Neutralization of placental growth factor as a novel treatment option in diabetic retinopathy

Tine Van Bergen1, Tjing-Tjing Hu1, Isabelle Etienne1

  • 1ThromboGenics NV, Gaston Geenslaan 1, 3001 Heverlee, Belgium.

Insights

This study explored placental growth factor (PlGF) inhibition as a novel therapy for diabetic retinopathy (DR). The anti-PlGF antibody reduced vascular leakage, inflammation, and fibrosis without causing neurodegeneration, offering a promising alternative to anti-VEGF treatments.

Area of Science:

  • Ophthalmology
  • Immunology
  • Pharmacology

Background:

  • Diabetic retinopathy (DR) treatment with anti-vascular endothelial growth factor (VEGF) therapy improves vision but has variable responses and potential side effects.
  • Investigating alternative therapeutic targets is crucial for managing DR effectively.

Purpose of the Study:

  • To evaluate the preclinical efficacy of an anti-placental growth factor (PlGF) antibody (PL5D11D4) as a potential alternative therapy for diabetic retinopathy (DR).
  • To assess the impact of anti-PlGF on DR hallmarks including inflammation, neurodegeneration, vascular leakage, and fibrosis.

Main Methods:

  • Preclinical evaluation of anti-PlGF antibody (PL5D11D4) in diabetic streptozotocin (STZ), Akimba, and laser-induced choroidal neovascularization (CNV) mouse models.
  • Comparison of intravitreal (IVT) anti-PlGF administration with anti-VEGFR-2 (DC101), anti-VEGF (B20), aflibercept, and triamcinolone acetonide (TAAC).
  • Assessment of vascular leakage, retinal ganglion cell (RGC) density, inflammation (CD45, F4/80), and fibrosis (collagen type 1a) using various imaging and staining techniques.

Main Results:

  • Anti-PlGF antibody reduced vascular leakage comparably to VEGFR-2 inhibition in the STZ model.
  • Unlike anti-VEGFR-2, anti-PlGF did not affect retinal ganglion cell density.
  • In the CNV model, anti-PlGF dose-dependently reduced inflammation and fibrosis.
  • Anti-PlGF and TAAC decreased leukocyte and macrophage infiltration, while DC101 and B20 had no effect on inflammation.
  • Repeated anti-PlGF and TAAC administration reduced fibrosis, unlike DC101, B20, or aflibercept.

Conclusions:

  • Anti-PlGF antibody demonstrates comparable efficacy to VEGF inhibitors in reducing vascular leakage.
  • Anti-PlGF therapy uniquely reduces inflammation and fibrosis in DR models.
  • The anti-PlGF antibody presents a promising therapeutic strategy for DR, mitigating key pathological features without neurotoxic effects.

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