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Fetal Echocardiography and Pulsed-wave Doppler Ultrasound in a Rabbit Model of Intrauterine Growth Restriction
Published on: June 29, 2013
Placental insufficiency leads to development of hypertension in growth-restricted offspring
1Department of Physiology and Biophysics, University of Mississippi Medical Center, 2500 N State St, Jackson, MS 39216-4505, USA. balexander@physiology.umsmed.edu
Insights
Low birth weight in offspring, resulting from placental insufficiency, is linked to hypertension. This study shows reduced uterine perfusion in pregnant rats leads to low birth weight and elevated blood pressure in offspring.
Area of Science:
- Physiology
- Developmental Biology
- Cardiovascular Science
Background:
- Low birth weight is a potential risk factor for hypertension development.
- Intrauterine growth restriction (IUGR) may impact long-term cardiovascular health.
Purpose of the Study:
- To investigate if a rat model of IUGR due to placental insufficiency is associated with elevated blood pressure.
- To determine the relationship between reduced birth weight and hypertension in offspring.
Main Methods:
- Created a model of placental insufficiency by reducing uterine perfusion in pregnant rats.
- Monitored blood pressure and body weight in offspring from 4 to 12 weeks of age.
- Assessed glomerular filtration rate (GFR) in 12-week-old male offspring.
Main Results:
- Reduced uterine perfusion resulted in low-birth-weight offspring.
- Growth-restricted offspring exhibited significantly elevated mean arterial pressure at 4, 8, and 12 weeks of age.
- Hypertensive male offspring at 12 weeks showed no alterations in GFR, even when adjusted for kidney weight.
Conclusions:
- Placental insufficiency induced by reduced uterine perfusion in rats leads to low-birth-weight offspring.
- These low-birth-weight offspring are predisposed to developing hypertension.
- The hypertension observed in this model is not immediately associated with impaired kidney filtration.
Abstract:
Low birth weight is a suggested risk factor for the development of hypertension. The purpose of the present study was to determine whether a model of intrauterine growth restriction produced in response to placental insufficiency in the pregnant rat was associated with marked elevations in blood pressure. Reduced uterine perfusion initiated in late gestation resulted in low-birth-weight offspring (5.8+/-0.1 versus 6.6+/-0.2 g, P<0.05, growth-restricted versus control, respectively). Mean arterial pressure, as measured in conscious, chronically instrumented rats, was significantly elevated as early as 4 weeks of age (113+/-3 versus 98+/-2 mm Hg, P<0.05) and was associated with significant decreases in body weight (66+/-2 versus 81+/-3 g, P<0.05) in growth-restricted (n=15) versus control (n=15) rats. Marked elevations in arterial pressure at 8 weeks of age (male: 133+/-3 versus 121+/-6 mm Hg, P<0.05; female: 137+/-4 versus 112+/-6 mm Hg, P<0.01) were associated with sex-specific decreases in body weight (male: 251+/-6 versus 275+/-10 g, P<0.05; female: 163+/-6 versus 180+/-6 g) in male growth-restricted (n=12) versus male control (n=9) rats and in female growth-restricted (n=8) versus female control (n=7) rats. At 12 weeks of age, hypertensive (144+/-4 versus 131+/-3 mm Hg, P<0.05) male growth-restricted offspring (n=10) had no alterations in glomerular filtration rate (2.3+/-0.3 versus 2.2+/-0.2 mL/min) compared with control (n=10) offspring; even when adjusted for kidney weight (1.7+/-0.3 versus 1.5+/-0.3 mL x min(-1) x g(-1) kidney), despite marked decreases in body weight (305+/-9 versus 343+/-10 g, P<0.05). These data suggest that placental insufficiency induced by reduced uterine perfusion in the pregnant rat results in low-birth-weight offspring predisposed to development of hypertension.
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