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Placental OLAH Levels Are Altered in Fetal Growth Restriction, Preeclampsia and Models of Placental Dysfunction
Natasha de Alwis1,2,3,4, Sally Beard1,2,3,4, Natalie K Binder1,2,4
1Therapeutics Discovery and Vascular Function in Pregnancy Group, Mercy Hospital for Women, Heidelberg, VIC 3084, Australia.
Insights
Oleoyl-ACP Hydrolase (OLAH) gene expression is altered in placental dysfunction, a key factor in preterm preeclampsia and fetal growth restriction. OLAH may be a therapeutic target for placental diseases.
Area of Science:
- Obstetrics and Gynecology
- Molecular Biology
- Biochemistry
Background:
- Placental dysfunction underlies fetal growth restriction and preeclampsia.
- Elevated Oleoyl-ACP Hydrolase (OLAH) transcripts were previously found in maternal circulation during preterm fetal growth restriction.
Purpose of the Study:
- To investigate OLAH gene expression and protein levels in human placental tissue.
- To explore the functional role of OLAH in placental cells and its potential involvement in placental dysfunction.
Main Methods:
- Quantitative PCR (qPCR) to assess OLAH mRNA expression throughout pregnancy.
- Western blot to determine OLAH protein levels in placental tissue.
- Investigating OLAH function by silencing its expression in cultured cytotrophoblasts.
Main Results:
- Placental OLAH expression increases with gestational age.
- Elevated OLAH mRNA and protein in preterm preeclampsia placentas; reduced OLAH protein in growth-restricted placentas within the preeclamptic cohort.
- Silencing OLAH in cytotrophoblasts affected apoptosis, growth, and oxidative stress gene expression (BAX, BCL2, IGF2, NOX4).
Conclusions:
- OLAH plays a role in placental function and may be implicated in placental dysfunction.
- OLAH represents a potential therapeutic target for pregnancy complications.
- Further research is needed to clarify OLAH's precise role and its adaptive or consequential nature in disease.
Abstract:
Previously, we identified elevated transcripts for the gene Oleoyl-ACP Hydrolase (OLAH) in the maternal circulation of pregnancies complicated by preterm fetal growth restriction. As placental dysfunction is central to the pathogenesis of both fetal growth restriction and preeclampsia, we aimed to investigate OLAH levels and function in the human placenta. We assessed OLAH mRNA expression (qPCR) throughout pregnancy, finding placental expression increased as gestation progressed. OLAH mRNA and protein levels (Western blot) were elevated in placental tissue from cases of preterm preeclampsia, while OLAH protein levels in placenta from growth-restricted pregnancies were comparatively reduced in the preeclamptic cohort. OLAH expression was also elevated in placental explant tissue, but not isolated primary cytotrophoblast cultured under hypoxic conditions (as models of placental dysfunction). Further, we discovered that silencing cytotrophoblast OLAH reduced the expression of pro- and anti-apoptosis genes, BAX and BCL2, placental growth gene, IGF2, and oxidative stress gene, NOX4. Collectively, these findings suggest OLAH could play a role in placental dysfunction and may be a therapeutic target for mitigating diseases associated with this vital organ. Further research is required to establish the role of OLAH in the placenta, and whether these changes may be a maternal adaptation or consequence of disease.
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