Key result
Placental FKBPL protein expression was significantly downregulated in type 1 diabetes (p<0.05), while SIRT-1 was significantly downregulated in gestational diabetes mellitus (p<0.05) compared to healthy controls.
Why the study?
The roles of critical angiogenesis regulators FKBPL and SIRT-1 in pregnancies affected by diabetes have not been examined in detail.
Does diabetes in pregnancy and high glucose alter FKBPL and SIRT-1 expression and impact angiogenesis?
Observational (n=22)
No
Does diabetes in pregnancy and high glucose alter FKBPL and SIRT-1 expression and impact angiogenesis?
p-value: p=<0.05
FKBPL and SIRT-1 are downregulated in diabetic pregnancies, which may contribute to vascular dysfunction and impaired placental angiogenesis.
FKBPL and SIRT-1 dysregulation identified in diabetic pregnancies; leaves open their biomarker or therapeutic potential pending validation.
Diabetes in pregnancy is associated with adverse pregnancy outcomes including preterm birth. Although the mechanisms leading to these pregnancy complications are still poorly understood, aberrant angiogenesis and endothelial dysfunction play a key role. FKBPL and SIRT-1 are critical regulators of angiogenesis, however, their roles in pregnancies affected by diabetes have not been examined before in detail. Hence, this study aimed to investigate the role of FKBPL and SIRT-1 in pre-gestational (type 1 diabetes mellitus, T1D) and gestational diabetes mellitus (GDM). Placental protein expression of important angiogenesis proteins, FKBPL, SIRT-1, PlGF and VEGF-R1, was determined from pregnant women with GDM or T1D, and in the first trimester trophoblast cells exposed to high glucose (25 mM) and varying oxygen concentrations [21%, 6.5%, 2.5% (ACH-3Ps)]. Endothelial cell function was assessed in high glucose conditions (30 mM) and following FKBPL overexpression. Placental FKBPL protein expression was downregulated in T1D (FKBPL; p<0.05) whereas PlGF/VEGF-R1 were upregulated (p<0.05); correlations adjusted for gestational age were also significant. In the presence of GDM, only SIRT-1 was significantly downregulated (p<0.05) even when adjusted for gestational age (r=-0.92, p=0.001). Both FKBPL and SIRT-1 protein expression was reduced in ACH-3P cells in high glucose conditions associated with 6.5%/2.5% oxygen concentrations compared to experimental normoxia (21%; p<0.05). FKBPL overexpression in endothelial cells (HUVECs) exacerbated reduction in tubule formation compared to empty vector control, in high glucose conditions (junctions; p<0.01, branches; p<0.05). In conclusion, FKBPL and/or SIRT-1 downregulation in response to diabetic pregnancies may have a key role in the development of vascular dysfunction and associated complications affected by impaired placental angiogenesis.
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Alqudah et al. (2021) conducted an observational in Diabetes in pregnancy (Type 1 Diabetes and Gestational Diabetes Mellitus) (n=22). Diabetes in pregnancy (T1D or GDM) vs. Healthy pregnant controls was evaluated on Placental protein expression of FKBPL and SIRT-1 (p=<0.05). Placental FKBPL protein expression was significantly downregulated in type 1 diabetes (p<0.05), while SIRT-1 was significantly downregulated in gestational diabetes mellitus (p<0.05) compared to healthy controls.
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