Intravitreal bromfenac liposomal suspension (100 μg / 0.1 ml). A safety study in rabbit eyes

Idaira Sánchez-Santos1, Gustavo A García-Sánchez2, Roberto Gonzalez-Salinas3

  • 1Retina Department, Asociación para evitar la Ceguera en México, Hospital ''Dr. Luis Sánchez Bulnes", Vicente García Torres 46, Barrio San lucas, 04030, Coyoacán, CDMX, Mexico.

Abstract

Insights

A novel liposome formulation of bromfenac (an NSAID) demonstrated safety and no toxicity in rabbit eyes. This delayed-release formulation shows promise as a potential alternative treatment for ocular inflammation, warranting further investigation into its efficacy.

Area of Science:

  • Ophthalmology
  • Drug Delivery Systems
  • Inflammation Research

Background:

  • Ocular inflammation requires effective treatments, but current options like NSAIDs have limited intraocular half-lives.
  • Bromfenac inhibits COX-2, a key enzyme in the inflammatory cascade contributing to ocular inflammation.
  • Steroidal treatments offer sustained release but carry significant side effects.

Purpose of the Study:

  • To evaluate the safety profile of a novel delayed-release liposome formulation of bromfenac in an animal model.
  • To assess the potential of this formulation as a long-lasting, non-steroidal anti-inflammatory treatment for ocular conditions.

Main Methods:

  • Liposome-encapsulated bromfenac suspension (100 μg/0.1 ml) was injected into the vitreous cavity of rabbit eyes.
  • Electroretinography (ERG) was performed before injection and after 3 months to assess retinal function.
  • Histopathological analysis of retinal specimens was conducted to evaluate toxicity.

Main Results:

  • No significant changes in ERG measurements were observed after 3 months compared to baseline.
  • Histopathological examination revealed no signs of liposome-induced toxicity in the retinal specimens.
  • The formulation was found to be non-toxic in this animal model.

Conclusions:

  • Liposome-encapsulated bromfenac suspension is safe and non-toxic in a rabbit eye model.
  • This delayed-release formulation holds promise as a potential future alternative treatment for ocular inflammation.
  • Further studies are needed to demonstrate the biological effect and efficacy of this novel formulation.

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