Widespread subclinical cellular changes revealed across a neural-epithelial-vascular complex in choroideremia using adaptive optics

Author:

Aguilera NancyORCID,Liu TaoORCID,Bower Andrew J.ORCID,Li JoanneORCID,Abouassali Sarah,Lu Rongwen,Giannini JohnORCID,Pfau Maximilian,Bender Chelsea,Smelkinson Margery G.ORCID,Naik Amelia,Guan Bin,Schwartz Owen,Volkov Andrei,Dubra AlfredoORCID,Liu Zhuolin,Hammer Daniel X.ORCID,Maric DraganORCID,Fariss Robert,Hufnagel Robert B.,Jeffrey Brett G.ORCID,Brooks Brian P.,Zein Wadih M.,Huryn Laryssa A.,Tam JohnnyORCID

Abstract

AbstractChoroideremia is an X-linked, blinding retinal degeneration with progressive loss of photoreceptors, retinal pigment epithelial (RPE) cells, and choriocapillaris. To study the extent to which these layers are disrupted in affected males and female carriers, we performed multimodal adaptive optics imaging to better visualize the in vivo pathogenesis of choroideremia in the living human eye. We demonstrate the presence of subclinical, widespread enlarged RPE cells present in all subjects imaged. In the fovea, the last area to be affected in choroideremia, we found greater disruption to the RPE than to either the photoreceptor or choriocapillaris layers. The unexpected finding of patches of photoreceptors that were fluorescently-labeled, but structurally and functionally normal, suggests that the RPE blood barrier function may be altered in choroideremia. Finally, we introduce a strategy for detecting enlarged cells using conventional ophthalmic imaging instrumentation. These findings establish that there is subclinical polymegathism of RPE cells in choroideremia.

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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