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The 4-vessel Sampling Approach to Integrative Studies of Human Placental Physiology In Vivo
Published on: August 2, 2017
Human supraphysiological gestational weight gain and fetoplacental vascular dysfunction
1Cellular and Molecular Physiology Laboratory (CMPL), Division of Obstetrics and Gynaecology, School of Medicine, Faculty of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile.
Insights
Supraphysiological gestational weight gain (spGWG) in normal-weight women impairs fetoplacental vascular reactivity by reducing endothelial nitric oxide synthase (eNOS) activity and adenosine transport. This highlights spGWG as a risk factor for adverse neonatal outcomes.
Area of Science:
- Obstetrics and Gynecology
- Maternal-Fetal Medicine
- Cardiovascular Physiology
Background:
- Maternal obesity and excessive gestational weight gain are linked to adverse pregnancy outcomes, including cardiovascular disease and neonatal complications.
- Understanding the impact of supraphysiological gestational weight gain (spGWG) on fetoplacental endothelial function is crucial for improving neonatal health.
Purpose of the Study:
- To investigate whether supraphysiological gestational weight gain (spGWG) leads to human fetoplacental endothelial dysfunction.
- To assess the effects of spGWG on fetoplacental vascular reactivity in women with normal prepregnancy weight.
Main Methods:
- Human umbilical vein endothelial cells (HUVECs) and umbilical vein rings were isolated from women with physiological (pGWG) or supraphysiological (spGWG) gestational weight gain.
- Vascular reactivity to insulin was measured in vein rings using wire myography.
- Endothelial nitric oxide synthase (eNOS) expression and phosphorylation, and adenosine transport via human equilibrative nucleoside transporter 1 (hENT1) were analyzed in HUVECs.
Main Results:
- spGWG was associated with reduced nitric oxide synthase (NOS) activity-dependent vasodilation and lower eNOS expression in umbilical vein rings.
- Maximal adenosine transport activity was reduced in HUVECs from the spGWG group, despite increased hENT1 expression.
- Chlorpromazine (CPZ) enhanced hENT1-mediated adenosine transport and membrane accumulation only in cells from the pGWG group.
Conclusions:
- Supraphysiological gestational weight gain in normal-weight women impairs fetoplacental vascular reactivity.
- The observed endothelial dysfunction is attributed to downregulated eNOS activity and impaired adenosine transport in HUVECs.
- Maternal spGWG poses a risk to fetoplacental endothelial function, and interventions targeting these alterations may improve neonatal outcomes.
Objective:
Human foetal development and growth in an environment of maternal obesity associates with high risk of cardiovascular disease and adverse neonatal outcome. We studied whether supraphysiological gestational weight gain results in human fetoplacental endothelial dysfunction and altered fetoplacental vascular reactivity.
Methods:
Primary cultures of human umbilical vein endothelial cells (HUVECs) and umbilical vein rings were obtained from pregnant women (112 total of patients recruited, 7 patients dropped out) exhibiting prepregnancy normal weight that ended with a physiological (pGWG (n=67), total weight gain 11.5-16 kg, rates of weight gain ≤0.42 kg per week) or supraphysiological (spGWG (n=38), total weight gain >16 kg, rates of weight gain >0.42 kg per week) gestational weight gain (reference values from US Institute of Medicine guidelines). Vascular reactivity to insulin (0.1-1000 nmol l(-1), 5 min) in KCl-preconstricted vein rings was measured using a wire myograph. Protein levels of human equilibrative nucleoside transporter 1 (hENT1), total and Ser(1177)- or Thr(495)-phosphorylated endothelial nitric oxide synthase (eNOS) were detected by western blot or immunofluorescence, and adenosine transport (0-250 μmol l(-1) adenosine, 2 μCi ml(-1) [(3)H]adenosine, 20 s, 25 °C) was measured in the presence or absence of 1 μmol l(-1) nitrobenzylthioinosine (hENT1 inhibitor) or 10 μmol l(-1) chlorpromazine (CPZ, endocytosis inhibitor) in HUVECs.
Results:
spGWG associates with reduced NOS activity-dependent dilation of vein rings (P=0.001), lower eNOS expression and higher Thr(495) (P=0.044), but unaltered Ser(1177)eNOS phosphorylation. hENT1-adenosine maximal transport activity was reduced (P=0.041), but the expression was increased (P=0.001) in HUVECs from this group. CPZ increased hENT1-adenosine transport (P=0.040) and hENT1 plasma membrane accumulation only in cells from pGWG.
Conclusion:
spGWG in women with a normal prepregnancy weight causes lower fetoplacental vascular reactivity owing to the downregulation of eNOS activity and adenosine transport in HUVECs. Maternal spGWG is a detrimental condition for human fetoplacental endothelial function and reducing these alterations could result in a better neonate outcome.
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