Single-cell RNA sequencing reveals transcriptional changes of human choroidal and retinal pigment epithelium cells during fetal development, in healthy adult and intermediate age-related macular degeneration

Author:

Collin Joseph12,Hasoon Megan S R12,Zerti Darin123,Hammadi Sarah12,Dorgau Birthe12,Clarke Lucy4,Steel David12ORCID,Hussain Rafiqul12,Coxhead Jonathan12,Lisgo Steven12ORCID,Queen Rachel12,Lako Majlinda12ORCID

Affiliation:

1. Biosciences Institute , Faculty of Medical Sciences, , Newcastle, NE1 3BZ , UK

2. Newcastle University , Faculty of Medical Sciences, , Newcastle, NE1 3BZ , UK

3. Microscopy Centre and Department of Applied Clinical Sciences and Biotechnology, University of L’Aquila , L'aquila 67100 , Italy

4. Department of Ophthalmology, Royal Victoria Infirmary and Newcastle University , Newcastle, NE1 4LP , UK

Abstract

Abstract Age-related macular degeneration (AMD) is the most prevalent cause of blindness in the developed world. Vision loss in the advanced stages of the disease is caused by atrophy of retinal photoreceptors, overlying retinal pigment epithelium (RPE) and choroidal endothelial cells. The molecular events that underline the development of these cell types from in utero to adult as well as the progression to intermediate and advanced stages AMD are not yet fully understood. We performed single-cell RNA-sequencing (RNA-Seq) of human fetal and adult RPE–choroidal tissues, profiling in detail all the cell types and elucidating cell type-specific proliferation, differentiation and immunomodulation events that occur up to midgestation. Our data demonstrate that progression from the fetal to adult state is characterized by an increase in expression of genes involved in the oxidative stress response and detoxification from heavy metals, suggesting a better defence against oxidative stress in the adult RPE–choroid tissue. Single-cell comparative transcriptional analysis between a patient with intermediate AMD and an unaffected subject revealed a reduction in the number of RPE cells and melanocytes in the macular region of the AMD patient. Together these findings may suggest a macular loss of RPE cells and melanocytes in the AMD patients, but given the complex processing of tissues required for single-cell RNA-Seq that is prone to technical artefacts, these findings need to be validated by additional techniques in a larger number of AMD patients and controls.

Funder

Medical Research Council

Biotechnology and Biosciences Research Council

Wellcome Trust Human Developmental Biology Resource

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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