Effect of covalent antithrombin-heparin complex on developmental mechanisms in the lung

Nagina Parmar1, Leslie R Berry, Martin Post

  • 1Department of Lung Biology, Hospital for Sick Children, Toronto, Ontario, Canada.

Insights

A novel antithrombin (AT)-heparin conjugate (ATH) was developed to prevent lung thrombosis. Latent AT (L-AT) and latent ATH (L-ATH) were tested on fetal lung development, revealing ATH

Area of Science:

  • Biomedical Engineering
  • Developmental Biology
  • Pharmacology

Background:

  • Pulmonary angiogenesis is critical for premature infant lung development.
  • Latent antithrombin (L-AT) exhibits antiangiogenic properties.
  • The impact of latent antithrombin-heparin conjugate (L-ATH) on lung vascularization is unknown.

Purpose of the Study:

  • To compare the effects of L-AT and L-ATH on fetal murine lung development.
  • To investigate the influence of L-AT and L-ATH on lung vascularization and branching morphogenesis.
  • To assess the safety of ATH as an anticoagulant during vascular development.

Main Methods:

  • Organ culture of embryonic mouse lung explants (E11.5 Tie2-LacZ).
  • Treatment with PBS, AT, L-AT, heparin, ATH, or L-ATH.
  • Quantification of vasculature via X-galactosidase staining.
  • Gene expression analysis for angiogenesis-related factors (Ang-1, Ang-2, FGF2, PECAM, VEGF).

Main Results:

  • L-AT and heparin significantly inhibited epithelial branching morphogenesis and reduced vascular area.
  • L-AT downregulated the expression of all studied angiogenesis-related genes.
  • Both L-AT and L-ATH inhibited branching morphogenesis and vasculature even with added FGF2.
  • Covalent linkage of AT to heparin in ATH negated the disruptive effects observed with L-AT and heparin.

Conclusions:

  • The antithrombin-heparin conjugate (ATH) demonstrates potential for enhanced safety as an anticoagulant during vascular development.
  • Conjugation of AT to heparin mitigates adverse effects on lung morphology and vascularization.
  • ATH may offer a safer anticoagulant option for premature infants with respiratory distress.

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