Retinal Electrophysiology Is a Viable Preclinical Biomarker for Drug Penetrance into the Central Nervous System

Author:

Charng Jason1,He Zheng1,Vingrys Algis J.1,Fish Rebecca L.2,Gurrell Rachel2,Bui Bang V.1,Nguyen Christine T.1

Affiliation:

1. Department of Optometry & Vision Sciences, University of Melbourne, Parkville, VIC 3010, Australia

2. Pfizer Neusentis, Cambridge CB21 6GS, UK

Abstract

Objective. To examine whether retinal electrophysiology is a useful surrogate marker of drug penetrance into the central nervous system (CNS).Materials and Methods. Brain and retinal electrophysiology were assessed with full-field visually evoked potentials and electroretinograms in conscious and anaesthetised rats following systemic or local administrations of centrally penetrant (muscimol) or nonpenetrant (isoguvacine) compounds.Results. Local injections into the eye/brain bypassed the blood neural barriers and produced changes in retinal/brain responses for both drugs. In conscious animals, systemic administration of muscimol resulted in retinal and brain biopotential changes, whereas systemic delivery of isoguvacine did not. General anaesthesia confounded these outcomes.Conclusions. Retinal electrophysiology, when recorded in conscious animals, shows promise as a viable biomarker of drug penetration into the CNS. In contrast, when conducted under anaesthetised conditions confounds can be induced in both cortical and retinal electrophysiological recordings.

Funder

Australian Research Council

Publisher

Hindawi Limited

Subject

Ophthalmology

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