Combined Anti-Angiogenic and Anti-Inflammatory Nanoformulation for Effective Treatment of Ocular Vascular Diseases

Jianguo Sun1, Huiling Nie2, Panpan Pan3

  • 1Eye Institute and Department of Ophthalmology, Eye & ENT Hospital, State Key Laboratory of Medical Neurobiology, Fudan University, Shanghai, People's Republic of China.

Abstract

Insights

A novel dual-drug nanoformulation combining anti-angiogenic conbercept and anti-inflammatory MCC950 offers sustained treatment for ocular vascular diseases. This complex effectively suppressed retinal vascular dysfunction and inflammation for up to six months in vivo.

Area of Science:

  • Ophthalmology
  • Nanomedicine
  • Biomaterials

Background:

  • Ocular vascular diseases cause significant visual impairment due to retinal vascular dysfunction and inflammation.
  • Current treatments for these conditions are limited by short-acting effects.
  • A dual-drug nanocomposite formulation is proposed to enhance anti-angiogenic and anti-inflammatory efficiency.

Purpose of the Study:

  • To develop and evaluate a novel dual-drug nanoformulation for the combined treatment of ocular vascular diseases.
  • To assess the efficacy of the nanoformulation in suppressing angiogenesis and inflammation.
  • To determine the safety and long-term effects of the nanoformulation in vivo.

Main Methods:

  • A nanoformulation, CBC-MCC@hMSN(SM), was prepared by integrating conbercept (CBC) and MCC950 (MCC) into hollow mesoporous silica nanoparticles.
  • Characterization included FTIR, TEM, zeta potential, and nitrogen adsorption-desorption.
  • In vitro and in vivo experiments evaluated drug release, cytotoxicity, tissue toxicity, anti-angiogenic, and anti-inflammatory effects.

Main Results:

  • CBC-MCC@hMSN(SM) showed no significant cytotoxicity or ocular tissue toxicity.
  • The nanoformulation demonstrated superior efficacy over individual drugs in suppressing endothelial angiogenic and inflammatory responses in vitro.
  • A single intraocular injection effectively suppressed diabetes-induced retinal vascular dysfunction, choroidal neovascularization, and inflammation for up to six months.

Conclusions:

  • The combined nanoformulation of CBC and MCC offers a promising strategy for sustained suppression of pathological angiogenesis and inflammation.
  • This approach holds potential for improved treatment outcomes in ocular vascular diseases.
  • The study highlights the therapeutic potential of dual-drug delivery systems in ophthalmology.

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