Optogenetic vision restoration approaches

  1. Zentrum für Regenerative Therapien Dresden, Technische Universität Dresden

volker.busskamp@crt-dresden.de

Optogenetics comprises the use of genetically encoded light-activated proteins to manipulate cells in a minimally invasive way using light. The most prominent example is channelrhodopsin2 (ChR2), which allows the activation of electrically excitable cells via light-dependent depolarization. The combination of ChR2 with hyperpolarizing-light-driven ion pumps such as the Cl- pump halorhodopsin (NpHR) enables multimodal remote control of neuronal cells in culture, tissue, and living animals. Very rapidly, it became obvious that optogenetics offers a chance of gene therapy for many diseases affecting vision. Here, I will give a brief introduction about retinal function and diseases. Cell type-specific optogenetic approaches to ON bipolar cells by ChR2 and to cone photoreceptors by Halorhodopsins will be highlighted.

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@inproceedings{dgao118-h8, title = {Optogenetic vision restoration approaches}, author = {Volker Busskamp}, booktitle = {DGaO-Proceedings, 118. Jahrestagung}, year = {2017}, publisher = {Deutsche Gesellschaft für angewandte Optik e.V.}, issn = {1614-8436}, note = {Vortrag H8} }
118. Jahrestagung der DGaO · Dresden · 2017