Y-27632 Impairs Angiogenesis on Extra-Embryonic Vasculature in Post-Gastrulation Chick Embryos

Johannes W Duess1,2,3, Jan-Hendrik Gosemann1,2, Anna Kaskova Gheorghescu3

  • 1Department of Pediatric Surgery, University of Leipzig, 04103 Leipzig, Germany.

Toxics
|February 28, 2023
PubMed

Insights

Y-27632 treatment impairs blood vessel formation in chick embryos by inhibiting Rho-associated coiled-coil-containing protein kinase (ROCK) signaling, potentially causing ventral body wall defects due to failed angiogenesis.

Area of Science:

  • Developmental Biology
  • Cell Signaling
  • Vascular Biology

Background:

  • Rho-associated coiled-coil-containing protein kinase (ROCK) signaling regulates embryonic development, including angiogenesis, via actin cytoskeleton control.
  • ROCK is crucial for vascular endothelial growth factor (VEGF) signaling pathways.
  • Y-27632, a ROCK inhibitor, causes ventral body wall defects (VBWDs) in chick embryos, possibly linked to impaired angiogenesis.

Purpose of the Study:

  • To investigate the effects of Y-27632 on angiogenesis in post-gastrulation chick embryos.
  • To determine if Y-27632-induced angiogenesis impairment contributes to VBWDs.

Main Methods:

  • Chick embryos were cultured and treated with Y-27632 or vehicle.
  • Angiogenesis was assessed by observing extra-embryonic blood vessel formation and yolk sac circulation.
  • Fractal analysis, Western blot, and RT-PCR were used to evaluate vascular development and molecular signaling.

Main Results:

  • Y-27632 treatment led to reduced extra-embryonic blood vessel formation and impaired yolk sac circulation.
  • ROCK downstream signaling was inhibited, evidenced by decreased phosphorylated myosin light chain.
  • Gene expression of VEGF and VEGFR-2 increased post-treatment, with elevated VEGF protein levels observed later.

Conclusions:

  • Y-27632 administration impairs angiogenesis in early chick embryos.
  • Inhibition of ROCK signaling affects VEGF pathway components.
  • Impaired angiogenesis is a potential mechanism contributing to Y-27632-induced VBWDs.