Science · 2000 · 162 citations · 17 references
Basal GangliaSynaptic TransmissionNeurotransmitterNeurotransmissionBasal Ganglia FunctionNeurologyNeurochemistryHealth SciencesMedicineNeuropharmacologyNervous SystemDopamineBrain CircuitrySynaptic IntegrationSynaptic PlasticityNeurophysiologyNeuroanatomyPhysiologySynaptic Integration MediatedDopamine ResponsesNeuroscienceCentral Nervous SystemStriatal Cholinergic InterneuronsDopamine ActionsD2 Dopamine Receptors
The physiological role of striatal cholinergic interneurons was investigated using immunotoxin‑mediated cell targeting (IMCT). IMCT selectively ablated striatal cholinergic interneurons to study their function. Unilateral ablation produced acute abnormal turning that partially recovered, yet mice still showed.
The physiological role of striatal cholinergic interneurons was investigated with immunotoxin-mediated cell targeting (IMCT). Unilateral cholinergic cell ablation caused an acute abnormal turning behavior. These mice showed gradual recovery but displayed abnormal turning by both excess stimulation and inhibition of dopamine actions. In the acute phase, basal ganglia function was shifted to a hyperactive state by stimulation and suppression of striatonigral and striatopallidal neurons, respectively. D1 and D2 dopamine receptors were then down-regulated, relieving dopamine-predominant synaptic perturbation but leaving a defect in controlling dopamine responses. The acetylcholine-dopamine interaction is concertedly and adaptively regulated for basal ganglia synaptic integration.
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Parkinsonian-like locomotor impairment in mice lacking dopamine D2 receptors
Ja‐Hyun Baik, Roberto Picetti, Adolfo Saiardi et al. · Nature · 1995 · 648 citations
Catherine Le Moine, Bertrand Bloch · The Journal of Comparative Neurology · 1995 · 568 citations