Publication | Open Access
Genetically engineered stem cell-derived retinal grafts for improved retinal reconstruction after transplantation
35
Citations
42
References
2021
Year
Synaptic TransmissionOptogeneticsOptic NerveImproved Retinal ReconstructionRegenerative MedicineGanglion CellRetinaEsc/ipsc-retinal Sheet TransplantationStem CellsCell TransplantationHealth SciencesOphthalmologyVisual PathwaySecondary Retinal NeuronsCell EngineeringCell BiologySynaptic PlasticityPhotoreceptor CellInduced Pluripotent Stem CellStem Cell EngineeringEsc/ipsc-retinal SheetStem Cell ResearchStem-cell TherapyNeuroscienceMedicineRetinal BiologyEmbryonic Stem Cell
ESC/iPSC-retinal sheet transplantation, which supplies photoreceptors as well as other retinal cells, has been shown to be able to restore visual function in mice with end-stage retinal degeneration. Here, by introducing a novel type of genetically engineered mouse ESC/iPSC-retinal sheet with reduced numbers of secondary retinal neurons but intact photoreceptor cell layer structure, we reinforced the evidence that ESC/iPSC-retinal sheet transplantation can establish synaptic connections with the host, restore light responsiveness, and reduce aberrant retinal ganglion cell spiking in mice. Furthermore, we show that genetically engineered grafts can substantially improve the outcome of the treatment by improving neural integration. We speculate that this leads to reduced spontaneous activity in the host which in turn contributes to a better visual recovery.
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