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1.
Article in English | MEDLINE | ID: mdl-30508574

ABSTRACT

The viral mimetic polyinosinic:polycytidylic acid (poly I:C) is an important tool to study the consequences of viral infection to the development of neuropsychiatric disorders. Here, based on the premise of omega-3 polyunsaturated fatty acids (n3 PUFAs) as supplemental treatment to antipsychotics in schizophrenia, we investigated the involvement of NFkB pathway in the effects of n3 PUFAs or of the atypical antipsychotic clozapine in hippocampal poly I:C-challenged neurons. Primary hippocampal neuronal cultures were exposed to n3 PUFAs (DHA4.35 µM/EPA7.10 µM, DHA 8.7 µM/EPA14.21 µM or DHA17.4 µM/EPA28.42 µM) or clozapine (1.5 or 3 µM) in the presence or absence of poly I:C. MTT assay revealed that poly I:C-induced reduction in cell viability was prevented by n3 PUFAs or clozapine. N3 PUFAs (DHA 8.7 µM/EPA14.21 µM) or clozapine (3 µM) significantly reduced poly I:C-induced increase in iNOS, NFkB (p50/p65), IL-6 and nitrite when compared to non-treated cells. Only n3 PUFAs prevented poly I:C-induced deficits in BDNF. On the other hand, poly I:C caused a marked reduction in DCX immunoexpression, which was prevented only by clozapine. Thus, n3 PUFAs and clozapine exert in vitro neuroprotective effects against poly I:C immune challenge in hippocampal neurons, by mechanisms possibly involving the inhibition of canonical NFkB pathway. The present study adds further evidences to the mechanisms underlying n3 PUFAs and clozapine neuroprotective effects against viral immune challenges. Since n3 PUFAs is a safe strategy for use during pregnancy, our results also add further evidence for the use of this supplement in order to prevent alterations induced by viral hits during this developmental period.


Subject(s)
Clozapine/pharmacology , Fatty Acids, Omega-3/pharmacology , Hippocampus/drug effects , Inflammation/therapy , Neurons/drug effects , Neuroprotective Agents/pharmacology , Animals , Anti-Inflammatory Agents, Non-Steroidal/pharmacology , Cell Survival/drug effects , Cells, Cultured , Doublecortin Protein , Hippocampus/metabolism , Inflammation/metabolism , Mice , Neurons/metabolism , Poly I-C
2.
Schizophr Res ; 151(1-3): 12-9, 2013 Dec.
Article in English | MEDLINE | ID: mdl-24257517

ABSTRACT

Schizophrenia was proposed as a progressive neurodevelopmental disorder. In this regard herein we attempted to determine progressive inflammatory and oxidative alterations induced by a neonatal immune challenge and its possible reversal by clozapine administration. For this end, Wistar rats at postnatal day (PN) 5-7 were administered the viral mimetic polyriboinosinic-polyribocytidilic acid (polyI:C) or saline. A distinct group of animals additionally received the antipsychotic drug clozapine (25mg/kg) from PN60 to 74. At PN35 (periadolescence), 60 (adult) and 74 (adulthood) the animals were submitted to behavioral determinations of prepulse inhibition of the startle (PPI) and Y maze task for working memory evaluation. At PN35 and 74 the animals were sacrificed and the hippocampus (HC), prefrontal cortex (PFC) and striatum (ST) immunostained for Iba-1, a microglial marker, and inducible nitric oxide synthase (iNOS). At PN74 oxidative stress parameters, such as, reduced glutathione levels (GSH) and lipid peroxidation were determined. The results showed a progressive increase of microglial activation and iNOS immunostaining from PN35 to PN74 mainly in the CA2 and CA3 regions of the HC and in the ST. At PN74 neonatal challenge also induced an oxidative imbalance. These inflammatory alterations were accompanied by deficits in PPI and working memory only in adult life that were reversed by clozapine. Clozapine administration reversed microglial activation and iNOS increase, but not the alterations of oxidative stress parameters. Taken together these results give further evidences for a neuroprogressive etiology and course of schizophrenia and that clozapine may partly alleviate this process.


Subject(s)
Antipsychotic Agents/therapeutic use , Clozapine/therapeutic use , Developmental Disabilities/drug therapy , Developmental Disabilities/etiology , Microglia/pathology , Nitric Oxide Synthase Type II/metabolism , Schizophrenia/complications , Age Factors , Animals , Animals, Newborn , Brain/drug effects , Brain/pathology , Disease Models, Animal , Lipid Peroxidation/drug effects , Male , Malondialdehyde/metabolism , Maze Learning/drug effects , Microglia/metabolism , Oxidative Stress/drug effects , Poly I-C/pharmacology , Rats , Rats, Wistar , Reflex, Startle/drug effects , Schizophrenia/chemically induced
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