Publication | Open Access
An optimized acetylcholine sensor for monitoring <i>in vivo</i> cholinergic activity
17
Citations
18
References
2019
Year
Unknown Venue
Synaptic TransmissionNeurotransmitterGrab AchNeurotransmissionMinimal Downstream CouplingSensory SystemsSynaptic SignalingSocial SciencesNeuromuscular BlockadeSensory NeuroscienceNeurochemistryMice BrainNeuromodulation (Medicine)Sensorimotor IntegrationNervous SystemPharmacologySynaptic PlasticityNeurobiological MechanismNeurophysiologyCellular NeurosciencePhysiologyNeuroscienceElectrophysiologyOptimized Acetylcholine SensorMedicine
The ability to directly measure acetylcholine (ACh) release is an essential first step towards understanding its physiological function. Here we optimized the GRAB ACh ( G PC R - A ctivation– B ased- ACh ) sensor with significantly improved sensitivity and minimal downstream coupling. Using this sensor, we measured in-vivo cholinergic activity in both Drosophila and mice, revealing compartmental ACh signals in fly olfactory center and single-trial ACh dynamics in multiple regions of the mice brain under a variety of different behaviors
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