Alexey Alekseev, Victoria Hunniford, Maria Zerche, Marcus Jeschke, Fadhel El May, Anna Vavakou, Dominique Siegenthaler, Marc A. Hüser, Svenja M. Kiehn, Aida Garrido-Charles, Alexander Meyer, Adrian Rambousky, Theocharis Alvanos, Isabel Witzke, Keila Dara Rojas-Garcia, Martin D. Draband, Lukas Cyganek, Eric Klein, Patrick Ruther, Antoine Huet, Stuart Trenholm, Emilie Macé, Kathrin Kusch, Tobias Bruegmann, Bettina J. Wolf, Thomas Mager, Tobias Moser
{"title":"Efficient and sustained optogenetic control of sensory and cardiac systems","authors":"Alexey Alekseev, Victoria Hunniford, Maria Zerche, Marcus Jeschke, Fadhel El May, Anna Vavakou, Dominique Siegenthaler, Marc A. Hüser, Svenja M. Kiehn, Aida Garrido-Charles, Alexander Meyer, Adrian Rambousky, Theocharis Alvanos, Isabel Witzke, Keila Dara Rojas-Garcia, Martin D. Draband, Lukas Cyganek, Eric Klein, Patrick Ruther, Antoine Huet, Stuart Trenholm, Emilie Macé, Kathrin Kusch, Tobias Bruegmann, Bettina J. Wolf, Thomas Mager, Tobias Moser","doi":"10.1038/s41551-025-01461-1","DOIUrl":null,"url":null,"abstract":"<p>Optogenetic control is used to manipulate the activity of specific cell types in vivo for a variety of biological and clinical applications. Here we report ChReef, an improved variant of the channelrhodopsin ChRmine. ChReef offers minimal photocurrent desensitization, a unitary conductance of 80 fS and closing kinetics of 30 ms, which together enable reliable optogenetic control of cells at low light levels with good temporal fidelity and sustained stimulation. We demonstrate efficient and reliable red-light pacing and depolarization block of ChReef-expressing cardiomyocyte clusters. We used adeno-associated-virus-based gene transfer to express ChReef in retinal ganglion cells, where it restores visual function in blind mice with light sources as weak as an iPad screen. Toward optogenetic hearing restoration, ChReef enables stimulation of the auditory pathway in rodents and non-human primates with nanojoule thresholds, enabling efficient and frequency-specific stimulation by LED-based optical cochlear implants.</p>","PeriodicalId":19063,"journal":{"name":"Nature Biomedical Engineering","volume":"75 1","pages":""},"PeriodicalIF":26.8000,"publicationDate":"2025-07-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Nature Biomedical Engineering","FirstCategoryId":"5","ListUrlMain":"https://doi.org/10.1038/s41551-025-01461-1","RegionNum":1,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"ENGINEERING, BIOMEDICAL","Score":null,"Total":0}
引用次数: 0
Abstract
Optogenetic control is used to manipulate the activity of specific cell types in vivo for a variety of biological and clinical applications. Here we report ChReef, an improved variant of the channelrhodopsin ChRmine. ChReef offers minimal photocurrent desensitization, a unitary conductance of 80 fS and closing kinetics of 30 ms, which together enable reliable optogenetic control of cells at low light levels with good temporal fidelity and sustained stimulation. We demonstrate efficient and reliable red-light pacing and depolarization block of ChReef-expressing cardiomyocyte clusters. We used adeno-associated-virus-based gene transfer to express ChReef in retinal ganglion cells, where it restores visual function in blind mice with light sources as weak as an iPad screen. Toward optogenetic hearing restoration, ChReef enables stimulation of the auditory pathway in rodents and non-human primates with nanojoule thresholds, enabling efficient and frequency-specific stimulation by LED-based optical cochlear implants.
期刊介绍:
Nature Biomedical Engineering is an online-only monthly journal that was launched in January 2017. It aims to publish original research, reviews, and commentary focusing on applied biomedicine and health technology. The journal targets a diverse audience, including life scientists who are involved in developing experimental or computational systems and methods to enhance our understanding of human physiology. It also covers biomedical researchers and engineers who are engaged in designing or optimizing therapies, assays, devices, or procedures for diagnosing or treating diseases. Additionally, clinicians, who make use of research outputs to evaluate patient health or administer therapy in various clinical settings and healthcare contexts, are also part of the target audience.