Electrophysiological and microfluorometric measurements were combined to analyse the responses of rat striatal medium spiny (MS) and large aspiny (LA) interneurons to the mitochondrial uncoupler carbonyl cyanide p-trifluoromethoxyphenylidrazone (FCCP). FCCP produced a membrane depolarisation coupled to an irreversible increase in intracellular calcium [Ca2+]i in MS. Conversely, LA interneurons hyperpolarised and a moderate [Ca2+]i rise was observed. Cyclosporin A, inhibitor of the mitochondrial membrane transition pore, prevented the FCCP-induced changes in LA interneurons, whereas only a partial reduction was observed in MS cells. The present results indicate that mitochondrial Ca2+ released into the cytosol may contribute to the selective vulnerability to metabolic impairment in striatal neuronal subtypes.

Pisani, A., Bonsi, P., Bernardi, G., Calabresi, P. (2002). Impairment of mitochondrial metabolism differentially affects striatal neuronal subtypes. NEUROREPORT, 13(5), 641-644.

Impairment of mitochondrial metabolism differentially affects striatal neuronal subtypes

PISANI, ANTONIO;BERNARDI, GIORGIO;CALABRESI, PAOLO
2002-04-16

Abstract

Electrophysiological and microfluorometric measurements were combined to analyse the responses of rat striatal medium spiny (MS) and large aspiny (LA) interneurons to the mitochondrial uncoupler carbonyl cyanide p-trifluoromethoxyphenylidrazone (FCCP). FCCP produced a membrane depolarisation coupled to an irreversible increase in intracellular calcium [Ca2+]i in MS. Conversely, LA interneurons hyperpolarised and a moderate [Ca2+]i rise was observed. Cyclosporin A, inhibitor of the mitochondrial membrane transition pore, prevented the FCCP-induced changes in LA interneurons, whereas only a partial reduction was observed in MS cells. The present results indicate that mitochondrial Ca2+ released into the cytosol may contribute to the selective vulnerability to metabolic impairment in striatal neuronal subtypes.
16-apr-2002
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore MED/26 - NEUROLOGIA
English
Con Impact Factor ISI
Rats; Carbonyl Cyanide p-Trifluoromethoxyphenylhydrazone; Animals; Interneurons; Neurons; Rats, Wistar; Corpus Striatum; Mitochondria; Membrane Potentials; Uncoupling Agents; Male
Pisani, A., Bonsi, P., Bernardi, G., Calabresi, P. (2002). Impairment of mitochondrial metabolism differentially affects striatal neuronal subtypes. NEUROREPORT, 13(5), 641-644.
Pisani, A; Bonsi, P; Bernardi, G; Calabresi, P
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/88196
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