Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5844303 | Progress in Neuro-Psychopharmacology and Biological Psychiatry | 2016 | 42 Pages |
Abstract
Adverse environmental factors including prenatal maternal infection are capable of inducing long-lasting behavioral and neural alterations which can enhance the risk to develop schizophrenia. It is so far not clear whether supportive postnatal environments are able to modify such prenatally-induced alterations. In rodent models, environmental enrichment influences behavior and cognition, for instance by affecting endocrinologic, immunologic, and neuroplastic parameters. The current study was designed to elucidate the influence of postnatal environmental enrichment on schizophrenia-like behavioral alterations induced by prenatal polyI:C immune stimulation at gestational day 9 in mice. Adult offspring were tested for amphetamine-induced locomotion, social interaction, and problem-solving behavior as well as expression of dopamine D1 and D2 receptors and associated molecules, microglia density and adult neurogenesis. Prenatal polyI:C treatment resulted in increased dopamine sensitivity and dopamine D2 receptor expression in adult offspring which was not reversed by environmental enrichment. Prenatal immune activation prevented the effects of environmental enrichment which increased exploratory behavior and microglia density in NaCl treated mice. Problem-solving behavior as well as the number of immature neurons was affected by neither prenatal immune stimulation nor postnatal environmental enrichment. The behavioral and neural alterations that persist into adulthood could not generally be modified by environmental enrichment. This might be due to early neurodevelopmental disturbances which could not be rescued or compensated for at a later developmental stage.
Keywords
FK506 binding protein 5PNDGAPDHi.p.NR3C1FKBP5DRD2DcxDRD1NaClIba-1PolyI:CTreatment effectSchizophreniaintraperitonealdoublecortingestational daypostnatal daySodium chlorideEnvironmental enrichmentHypothalamic–pituitary–adrenocortical axisMouse modelionized calcium-binding adapter molecule 1HPApolyinosinic-polycytidylic acidglyceraldehyde 3-phosphate dehydrogenaseDopamine D1 receptordopamine D2 receptorglucocorticoid receptor
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Authors
Jens Buschert, Marna E. Sakalem, Roja Saffari, Christa Hohoff, Matthias Rothermundt, Volker Arolt, Weiqi Zhang, Oliver Ambrée,