BECAS
MARCHESE Natalia Andrea
artículos
Título:
Brain Angiotensin II AT1 receptors are involved in the acute and long-term amphetamine-induced neurocognitive alterations
Autor/es:
MARCHESE, N.A.; ARTUR DE LA VILLARMOIS, E.; BASMADJIAN, O.M.; PEREZ. M.F.; BAIARDI, G.; BREGONZIO, C.
Revista:
PSYCHOPHARMACOLOGY
Editorial:
SPRINGER
Referencias:
Lugar: Berlin; Año: 2016
ISSN:
0033-3158
Resumen:
Rationale. Angiotensin II, by activation of its brain AT1-receptors, plays an active role as neuromodulator in dopaminergic transmission. These receptors participate in the development of Amphetamine-induced behavioral and dopamine release sensitization. Dopamine is involved in cognitive processes and provides connectivity between brain areas related to these processes. Amphetamine by its mimetic activity over dopamine neurotransmission, elicits differential responses after acute administration or after re-exposure following long-term withdrawal periods in different cognitive processes.Objective. To evaluate the AT1-receptors involvement in the acute and long-term Amphetamine-induced alterations in long-term memory and in cellular related events.Methods. Male Wistar rats (250-300g). Acute effects: Amphetamine (0.5/2.5 mg/kg i.p.) was administered after post-training in the inhibitory-avoidance (IA) response. The AT1-receptor blocker Losartan was administered i.c.v. before a single dose of Amphetamine (0.5mg/kg i.p.). Long-term effects: The AT1-receptors blocker Candesartan (3mg/kg p.o.) was administered for 5 days followed by 5 consecutive days of Amphetamine (2.5 mg/kg/day, i.p.). The neuroadaptive changes were evidenced after 1 week of withdrawal by an Amphetamine challenge (0.5 mg/kg i.p.). The IA response, the neuronal activation pattern and the hippocampal synaptic transmission were evaluated.Results. The impairing effect in the IA response of post-training acute Amphetamine was partially prevented by Losartan. The long-term changes induced by repeated Amphetamine (resistance to acute Amphetamine interference in the IA response, neurochemical altered response and increased hippocampal synaptic transmission) were prevented by AT1-receptors blockade.Conclusions. AT1-receptors are involved in the acute alterations and in the neuroadaptations induced by repeated Amphetamine associated with neurocognitive processes.