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A rabbit model of aqueous-deficient dry eye disease induced by concanavalin a injection into the lacrimal glands: Application to drug efficacy studies

  • Stony Brook University
  • Medicon Pharmaceuticals, Inc

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

Dry eye disease (DED), a multifactorial inflammatory disease of the ocular surface, affects 1 in 6 humans worldwide with staggering implications for quality of life and health care costs. The lack of informative animal models that recapitulate its key features impedes the search for new therapeutic agents for DED. Available DED animal models have limited reproducibility and efficacy. A model is presented here in which DED is induced by injecting the mitogen concanavalin A (Con A) into the orbital lacrimal glands of rabbits. Innovative aspects of this model are the use of ultrasound (US) guidance to ensure optimal and reproducible injection of Con A into the inferior lacrimal gland; injection of Con A into all orbital lacrimal glands that limits compensatory production of tears; and use of periodic repeat injections of Con A that prolong the state of DED at will. DED and its response to test agents are monitored with a panel of parameters that assess tear production, the stability of the tear film, and the status of the corneal and conjunctival mucosa. They include tear osmolarity, tear break-up time, Schirmer's tear test, rose bengal staining, and tear lactoferrin levels. The induction of DED and the monitoring of its parameters are described in detail. This model is simple, robust, reproducible, and informative. This animal model is suitable for the study of tear physiology and of the pathophysiology of DED as well as for the assessment of the efficacy and safety of candidate agents for the treatment of DED.

Original languageEnglish
Article numbere59631
JournalJournal of visualized experiments : JoVE
Volume2020
Issue number155
DOIs
StatePublished - Jan 2019

Keywords

  • Concanavalin A
  • Dry eye
  • Dry eye disease
  • Dry eye syndrome
  • Issue 155
  • Medicine
  • Ocular drug development
  • Rabbit model
  • Rose bengal staining
  • Schirmer’s tear test
  • Tear break-up time
  • Tear osmolarity

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