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Canrenone Restores Vasorelaxation Impaired by Marinobufagenin in Human Preeclampsia
Natalia I Agalakova1, Yulia N Grigorova1, Ivan A Ershov2
1Sechenov Institute of Evolutionary Physiology and Biochemistry, 194223 St. Petersburg, Russia.
Abstract:
Previous studies implicated cardiotonic steroids, including Na/K-ATPase inhibitor marinobufagenin (MBG), in the pathogenesis of preeclampsia (PE). Recently, we demonstrated that (i) MBG induces fibrosis in rat tissues via a mechanism involving Fli1, a negative regulator of collagen-1 synthesis, and (ii) MBG sensitive Na/K-ATPase inhibition is reversed by mineralocorticoid antagonists. We hypothesized that in human PE elevated MBG level is associated with the development of fibrosis of the umbilical arteries and that this fibrosis can be attenuated by canrenone. Fifteen patients with PE (mean BP = 118 ± 4 mmHg; 34 ± 2 years; 38 ± 0.3 weeks gest. age) and twelve gestational age-matched normal pregnant subjects (mean BP = 92 ± 2 mmHg; 34 ± 1 years; 39 ± 0.2 weeks gest. age) were enrolled in the study. PE was associated with a higher plasma MBG level, with a four-fold decrease in Fli1 level and a three-fold increase in collagen-1 level in the PE umbilical arteries vs. those from the normal subjects (p < 0.01). Isolated rings of umbilical arteries from the subjects with PE exhibited impaired responses to the relaxant effect of sodium nitroprusside vs. control vessels (EC50 = 141 nmol/L vs. EC50 = 0.9 nmol/L; p < 0.001). The effects of PE on Fli1 and collagen-1 were blocked by the in vitro treatment of umbilical arteries by 10 μmol/L canrenone. Similar results were obtained for umbilical arteries pretreated with MBG. These data demonstrate that elevated MBG level is implicated in the development of the fibrosis of umbilical arteries in PE, and that this could be blocked by mineralocorticoid antagonists.
Insights
Elevated marinobufagenin (MBG) in preeclampsia (PE) causes umbilical artery fibrosis by reducing Fli1 and increasing collagen-1. Mineralocorticoid antagonists like canrenone can block this process, offering potential therapeutic avenues.
Area of Science:
- Cardiovascular Biology
- Reproductive Medicine
- Endocrinology
Background:
- Cardiotonic steroids, such as marinobufagenin (MBG), are implicated in preeclampsia (PE) pathogenesis.
- MBG induces tissue fibrosis via Fli1 and collagen-1 regulation.
- Mineralocorticoid antagonists can reverse MBG-sensitive Na/K-ATPase inhibition.
Purpose of the Study:
- To investigate the association between elevated MBG levels and umbilical artery fibrosis in human PE.
- To determine if canrenone can attenuate MBG-induced fibrosis in PE umbilical arteries.
Main Methods:
- Comparative analysis of plasma MBG, umbilical artery Fli1, and collagen-1 levels in PE patients versus normal pregnant subjects.
- Assessment of umbilical artery ring responses to sodium nitroprusside.
- In vitro treatment of umbilical arteries with canrenone and MBG.
Main Results:
- PE patients exhibited higher plasma MBG, lower umbilical artery Fli1, and higher collagen-1 levels compared to controls (p < 0.01).
- PE umbilical arteries showed impaired vasodilation responses.
- Canrenone treatment blocked the PE-associated changes in Fli1 and collagen-1, and similar effects were observed with MBG pretreatment.
Conclusions:
- Elevated MBG levels contribute to umbilical artery fibrosis in preeclampsia.
- This fibrosis, characterized by reduced Fli1 and increased collagen-1, can be mitigated by mineralocorticoid antagonists.
- Canrenone shows potential in blocking the fibrotic effects of MBG in PE.
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