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Updated: Mar 20, 2026

In Vitro Differentiation of Human Pluripotent Stem Cells into Trophoblastic Cells
Published on: March 16, 2017
Human trophoblast cell during first trimester after IVF-ET differs from natural conceived pregnancy in development
Rui Yang1, Ying-Ying Liu1, Liang Zhao1
1Reproductive Medical Center, Department of Obstetrics and Gynecology, Peking University Third Hospital, Key Laboratory of Assisted Reproduction, Ministry of Education and Beijing Key Laboratory of Reproductive Endocrinology and Assisted Reproduction, Beijing, China.
Objective:
To explore the differences of the trophoblast cell function in first trimester between natural pregnancy and pregnancy after IVF-ET therapy.
Methods:
102 cases with twin to singleton fetal reduction after IVF-ET treatment from July 2010 to August 2013 in Peking University Third Hospital were involved in analysis, and eight specimens were obtained from this group. 10 natural-pregnancy cases undergoing artificial abortion with unwanted pregnancy were recruited as control. Semi-quantitative immunohistochemical method was used to detect the expression of EGFR, Bcl-2, tubulin-α, metallothionein and AFP in villi in both groups.
Results:
Of the 102 cases, 14 cases (13.73%) were aborted. Preterm birth occurred in seven cases (7.86%). Low birth weight occurred in three patients (3.37%), and extremely low birth weight occurred in four cases (4.49%). The expression of EGFR, tubulin-α, Bcl-2, and metallothionein in the IVF-ET group was significantly lower than that in the control group (P<0.05). However, AFP expression was significantly higher in IVF-ET group than in control group (P<0.05). In IVF-ET group, the miscarriage case had weaker EGFR, tubulin-α, and metallothionein expression than full-term pregnancy; the early preterm labor case had weaker Bcl-2, tubulin-α, and metallothionein expression; and velamentous cord insertion case had weaker tubulin-α expression.
Conclusions:
The trophoblast cell function of IVF-ET group in first trimester is different from control group in proliferation, invasion, apoptosis and vascular development, and optimal pregnancy outcome depends on the self-healing balance of trophoblast cells.
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