Optogenetics has revolutionized neuroscience by providing means to control cell signaling with spatiotemporal control in discrete cell types. In this review, we summarize four major classes of optical tools to manipulate neuromodulatory GPCR signaling: opsins (including engineered chimeric receptors); photoactivatable proteins; photopharmacology through caging—photoswitchable molecules; fluorescent protein based reporters and biosensors. Additionally, we highlight technologies to utilize these tools in vitro and in vivo, including Cre dependent viral vector expression and two-photon microscopy. These emerging techniques targeting specific members of the GPCR signaling pathway offer an expansive base for investigating GPCR signaling in behav...
G protein coupled receptors, or GPCRs, transduce signals from neuromodulators and permit dynamic reg...
The complexity of the brain, in which different neuronal cell types are interspersed and complexly i...
The light-based control of ion channels has been transformative for the neurosciences, but the optog...
Optogenetics has revolutionized neuroscience by providing means to control cell signaling with spati...
Optogenetics has provided a revolutionary approach to dissecting biological phenomena. Traditional t...
International audienceThe optical neuroscience revolution is transforming how we study neural circui...
The advent of optogenetics and genetically-encoded photosensors has provided neuroscience researcher...
In optogenetics, targeted illumination is used to control the functions of cells expressing exogenou...
International audienceLight-controllable tools provide powerful means to manipulate and interrogate ...
The ability to study cellular physiology using photosensitive, genetically encoded molecules has pro...
International audienceBrain intricacies and the difficulty that scientists encounter in revealing it...
Optogenetic methods use light to modulate the activities of target cells in vivo. By improving inter...
Membrane receptors and ion channels respond to various stimuli and relay that information across the...
This mini-symposium aims to provide an integrated perspective on recent developments in optogenetics...
Several fields in neuroscience have been revolutionized by the advent of optogenetics, a technique t...
G protein coupled receptors, or GPCRs, transduce signals from neuromodulators and permit dynamic reg...
The complexity of the brain, in which different neuronal cell types are interspersed and complexly i...
The light-based control of ion channels has been transformative for the neurosciences, but the optog...
Optogenetics has revolutionized neuroscience by providing means to control cell signaling with spati...
Optogenetics has provided a revolutionary approach to dissecting biological phenomena. Traditional t...
International audienceThe optical neuroscience revolution is transforming how we study neural circui...
The advent of optogenetics and genetically-encoded photosensors has provided neuroscience researcher...
In optogenetics, targeted illumination is used to control the functions of cells expressing exogenou...
International audienceLight-controllable tools provide powerful means to manipulate and interrogate ...
The ability to study cellular physiology using photosensitive, genetically encoded molecules has pro...
International audienceBrain intricacies and the difficulty that scientists encounter in revealing it...
Optogenetic methods use light to modulate the activities of target cells in vivo. By improving inter...
Membrane receptors and ion channels respond to various stimuli and relay that information across the...
This mini-symposium aims to provide an integrated perspective on recent developments in optogenetics...
Several fields in neuroscience have been revolutionized by the advent of optogenetics, a technique t...
G protein coupled receptors, or GPCRs, transduce signals from neuromodulators and permit dynamic reg...
The complexity of the brain, in which different neuronal cell types are interspersed and complexly i...
The light-based control of ion channels has been transformative for the neurosciences, but the optog...