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. 2020 Sep;23(5):828-833.
doi: 10.1111/vop.12804. Epub 2020 Jul 15.

Impact of acute conjunctivitis on ocular surface homeostasis in dogs

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Impact of acute conjunctivitis on ocular surface homeostasis in dogs

Lionel Sebbag et al. Vet Ophthalmol. 2020 Sep.

Abstract

Objective: To investigate the effects of acute conjunctivitis on tear film characteristics and corneal sensitivity in dogs.

Animals studied: Eight female spayed Beagle dogs (1.5-2 years old, 7.5-10 kg).

Procedures: On two consecutive days, one randomly selected eye in each dog received 1 or 375 mg/mL histamine solution to induce mild or severe conjunctivitis, while the contralateral eye served as control. Diagnostic tests were performed in the following order: fluorescein instillation and repeated tear collection over 20 minutes (to determine tear volume [TV] and turnover rate [TTR] by fluorophotometry), Schirmer tear test-1 (STT-1), tear ferning, corneal esthesiometry, and tear film breakup time (TFBUT).

Results: Results are presented as median values for severe conjunctivitis, mild conjunctivitis, and control eyes. Eyes with severe conjunctivitis had significantly higher STT-1 (24, 19.5, 17.5 mm/min; P = .002) and significantly lower TFBUT (10.5, 13.5, 15.5 s; P = .002), but no changes were noted in corneal tactile sensation (2, 2.5, 2.5 cm) or tear ferning (grades 2, 2, 2.5). Severe conjunctivitis significantly increased TV by nearly 10-fold (631, 97, 65 µL) initially (reflex tearing), although basal TV returned rapidly (<5 minutes) in all eyes (46, 58, 48 µL). Finally, there was a nonsignificant trend for higher reflex TTR in the conjunctivitis vs control eyes (68, 58, 43%/min).

Conclusions: Experimentally induced conjunctivitis increases tear quantity and decreases tear quality in dogs, but has no impact on corneal sensitivity. Changes in tear film dynamics could affect ocular pharmacology (eg, precorneal retention time), although homeostasis of lacrimal volume and drainage is rapidly restored.

Keywords: conjunctivitis; corneal sensitivity; ferning; tear film dynamics; tear production; tear quality.

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