Early hydroxychloroquine retinopathy: optical coherence tomography abnormalities preceding Humphrey visual field defects

Author:

Garrity Sean T,Jung Joo YeonORCID,Zambrowski Olivia,Pichi Francesco,Su Daniel,Arya Malvika,Waheed Nadia K,Duker Jay S,Chetrit Yaïr,Miserocchi Elisabetta,Giuffrè Chiara,Kaden Talia R,Querques Giuseppe,Souied Eric H,Freund K Bailey,Sarraf David

Abstract

Background/AimsHydroxychloroquine (HCQ) retinopathy may result in severe and irreversible vision loss, emphasising the importance of screening and early detection. The purpose of this study is to report the novel finding of early optical coherence tomography (OCT) abnormalities due to HCQ toxicity that may develop in the setting of normal Humphrey visual field (HVF) testing.MethodsData from patients with chronic HCQ exposure was obtained from seven tertiary care retina centres. Ten patients with HCQ-associated OCT abnormalities and normal HVF testing were identified. Detailed analysis of the OCT findings and ancillary tests including colour fundus photography, fundus autofluorescence, multifocal electroretinography and microperimetry was performed in these patients.ResultsSeventeen eyes from 10 patients illustrated abnormalities with OCT and normal HVF testing. These OCT alterations included (1) attenuation of the parafoveal ellipsoid zone and (2) loss of a clear continuous interdigitation zone. Several eyes progressed to advanced parafoveal outer retinal disruption and/or paracentral visual field defects.ConclusionPatients with high risk HCQ exposure and normal HVF testing may develop subtle but characteristic OCT abnormalities. This novel finding indicates that, in some cases of early HCQ toxicity, structural alterations may precede functional impairment. It is therefore important to employ a screening approach that includes OCT to assess for these early findings. Ancillary testing should be considered in cases with suspicious OCT changes and normal HVFs.

Funder

Macula Foundation, Inc.

Research to Prevent Blindness

Publisher

BMJ

Subject

Cellular and Molecular Neuroscience,Sensory Systems,Ophthalmology

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