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.
Joseph CollinMegan S R HasoonDarin ZertiSarah HammadiBirthe DorgauLucy ClarkeDavid H W SteelRafiqul HussainJonathan CoxheadSteven N LisgoRachel QueenMajlinda LakoPublished in: Human molecular genetics (2023)
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 (CECs). 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 (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 characterised 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 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 which is prone to technical artefacts, these findings need to be validated by additional techniques in a larger number of AMD patients and controls.
Keyphrases
- single cell
- age related macular degeneration
- rna seq
- endothelial cells
- high throughput
- end stage renal disease
- induced apoptosis
- gene expression
- chronic kidney disease
- optical coherence tomography
- oxidative stress
- heavy metals
- newly diagnosed
- ejection fraction
- peritoneal dialysis
- prognostic factors
- stem cells
- transcription factor
- case report
- patient reported outcomes
- dna methylation
- high glucose
- diabetic retinopathy
- induced pluripotent stem cells
- cell death
- cell therapy
- heat shock
- cell proliferation
- data analysis
- optic nerve
- drinking water
- sewage sludge
- finite element