4.5 Article

Maternal exercise and growth restriction in rats alters placental angiogenic factors and blood space area in a sex-specific manner

期刊

PLACENTA
卷 74, 期 -, 页码 47-54

出版社

W B SAUNDERS CO LTD
DOI: 10.1016/j.placenta.2018.12.005

关键词

Exercise; Fetal programming; Growth restriction; Angiogenesis; Placenta; Vasculogenesis

资金

  1. National Health and Medical Research Council (NHMRC) of Australia [1045602]
  2. 2013 Diabetes Australia Research Trust Research Project
  3. Faculty of Medicine, Dentistry and Health Science Postdoctoral Fellowship at the University of Melbourne
  4. La Trobe University Post Graduate Award
  5. Malaysia Government Scholarship

向作者/读者索取更多资源

Fetal growth and development are dependent on adequate placental nutrient transfer. The surface area of the placental villous network is a key determinant of nutrient exchange, which is regulated by vasculogenic and angiogenic factors. These factors are altered by intrauterine growth restriction (IUGR) and maternal obesity in both the first (F1) and second (F2) generations. We investigated the impact of endurance exercise in IUGR dams fed a High-fat diet on placental vasculogenesis and angiogenesis. Uteroplacental insufficiency (Restricted) or sham (Control) surgery was induced on embryonic day (E) 18 in Wistar-Kyoto rats. F1 offspring were fed a Chow or High-fat diet from weaning, and at 16 weeks were further allocated an exercise protocol; Sedentary, Exercised prior to and during pregnancy (Exercise), or Exercised during pregnancy only (PregEx). Females were mated (20 weeks) and F2 placentae collected at E20. Maternal Restriction, High-fat feeding and Exercise had a minimal impact on placental regulators of vasculogenesis and angiogenesis. However, Restriction increased placental labyrinth tissue area in Chow-fed dams. PregEx induced overt adaptations, including increased VEGFA and decreased PLGF protein expression, and reduced blood space area. These alterations were sex-dependent and associated with alterations in miRNA27a, a known regulator of VEGF translation. These data highlight that maternal exercise initiated during pregnancy (PregEx) causes alterations in placental vasculogenesis and angiogenesis in a sex-dependent manner, with minimal Restriction and maternal diet effects. However, further investigation is required to determine if these adaptations are beneficial or harmful for maternal and fetoplacental outcomes.

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