In vitro fertilization causes excessive glycogen accumulation in mouse placenta

糖原 过剩3 过剩1 胎盘 生物 糖原合酶 男科 葡萄糖转运蛋白 糖原磷酸化酶 葛兰素史克-3 GSK3B公司 内分泌学 卵巢 磷酸化酶激酶 内科学 体外受精 怀孕 胚胎 磷酸化 胎儿 细胞生物学 医学 遗传学 胰岛素
作者
Jie Dong,Xiangyu Guo,Chenxi Qian,Jingjing Wang,Hui Lei,Shuqiang Chen
出处
期刊:Placenta [Elsevier]
卷期号:114: 29-38 被引量:4
标识
DOI:10.1016/j.placenta.2021.08.050
摘要

Children conceived by assisted reproductive technologies have a high risk of suffering from obstetrical complications and long-term health problems, but the related mechanisms are not fully understood. Normal placental function is closely linked with foetal growth and future health. Given the significance of glycogen metabolism in placentas, we investigated the effect of in vitro fertilization (IVF) on glycogen storage in placentas using a mouse model.Mouse placentas were collected at E18.5 after natural mating or IVF, and the placental and foetal weights were recorded. The quantitative assay kit and histological staining were used to measure the glycogen content. Additionally, we detected the expression of multiple genes associated with glycogen synthesis/decomposition, glucose transporters, and the phosphorylation of Akt and Gsk3β.Our findings showed that IVF resulted in a significantly increased mouse placental weight and enlarged junctional area. We found, compared to the control, excessive glycogen was accumulated in IVF placentas. However, we observed that multiple genes involved in glycogen generation (Gsk3b, Phka1, Phkb, Phkg1, and Phkg2) and glycogenolysis (Agl and Pygm) had lower mRNA levels in IVF placentas. Moreover, the expression levels of glycogen synthase, phosphorylase, Glut1, and Glut3 were significantly decreased in IVF placentas. The phosphorylation activities of Akt Ser473 and Gsk3β Ser9 were inhibited in IVF placentas.IVF leads to enlarged mouse placentas with excessive glycogen storage in late pregnancy, and these abnormal changes may be associated with the activation of the Akt-Gsk3β pathway.
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