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Glucagon impairs placental lactogen secretion by human trophoblast
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Fetal growth restriction (FGR) is associated with elevated fetal glucagon and reduced maternal placental lactogen (hPL) plasma concentrations. In sheep, fetal glucagon inhibits placental lactogen secretion into maternal circulation. To investigate whether glucagon similarly regulates hPL secretion by human trophoblast, we examined glucagon receptor (GCGR) concentrations and glucagon’s effect on hPL secretion using BeWo choriocarcinoma and primary human trophoblast (PHT) cells. We hypothesized treating trophoblast cells with glucagon would inhibit hPL secretion. GCGR localization and quantification was determined by immunohistochemistry (IHC), RNAscope, and western blotting. GCGR localized to the basal (fetal-facing) membrane of the syncytiotrophoblast, with minimal localization in the maternal-facing microvillous membrane. hPL and human chorionic gonadotropin (hCG) expression and secretion were quantified by qPCR and ELISA. In BeWo cells, forskolin did not change GCGR concentrations and increased human chorionic gonadotropin alpha CGA mRNA (CGα; P<0.0001). Unexpectedly, it decreased chorionic somatomammotropin 1 mRNA (CSH1; P<0.0001) and reduced both hPL (P<0.0001) and hCG (P=0.0012) secretion. Glucagon also reduced hPL secretion (P=0.0018) in non-forskolin treated BeWo cells. In PHTs, GCGR concentrations remained unchanged over duration of culture. PHT cells increased hCG (P=0.0140) with time in culture. hPL secretion followed a biphasic pattern, and glucagon inhibited both CSH1 mRNA (P<0.0100) and hPL secretion during the latter secretory phase (P=0.0313). These findings confirm GCGR localizes on the fetal-facing membrane of PHTs and demonstrate that glucagon inhibits hPL secretion in human trophoblasts, consistent with prior sheep studies. Our results link fetal glucagon to placental endocrine adaptations in pregnancies affected by placental insufficiency and FGR.
Title: Glucagon impairs placental lactogen secretion by human trophoblast
Description:
Fetal growth restriction (FGR) is associated with elevated fetal glucagon and reduced maternal placental lactogen (hPL) plasma concentrations.
In sheep, fetal glucagon inhibits placental lactogen secretion into maternal circulation.
To investigate whether glucagon similarly regulates hPL secretion by human trophoblast, we examined glucagon receptor (GCGR) concentrations and glucagon’s effect on hPL secretion using BeWo choriocarcinoma and primary human trophoblast (PHT) cells.
We hypothesized treating trophoblast cells with glucagon would inhibit hPL secretion.
GCGR localization and quantification was determined by immunohistochemistry (IHC), RNAscope, and western blotting.
GCGR localized to the basal (fetal-facing) membrane of the syncytiotrophoblast, with minimal localization in the maternal-facing microvillous membrane.
hPL and human chorionic gonadotropin (hCG) expression and secretion were quantified by qPCR and ELISA.
In BeWo cells, forskolin did not change GCGR concentrations and increased human chorionic gonadotropin alpha CGA mRNA (CGα; P<0.
0001).
Unexpectedly, it decreased chorionic somatomammotropin 1 mRNA (CSH1; P<0.
0001) and reduced both hPL (P<0.
0001) and hCG (P=0.
0012) secretion.
Glucagon also reduced hPL secretion (P=0.
0018) in non-forskolin treated BeWo cells.
In PHTs, GCGR concentrations remained unchanged over duration of culture.
PHT cells increased hCG (P=0.
0140) with time in culture.
hPL secretion followed a biphasic pattern, and glucagon inhibited both CSH1 mRNA (P<0.
0100) and hPL secretion during the latter secretory phase (P=0.
0313).
These findings confirm GCGR localizes on the fetal-facing membrane of PHTs and demonstrate that glucagon inhibits hPL secretion in human trophoblasts, consistent with prior sheep studies.
Our results link fetal glucagon to placental endocrine adaptations in pregnancies affected by placental insufficiency and FGR.
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