Endothelial Colony-Forming Cells Dysfunctions Are Associated with Arterial Hypertension in a Rat Model of

Stephanie Simoncini1, Hanna Coppola2, Angela Rocca2

  • 1Aix Marseille Univ, Institut National de la Santé Et de la Recherche Médicale (INSERM), Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement (INRAe), Center from Cardiovascular and Nutrition research (C2VN), UMR-S 1263, UFR de Pharmacie, Campus Santé, 13385 Marseille, France.

Insights

Infants born with intrauterine growth restriction (IUGR) show impaired endothelial colony-forming cell (ECFC) function in adulthood. This dysfunction is linked to increased blood pressure and oxidative stress, contributing to hypertension risk.

Area of Science:

  • Cardiovascular Biology
  • Developmental Biology
  • Endothelial Cell Biology

Background:

  • Infants born after intrauterine growth restriction (IUGR) face elevated risks of adult arterial hypertension.
  • The endothelium, particularly endothelial colony-forming cells (ECFCs), is crucial for vascular health and repair.
  • Previous studies indicated impaired ECFC function in newborns with IUGR, but persistence into adulthood and hypertension links were unknown.

Purpose of the Study:

  • To investigate if early ECFC alterations persist in adult offspring born after IUGR.
  • To determine the association between persistent ECFC dysfunction and the development of arterial hypertension in a rat model of IUGR.

Main Methods:

  • A rat model of IUGR was established using a maternal low-protein diet.
  • Systolic blood pressure and microvascular density were assessed in six-month-old offspring.
  • ECFCs were isolated and analyzed for surface markers, proliferation, capillary-like structure formation, and angiogenic potential.
  • Markers of oxidative stress and premature senescence were quantified in ECFCs.

Main Results:

  • IUGR male rats exhibited increased systolic blood pressure and reduced microvascular density.
  • Adult IUGR male ECFCs showed altered CD31/CD146 expression, reduced proliferation, and impaired angiogenesis.
  • ECFC dysfunction was associated with increased oxidative stress and premature senescence markers.

Conclusions:

  • Early-life IUGR leads to persistent ECFC dysfunction in adulthood.
  • Impaired ECFC functionality in IUGR offspring is linked to arterial hypertension and vascular rarefaction.
  • These findings highlight ECFCs as a potential therapeutic target for preventing hypertension in IUGR individuals.

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