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Updated: Aug 13, 2026

In Vitro Differentiation of Human Pluripotent Stem Cells into Trophoblastic Cells
Published on: March 16, 2017
Src family kinases play multiple roles in differentiation of trophoblasts from human term placenta
Georges Daoud1, Eric Rassart, André Masse
1Laboratoire de Physiologie materno-foetale, Département des Sciences Biologiques, Université du Québec à Montréal, C.P. 8888, Succursale Centre-ville, Montréal, Canada, H3C 3P8.
Abstract:
Tyrosine phosphorylation plays a major role in controlling many biological processes in different cell types. Src family kinases (SFKs) are one of the most studied groups of tyrosine kinases and can mediate a variety of signalling pathways. However, little is known about the expression of SFKs in human term placenta and their implication in trophoblast differentiation. Therefore, we examined the expression profile of SFK members over time in culture and their implication in differentiation. In vitro, freshly isolated cytotrophoblast cells, cultured in 10% fetal bovine serum (FBS), spontaneously aggregate and fuse to form multinucleated cells that resemble phenotypically mature syncytiotrophoblasts, that concomitantly produce human chorionic gonadotropin (hCG) and human placental lactogen (hPL). In this study, we showed that trophoblasts expressed all SFK members and some of them are expressed as different splice variants. Moreover, using real-time PCR, this study showed two different expression profiles of SFKs in human trophoblasts during culture. In addition, the protein level and phosphorylation status of Src were evaluated using specific antibodies. Src was rapidly phosphorylated at Tyr-416 and dephosphorylated at Tyr-527 after FBS addition. Surprisingly, inhibition of SFKs by 4-amino-5-(4-chlorophenyl)-7-(t-butyl) pyrazolo[3,4-d] pyrimidine (PP2) or herbimycin A had different effects on trophoblast differentiation. While herbimycin A inhibited morphological and hormonal differentiation, PP2 stimulated hormonal differentiation and inhibited cell adhesion and spreading with no effect on cell fusion. In summary, this study showed that SFKs play different roles in trophoblast differentiation, probably depending on SFK members activated. Thus, this study increases our knowledge and understanding of pathology related to impaired trophoblast differentiation such as pre-eclampsia and trophoblast neoplasm.
Insights
Src family kinases (SFKs) are crucial for human trophoblast differentiation. This study reveals SFKs have varied roles, impacting placental development and diseases like pre-eclampsia.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Tyrosine phosphorylation regulates critical cellular processes.
- Src family kinases (SFKs) are key mediators of signaling pathways.
- SFK roles in human placenta and trophoblast differentiation are largely unknown.
Purpose of the Study:
- To investigate SFK expression in human term placenta.
- To determine SFK involvement in trophoblast differentiation.
- To elucidate SFK splice variants and their functional implications.
Main Methods:
- Primary human cytotrophoblast cell culture with FBS.
- Real-time PCR for SFK gene expression analysis.
- Western blotting for Src protein and phosphorylation status.
- Pharmacological inhibition of SFKs using PP2 and herbimycin A.
Main Results:
- All SFK members are expressed in trophoblasts, with splice variants present.
- SFK expression profiles varied during trophoblast culture.
- Src phosphorylation (Tyr-416) increased, and dephosphorylation (Tyr-527) occurred upon FBS stimulation.
- Herbimycin A inhibited differentiation, while PP2 differentially affected differentiation, adhesion, and fusion.
Conclusions:
- SFKs play diverse roles in trophoblast differentiation, potentially member-specific.
- Understanding SFK function is vital for pathologies like pre-eclampsia and trophoblast neoplasms.
- This research enhances knowledge of placental development and related disorders.
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