MEDI0639: a novel therapeutic antibody targeting Dll4 modulates endothelial cell function and angiogenesis in vivo

David W Jenkins1, Sarah Ross, Margaret Veldman-Jones

  • 1Oncology iMED, AstraZeneca R&D Boston, Waltham, Massachusetts, USA.

Insights

MEDI0639, a novel antibody, targets the Delta-like ligand 4 (Dll4)-Notch1 pathway. It modulates angiogenesis by inhibiting Dll4-Notch1 interactions, impacting tumor growth and vasculature formation.

Area of Science:

  • Cellular biology
  • Molecular signaling
  • Angiogenesis research

Background:

  • The Delta-like ligand (Dll) 4-Notch1 pathway is crucial for blood vessel formation during physiological and tumor angiogenesis.
  • Disrupting Dll4-Notch1 interaction can impede tumor growth by increasing nonfunctional vasculature and reducing perfusion.

Purpose of the Study:

  • To investigate the function of MEDI0639, a human therapeutic antibody targeting Dll4.
  • To characterize MEDI0639's mechanism of action in inhibiting the Dll4-Notch1 interaction and its effects on angiogenesis.

Main Methods:

  • In vitro assays assessing MEDI0639's inhibition of Dll4-Notch1 binding and its effects on endothelial cell growth and tubule formation.
  • Three-dimensional (3D) and two-dimensional (2D) endothelial cell culture models to evaluate tubule formation.
  • In vivo human endothelial cell angiogenesis assay to assess MEDI0639's impact on vessel formation and mural cell coverage.

Main Results:

  • MEDI0639 inhibits Dll4-Notch1 binding via a novel epitope, reversing Notch1-mediated suppression of endothelial cell growth.
  • In 3D assays, MEDI0639 stimulated tubule formation by disrupting Dll4-Notch signaling; in 2D assays, it potently inhibited tubule formation.
  • In vivo, MEDI0639 promoted human vessel formation and reduced smooth muscle actin-positive mural cell coverage.

Conclusions:

  • MEDI0639 is a potent modulator of the Dll4-Notch signaling pathway.
  • The antibody demonstrates dual effects on angiogenesis depending on the cellular context.
  • MEDI0639 shows potential therapeutic applications in modulating aberrant vasculature in diseases like cancer.