4.4 Article

Presynaptic modulation by somatostatin in the rat neostriatum is altered in a model of parkinsonism

Journal

JOURNAL OF NEUROPHYSIOLOGY
Volume 108, Issue 4, Pages 1032-1043

Publisher

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/jn.00244.2012

Keywords

spiny projection neurons; feedback inhibition; presynaptic modulation; 6-hydroxydopamine

Funding

  1. Programa de Investigacion Multidisciplinaria de Proyectos Universitarios de Liderazgo y Superacion Academica-Universidad Nacional Autonoma de Mexico (UNAM)
  2. Direccion General de Asuntos del Personal Academico-UNAM [IN-205610, IN-206010]
  3. Miguel Aleman A. C. Foundation
  4. Consejo Nacional de Ciencia y Tecnologia (CONACyT
  5. Mexico) [98004]
  6. CONACyT

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Lopez-Huerta VG, Blanco-Hernandez E, Bargas J, Galarraga E. Presynaptic modulation by somatostatin in the rat neostriatum is altered in a model of parkinsonism. J Neurophysiol 108: 1032-1043, 2012. First published May 23, 2012; doi:10.1152/jn.00244.2012.-Somatostatin (SST) is a peptide synthesized and released by a class of neostriatal local GABAergic interneurons, which, to some extent, are in charge of the feedforward inhibitory circuit. Spiny projection neurons (SPNs) make synapses with each other via their local axon collaterals, shaping the feedback inhibitory circuit. Both inhibitory circuits, feedforward and feedback, are related through SST, which, being released by interneurons, presynaptically inhibits connections among SPNs. Here, we studied SST presynaptic modulation of synapses among SPNs in the 6-hydroxydopamine (6-OHDA) rodent model of parkinsonism. We performed antidromic field stimulation from the external globus pallidus and whole cell voltage-clamp recordings of antidromically evoked inhibitory postsynaptic currents (IPSCs) among SPNs. SST presynaptically reduced IPSCs by similar to 34% in all control synapses tested. However, after striatal dopamine deprivation, three changes became evident. First, it was harder to evoke feedback inhibition. Second, presynaptic inhibition of some SPNs connections was larger than in controls: 57% reduction in similar to 53% of evoked IPSCs. Presynaptic inhibition was recorded from direct pathway neurons (direct SPNs). Finally, SST also induced presynaptic facilitation in some SPNs connections, with 82% enhancement in similar to 43% of evoked IPSCs. Presynaptic facilitation was recorded from indirect pathway neurons (indirect SPNs). Both inhibition and facilitation were accompanied by corresponding changes in the paired pulse ratio. It was demonstrated that after dopamine deprivation, SST modulation is altered in surviving feedback inhibitory synapses. It may underlie a homeostatic mechanism trying to compensate for the excitability imbalance between direct and indirect basal ganglia pathways found during parkinsonism.

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