEIN RESPONSE; CARDIOVASCULAR MALFORMATIONS; HIGH GLUCOSE; OUTFLOW TRACT; TRIGGERS; GENE; INFANTS; PATHWAY; LEADS; MICE;
D O I
10.1016/j.ajog.2016.03.036
中图分类号
R71 [妇产科学];
学科分类号
100211 ;
摘要
BACKGROUND: Maternal type 1 and 2 diabetes mellitus are strongly associated with high rates of severe structural birth defects, including congenital heart defects. Studies in type 1 diabetic embryopathy animal models have demonstrated that cellular stress-induced apoptosis mediates the teratogenicity of maternal diabetes leading to congenital heart defect formation. However, the mechanisms underlying maternal type 2 diabetes mellituseinduced congenital heart defects remain largely unknown. OBJECTIVE: We aim to determine whether oxidative stress, endoplasmic reticulum stress, and excessive apoptosis are the intracellular molecular mechanisms underlying maternal type 2 diabetes mellituse induced congenital heart defects. STUDY DESIGN: A mouse model of maternal type 2 diabetes mellitus was established by feeding female mice a high-fat diet (60% fat). After 15 weeks on the high-fat diet, the mice showed characteristics of maternal type 2 diabetes mellitus. Control dams were either fed a normal diet (10% fat) or the high-fat diet during pregnancy only. Female mice from the highfat diet group and the 2 control groups were mated with male mice that were fed a normal diet. At E12.5, embryonic hearts were harvested to determine the levels of lipid peroxides and superoxide, endoplasmic reticulum stress markers, cleaved caspase 3 and 8, and apoptosis. E17.5 embryonic hearts were harvested for the detection of congenital heart defect formation using India ink vessel patterning and histological examination. RESULTS: Maternal type 2 diabetes mellitus significantly induced ventricular septal defects and persistent truncus arteriosus in the developing heart, along with increasing oxidative stress markers, including superoxide and lipid peroxidation; endoplasmic reticulum stress markers, including protein levels of phosphorylated-protein kinase RNA-like endoplasmic reticulum kinase, phosphorylated-IRE1 alpha, phosphorylated-eIF2 alpha, C/EBP homologous protein, and binding immunoglobulin protein; endoplasmic reticulum chaperone gene expression; and XBP1 messenger RNA splicing, as well as increased cleaved caspase 3 and 8 in embryonic hearts. Furthermore, maternal type 2 diabetes mellitus triggered excessive apoptosis in ventricular myocardium, endocardial cushion, and outflow tract of the embryonic heart. CONCLUSION: Similar to those observations in type 1 diabetic embryopathy, maternal type 2 diabetes mellitus causes heart defects in the developing embryo manifested with oxidative stress, endoplasmic reticulum stress, and excessive apoptosis in heart cells.
引用
收藏
页码:366.e1 / 366.e10
页数:10
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