Literature DB >> 28920083

Differential alterations of intracellular [Ca2+] dynamics induced by cocaine and methylphenidate in thalamocortical ventrobasal neurons.

José L Rozas1,2, Belén Goitia1,2, Verónica Bisagno3,4, Francisco J Urbano1,2.   

Abstract

The ventrobasal (VB) thalamus relay nucleus processes information from rodents' whiskers, projecting to somatosensory cortex. Cocaine and methylphenidate (MPH) have been described to differentially alter intrinsic properties of, and spontaneous GABAergic input to, VB neurons. Here we studied using bis-fura 2 ratiometric fluorescence the effects of cocaine and MPH on intracellular [Ca2+] dynamics at the soma and dendrites of VB neurons. Cocaine increased baseline fluorescence in VB somatic and dendritic compartments. Peak and areas of fluorescence amplitudes were reduced by cocaine binge treatment in somas and dendrites at different holding potentials. MPH binge treatment did not alter ratiometric fluorescence at either somatic or dendritic levels. These novel cocaine-mediated blunting effects on intracellular [Ca2+] might account for alterations in the capacity of thalamocortical neurons to maintain gamma band oscillations, as well as their ability to integrate synaptic afferents.

Entities:  

Keywords:  Bis-fura 2; Cocaine; Methylphenidate; Thalamocortical; Ventrobasal

Year:  2017        PMID: 28920083      PMCID: PMC5599208          DOI: 10.15761/TBR.1000114

Source DB:  PubMed          Journal:  Transl Brain Rhythm        ISSN: 2397-8686


  43 in total

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Journal:  Synapse       Date:  2011-02       Impact factor: 2.562

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