Neurologic disorders are frequently a result of inappropriate electrical and/or chemical signaling of neurons and glia. Ultimate remediation would necessitate reprogramming these signals. Historically, correcting neuronal and glial signaling is accomplished via drug therapy/administration, although they frequently fail to effectively and fully treat the underlying disorder. Developments in basic research have produced several new classes of potential therapeutics to directly and precisely control neuron activity at the single-cell level. We review one such technology, Designer Receptors Exclusively Activated by Designer Drugs, and suggest its potential as a powerful tool for augmenting neuronal and glial signaling and activity for basic and...
SummaryExamining the behavioral consequences of selective CNS neuronal activation is a powerful tool...
A significant challenge for neuroscientists is to determine how both electrical and chemical signals...
Toward the functional dissection of neuronal circuits, a number of new genetic tools have been devel...
Neurologic disorders are frequently a result of inappropriate electrical and/or chemical signaling o...
Neurologic disorders are frequently a result of inappropriate electrical and/or chemical signaling o...
Chemogenetic technologies such as Designer Receptors Exclusively Activated by Designer Drugs (DREADD...
To understand brain function, it is essential that we discover how cellular signaling specifies norm...
Designer Receptors Exclusively Activated by Designer Drugs, or DREADDs, is a chemogenetic technique ...
A technology abbreviated as DREADDs (designer receptors exclusively activated by designer drugs) use...
Chemogenetics is a newly developed set of tools that allow for selective manipulation of cell activi...
The last decade has seen major advances in neuroscience tools allowing us to selectively modulate ce...
Recently, we created a family of engineered G protein-coupled receptors (GPCRs) called DREADD (desig...
Understanding how discreet tissues and neuronal circuits function in relation to the whole organism ...
Somatic cellular reprogramming is a fast-paced and evolving field that is changing the way scientist...
Chemogenetics is the process of genetically expressing a macromolecule receptor capable of modulatin...
SummaryExamining the behavioral consequences of selective CNS neuronal activation is a powerful tool...
A significant challenge for neuroscientists is to determine how both electrical and chemical signals...
Toward the functional dissection of neuronal circuits, a number of new genetic tools have been devel...
Neurologic disorders are frequently a result of inappropriate electrical and/or chemical signaling o...
Neurologic disorders are frequently a result of inappropriate electrical and/or chemical signaling o...
Chemogenetic technologies such as Designer Receptors Exclusively Activated by Designer Drugs (DREADD...
To understand brain function, it is essential that we discover how cellular signaling specifies norm...
Designer Receptors Exclusively Activated by Designer Drugs, or DREADDs, is a chemogenetic technique ...
A technology abbreviated as DREADDs (designer receptors exclusively activated by designer drugs) use...
Chemogenetics is a newly developed set of tools that allow for selective manipulation of cell activi...
The last decade has seen major advances in neuroscience tools allowing us to selectively modulate ce...
Recently, we created a family of engineered G protein-coupled receptors (GPCRs) called DREADD (desig...
Understanding how discreet tissues and neuronal circuits function in relation to the whole organism ...
Somatic cellular reprogramming is a fast-paced and evolving field that is changing the way scientist...
Chemogenetics is the process of genetically expressing a macromolecule receptor capable of modulatin...
SummaryExamining the behavioral consequences of selective CNS neuronal activation is a powerful tool...
A significant challenge for neuroscientists is to determine how both electrical and chemical signals...
Toward the functional dissection of neuronal circuits, a number of new genetic tools have been devel...