Literature DB >> 24743636

Multimodal imaging and multifocal electroretinography demonstrate autosomal recessive Stargardt disease may present like occult macular dystrophy.

Robert A Sisk1, Theodore Leng.   

Abstract

PURPOSE: To describe multimodal imaging and electrophysiologic characteristics of an unusual subset of patients with genetically confirmed autosomal recessive Stargardt disease (STGD1) who exhibited a central form of cone dysfunction resembling occult macular dystrophy that preceded the development of lipofuscin flecks, atrophy of retinal pigment epithelium (RPE), or full-field electroretinography abnormalities.
METHODS: Retrospective, observational descriptive case series.
RESULTS: Five patients with compound heterozygous ABCA4 mutations presented with bilateral visual acuity reduction, normal-appearing fundi, and blocked choroidal fluorescence on fluorescein angiography. One sibling each of two probands with identical genotypes was also included for analysis. Full-field electroretinography testing was normal in all patients, but multifocal electroretinography demonstrated centripetally depressed amplitudes exceeding areas of fundus autofluorescence, infrared imaging, and spectral domain optical coherence tomography abnormalities. Spectral domain optical coherence tomography initially revealed disruption of the inner segment ellipsoid band accompanying an ovoid hypofluorescent foveolar lesion. Progression to later stages was accompanied by the loss of the foveal photoreceptor outer segments, creating foveal cavitation with preservation of the RPE. Fundus autofluorescence and infrared imaging demonstrated corresponding bull's eye lesions. Over time, the foveal potential space on spectral domain optical coherence tomography collapsed, and three patients developed RPE atrophy and visible lipofuscin flecks. The flecks were detectable by fundus autofluorescence and infrared imaging earlier than by biomicroscopy. From these findings, a staging system for this subset of Stargardt disease presenting with central cone dysfunction was developed and presented herein.
CONCLUSION: Autosomal recessive Stargardt disease may present as a central cone dysfunction syndrome before the development of lipofuscin flecks, atrophy of RPE, or full-field electroretinography abnormalities. If emerging therapies for Stargardt disease succeed, early recognition and treatment of patients with preserved foveal photoreceptor and RPE cell bodies may yield a more favorable visual prognosis.

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Year:  2014        PMID: 24743636     DOI: 10.1097/IAE.0000000000000136

Source DB:  PubMed          Journal:  Retina        ISSN: 0275-004X            Impact factor:   4.256


  10 in total

1.  Macular function measured by binocular mfERG and compared with macular structure in healthy children.

Authors:  Anna E C Molnar; Sten O L Andreasson; Eva K B Larsson; Hanna M Åkerblom; Gerd E Holmström
Journal:  Doc Ophthalmol       Date:  2015-10-18       Impact factor: 2.379

2.  Multimodal imaging of foveal cavitation in retinal dystrophies.

Authors:  Maurizio Battaglia Parodi; Maria Vittoria Cicinelli; Pierluigi Iacono; Gianluigi Bolognesi; Francesco Bandello
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2016-08-05       Impact factor: 3.117

Review 3.  Clinical spectrum, genetic complexity and therapeutic approaches for retinal disease caused by ABCA4 mutations.

Authors:  Frans P M Cremers; Winston Lee; Rob W J Collin; Rando Allikmets
Journal:  Prog Retin Eye Res       Date:  2020-04-09       Impact factor: 21.198

4.  Flecks in Recessive Stargardt Disease: Short-Wavelength Autofluorescence, Near-Infrared Autofluorescence, and Optical Coherence Tomography.

Authors:  Janet R Sparrow; Marcela Marsiglia; Rando Allikmets; Stephen Tsang; Winston Lee; Tobias Duncker; Jana Zernant
Journal:  Invest Ophthalmol Vis Sci       Date:  2015-07       Impact factor: 4.799

5.  Occult macular dystrophy with bilateral chronic subfoveal serous retinal detachment associated with a novel RP1L1 mutation (p.S1199P).

Authors:  Hidenori Takahashi; Takaaki Hayashi; Hiroshi Tsuneoka; Tadashi Nakano; Hisashi Yamada; Satoshi Katagiri; Yujiro Fujino; Yasuo Noda; Miwako Yoshimoto; Hidetoshi Kawashima
Journal:  Doc Ophthalmol       Date:  2014-05-17       Impact factor: 2.379

6.  A Comparison of En Face Optical Coherence Tomography and Fundus Autofluorescence in Stargardt Disease.

Authors:  Vivienne C Greenstein; Jason Nunez; Winston Lee; Kaspar Schuerch; Brad Fortune; Stephen H Tsang; Rando Allikmets; Janet R Sparrow; Donald C Hood
Journal:  Invest Ophthalmol Vis Sci       Date:  2017-10-01       Impact factor: 4.799

7.  Early Patterns of Macular Degeneration in ABCA4-Associated Retinopathy.

Authors:  Kamron N Khan; Melissa Kasilian; Omar A R Mahroo; Preena Tanna; Angelos Kalitzeos; Anthony G Robson; Kazushige Tsunoda; Takeshi Iwata; Anthony T Moore; Kaoru Fujinami; Michel Michaelides
Journal:  Ophthalmology       Date:  2018-01-06       Impact factor: 12.079

Review 8.  Therapy Approaches for Stargardt Disease.

Authors:  Elena Piotter; Michelle E McClements; Robert E MacLaren
Journal:  Biomolecules       Date:  2021-08-09

9.  Evaluation of Local Rod and Cone Function in Stargardt Disease.

Authors:  Krunoslav Stingl; Carel Hoyng; Melanie Kempf; Susanne Kohl; Ronja Jung; Giulia Righetti; Laura Kühlewein; Lisa Pohl; Friederike Kortüm; Carina Kelbsch; Barbara Wilhelm; Tobias Peters; Katarina Stingl
Journal:  Invest Ophthalmol Vis Sci       Date:  2022-03-02       Impact factor: 4.799

10.  Next-Generation Sequencing-Aided Rapid Molecular Diagnosis of Occult Macular Dystrophy in a Chinese Family.

Authors:  Yu-He Qi; Feng-Juan Gao; Fang-Yuan Hu; Sheng-Hai Zhang; Jun-Yi Chen; Wan-Jing Huang; Guo-Hong Tian; Min Wang; De-Kang Gan; Ji-Hong Wu; Ge-Zhi Xu
Journal:  Front Genet       Date:  2017-08-25       Impact factor: 4.599

  10 in total

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