Inhibition of eNOS by L-NAME resulting in rat hind limb developmental defects through PFKFB3 mediated angiogenetic

Ziqiang Wu1,2, Huan Yao1, Huan Xu1

  • 1Chengdu University of Traditional Chinese Medicine, College of Basic Medicine, Chengdu, Sichuan, China.

Scientific Reports
|October 8, 2020
PubMed

Insights

Nitric oxide synthase (NOS) inhibition by L-NAME impairs embryonic rat hind limb development, causing defects via the PFKFB3 pathway. This study highlights the L-arginine/NOS/NO pathway

Area of Science:

  • Developmental Biology
  • Vascular Biology
  • Molecular Biology

Background:

  • The L-arginine/nitric oxide synthase/nitric oxide (NOS/NO) pathway is crucial for vascular health.
  • The impact of NOS inhibition on late embryonic development, particularly limb formation, remains unclear.

Purpose of the Study:

  • To investigate the role of NOS inhibition by L-NAME in late embryonic rat hind limb development.
  • To elucidate the underlying molecular mechanisms involving the PFKFB3-mediated angiogenetic pathway.

Main Methods:

  • Administration of L-NAME to pregnant rats at embryonic day 13.5.
  • Harvesting embryos from E16.5 to E20.5 for analysis.
  • Histological staining (H&E), immunofluorescence, immunohistochemistry, HUVEC culture, PFKFB3 manipulation, qPCR, and Western blot analysis.

Main Results:

  • L-NAME treatment led to severe hind limb developmental defects, including hemorrhage.
  • NOS inhibition suppressed hind limb angiogenesis by impairing endothelial and smooth muscle cell differentiation and extracellular matrix synthesis.
  • L-NAME suppressed PFKFB3 expression, and PFKFB3 knockdown inhibited angiogenesis and related gene expression.

Conclusions:

  • The L-arginine-eNOS-NO pathway is essential for normal rat hind limb development during late embryogenesis.
  • NOS inhibition disrupts hind limb development through the PFKFB3-mediated pathway.
  • This study provides a potential animal model and therapeutic target for embryonic hind limb developmental defects.