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An In Vivo Estrogen Deficiency Mouse Model for Screening Exogenous Estrogen Treatments of Cardiovascular Dysfunction After Menopause
Published on: August 13, 2019
Estrogen protects against increased blood pressure in postpubertal female growth restricted offspring
Norma B Ojeda1, Daniela Grigore, Elliott B Robertson
1Department of Physiology, Center for Excellence in Cardiovascular-Renal Research, University of Mississippi Medical Center, Jackson, MS 39216-4505, USA.
Insights
Estrogen plays a key role in normalizing blood pressure in female rats with intrauterine growth restriction. This study shows estrogen replacement therapy and renin-angiotensin system blockade reversed hypertension in growth-restricted female rats.
Area of Science:
- Reproductive Endocrinology
- Cardiovascular Physiology
- Developmental Programming
Background:
- Placental insufficiency in rats causes intrauterine growth restriction (IUGR) and hypertension in prepubertal offspring.
- While male IUGR offspring remain hypertensive post-puberty, females normalize blood pressure, coinciding with peak estrogen levels.
Purpose of the Study:
- To investigate the role of estrogen in the sex-specific normalization of blood pressure in adult female rats with IUGR.
- To determine if estrogen deficiency exacerbates hypertension in adult female IUGR rats.
Main Methods:
- Female control and IUGR rats underwent ovariectomy or sham surgery at 10 weeks of age.
- Telemetry probes measured mean arterial pressure (MAP) at 16 weeks.
- Estrogen replacement or renin-angiotensin system blockade was administered to a subset of ovariectomized rats.
Main Results:
- Ovariectomy significantly increased MAP in IUGR females (140±2 mmHg) but not controls (124±1 mmHg).
- Estrogen replacement normalized MAP in ovariectomized IUGR females (111±3 mmHg).
- Renin-angiotensin system blockade also abolished hypertension in ovariectomized IUGR females (106±2 mmHg).
Conclusions:
- Estrogen contributes to the normalization of blood pressure in adult female rats with IUGR.
- This study highlights sex differences in the long-term cardiovascular consequences of IUGR and the protective role of estrogen.
Abstract:
Placental insufficiency in the rat results in intrauterine growth restriction and development of hypertension in prepubertal male and female growth-restricted offspring. However, after puberty, only male growth-restricted offspring remain hypertensive, whereas female growth-restricted offspring stabilize their blood pressure to levels comparable to adult female controls. Because female rats reach their maximum levels of estrogen at puberty, we hypothesize that estrogen may be a factor involved in the stabilization of blood pressure in adult female growth-restricted offspring. At 10 weeks of age, female control and growth-restricted offspring underwent ovariectomy or sham surgery and insertion of a telemetry probe. Mean arterial pressure was similar at 16 weeks of age between control (123+/-4 mm Hg) and growth-restricted offspring (122+/-2 mm Hg); however, ovariectomy led to a significant increase in blood pressure in growth-restricted offspring (140+/-2 mm Hg; P<0.05 versus intact counterpart) with no significant effect in controls (124+/-1 mm Hg). Estrogen replacement by subcutaneous minipellet initiated at 14 weeks of age in a subset of ovariectomized control and growth-restricted offspring reversed the effect of ovariectomy on blood pressure in growth-restricted offspring at 16 weeks of age (111+/-3 mm Hg; P<0.05 versus ovariectomized counterpart); renin angiotensin system blockade also abolished ovariectomy-induced hypertension in female growth-restricted offspring (106+/-2 mm Hg; P<0.05 versus ovariectomized counterpart). Therefore, sex differences are observed in this model of fetal programmed hypertension, and results from this study suggest that estrogen contributes to normalization of blood pressure in adult female growth-restricted offspring.
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