bioRxiv · 10.1101/2020.08.11.246686
Starburst amacrine cells amplify optogenetic visual restoration through gap junctions in the murine retina
Abstract
Ectopic induction of optogenetic actuators, such as channelrhodopsin, is a promising approach to restoring vision in the degenerating retina. However, the cell type-specific response of ectopic photoreception has not been well understood. It is limited to obtain efficient gene expression in a specifically targeted cell population by a transgenic approach. In the present study, we established a murine model with high efficiency of gene induction to retinal ganglion cells (RGCs)- and amacrine cells using an improved tetracycline transactivator-operator bipartite system (KENGE-tet system). To investigate the cell type-specific visual restorative effect, we expressed the channelrhodopsin gene into RGCs and amacrine cells using the KENGE-tet system. As a result, enhancement in the visual restorative effect was observed to RGCs and starburst amacrine cells. In conclusion, a photoresponse from amacrine cells may enhance the maintained response of RGCs and further increase/improve the visual restorative effect.
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Katada, Y., Kunimi, H., Kobayashi, K., Okano, H., Tanaka, K. F., Tsubota, K., Kurihara, T.. 2020-08-12. Starburst amacrine cells amplify optogenetic visual restoration through gap junctions in the murine retina. https://doi.org/10.1101/2020.08.11.246686
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