Several genetic strategies for inhibiting neuronal function in mice have been described, but no system that directly suppresses membrane excitability and is triggered by a systemically administered drug, has been validated in awake behaving animals. We expressed unilaterally in mouse striatum a modified heteromeric ivermectin (IVM)-gated chloride channel from C. elegans (GluClαβ), systemically administered IVM, and then assessed amphetamine-induced rotational behavior. Rotation was observed as early as 4 hr after a single intraperitoneal IVM injection (10 mg/kg), reached maximal levels by 12 hr, and was almost fully reversed by 4 days. Multiple cycles of silencing and recovery could be performed in a single animal. In striatal slice prepara...
SummaryInducible and reversible silencing of selected neurons in vivo is critical to understanding t...
This protocol describes how to temporarily and remotely silence neuronal activity in discrete brain ...
The ability to control neuronal activation is rapidly advancing our understanding of brain function ...
Several genetic strategies for inhibiting neuronal function in mice have been described, but no syst...
SummarySeveral genetic strategies for inhibiting neuronal function in mice have been described, but ...
Selectively reducing the excitability of specific neurons will (1) allow for the creation of animal ...
The causal interrogation of neuronal networks involved in specific behaviors requires the spatially ...
This is an Open Access article distributed under the terms of the Creative Commons Attribution Licen...
A modified invertebrate glutamate-gated Cl− channel (GluCl αβ) was previously employed to allow phar...
Selectively reducing the excitability of specific neurons will (1) allow for the creation of animal ...
SummaryExamining the behavioral consequences of selective CNS neuronal activation is a powerful tool...
Inducible and reversible perturbation of the activity of selected neurons in vivo is critical to und...
A variety of genetically encoded tools have been developed for deciphering the neural circuitry of t...
AbstractDopamine-deficient mice (DA−/−), lacking tyrosine hydroxylase (TH) in dopaminergic neurons, ...
Examining the behavioral consequences of selective CNS neuronal activation is a powerful tool for el...
SummaryInducible and reversible silencing of selected neurons in vivo is critical to understanding t...
This protocol describes how to temporarily and remotely silence neuronal activity in discrete brain ...
The ability to control neuronal activation is rapidly advancing our understanding of brain function ...
Several genetic strategies for inhibiting neuronal function in mice have been described, but no syst...
SummarySeveral genetic strategies for inhibiting neuronal function in mice have been described, but ...
Selectively reducing the excitability of specific neurons will (1) allow for the creation of animal ...
The causal interrogation of neuronal networks involved in specific behaviors requires the spatially ...
This is an Open Access article distributed under the terms of the Creative Commons Attribution Licen...
A modified invertebrate glutamate-gated Cl− channel (GluCl αβ) was previously employed to allow phar...
Selectively reducing the excitability of specific neurons will (1) allow for the creation of animal ...
SummaryExamining the behavioral consequences of selective CNS neuronal activation is a powerful tool...
Inducible and reversible perturbation of the activity of selected neurons in vivo is critical to und...
A variety of genetically encoded tools have been developed for deciphering the neural circuitry of t...
AbstractDopamine-deficient mice (DA−/−), lacking tyrosine hydroxylase (TH) in dopaminergic neurons, ...
Examining the behavioral consequences of selective CNS neuronal activation is a powerful tool for el...
SummaryInducible and reversible silencing of selected neurons in vivo is critical to understanding t...
This protocol describes how to temporarily and remotely silence neuronal activity in discrete brain ...
The ability to control neuronal activation is rapidly advancing our understanding of brain function ...