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Updated: Dec 6, 2025

A Rapid In Vivo Bioassay for Developmentally Active Enhancers
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.
Abstract:
L-arginine/NOS/NO signaling pathway plays a critical role in controlling variety of vascular diseases. However, whether NOS inhibition by L-NAME suppresses late embryonic development is undefined. The aim of this study is to determine whether NOS inhibition by L-NAME is critical for late embryonic rat hind limb development. The pregnant rat at E13.5 administrated L-NAME by consecutive intraperitoneal injection. The embryos been harvested from E16.5 to E 20.5. Hematoxylin and Eosin Staining, Immunofluorescence and Immunohistochemistry performed to determine hind limb Vasculogenesis, HUVEC culture, Adenoviral PFKFB3 infection, Real time PCR and western blot were performed to determine whether L-arginine/NOS/NO pathway controlling late embryonic hind limb development through PFKFB3 mediated angiogenetic pathway. NOS inhibition by L-NAME resulting in late embryonic hind limb developmental defects characterized by severe hemorrhage. The in vivo studies showed that NOS inhibition strongly suppressed hind limb angiogenetic remodeling by impairing differentiation of endothelial cells and smooth muscle cells, and extracellular matrix synthesis. For underlie mechanism, our studies indicated that L-NAME treatment dramatically suppresses PFKFB3 expression in hematopoietic progenitor cells, tubulogenetic endothelial cells and smooth muscle cells. Knockdown of PFKFB3 dramatically inhibits the expression of angiogenetic genes, as well as tubulogenesis and extracellular matrix related genes. Taken together, our data in this study demonstrated that L-arginine-eNOS-NO pathway is important for rat hind limb development during late embryonic stage. This could be both a useful animal model and a promising therapeutic treatment for defects of late embryonic developmental hind limbs.
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.
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