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Involvement of histaminergic system in limbic structures on the memory of inhibitory avoidance in mice

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Author(s):
Lucas Canto de Souza
Total Authors: 1
Document type: Doctoral Thesis
Press: Ribeirão Preto.
Institution: Universidade de São Paulo (USP). Faculdade de Filosofia, Ciências e Letras de Ribeirão Preto (PCARP/BC)
Defense date:
Examining board members:
Rosana Mattioli; Silvio Morato de Carvalho; Raquel Vecchio Fornari; Cleopatra da Silva Planeta
Advisor: Rosana Mattioli
Abstract

Several studies using animal models have shown that limbic structures like the amygdala (AMG), dorsal hippocampus (DH) and medial prefrontal cortex (mPFC) are involved in emotional memory consolidation. Whereas the synthesis of new proteins is necessary for memory consolidation process, and that opposite results related to the interaction of protein synthesis inhibitors and foot-shock intensity on memory consolidation have been reported, the present study aims to investigate the hypothesis of protein synthesis in AMG, the DH and mPFC associated with the consolidation of aversive memory occurs differently in these three structures, according to the intensity of the aversive stimulus and the expression of proteins involved in histaminergic transmission would be modified during the process of consolidation and emotional expression of aversive memory. The aim of this study was to evaluate the role of protein synthesis in AMG, DH and mPFC in consolidation of aversive memory based on moderate and intense conditioning; to investigate the expression of proteins related to histaminergic transmission in AMG, DH and mPFC after intense aversive conditioning. For this purpose two experiments were performed: in experiment 1 the anisomycin (ANI) was bilaterally microinjected into AMG or DH or mPFC of mice before being submitted the step-down inhibitory avoidance task using two unconditioned stimulus intensities: moderate or intense. In experiment 2, the variations in the gene expression of HDC enzyme (histidine decarboxylase - responsible for histamine synthesis) and the H1, H2 and H3 receptors were analyzed at different temporal spaces by real-time polymerase chain reaction (RT-PCR). The results of the first experiment demonstrate that microinjection of ANI in mPFC impairs the consolidation of inhibitory avoidance memory with moderate or intense unconditioned stimulus, however when administered intra-AMG and intra DH, ANI only impairs the consolidation of inhibitory avoidance memory under an intensive unconditioned stimulus. The experiment 2 demonstrates that during the consolidation of intense aversive memory there is a decrease of the genes expression levels: HDC in the dorsal hippocampus, Hrh3, Hrh1 in the amygdala, and Hrh3 in the medial prefrontal cortex. During retrieval the HDC and Hrh3 genes expression levels are increased and decreased, respectively in the AMG; the Hhr2 and Hrh3 genes expression levels are increased in the DH, and in the mPFC the HDC gene expression level is increased, and the Hrh1 and Hrh3 are decreased. During reconsolidation the amygdalas HDC and Hrh3 genes expression levels are decreased and the Hrh1 gene is increased. In the DH the Hrh1 gene levels are elevated and in the mPFC the HDC gene expression level is increased and the Hrh1 and Hrh3 are decreased. In the current study we conclude that under moderate aversiveness situations, the consolidation of this experience does not depend on protein synthesis in the AMG and in the DH, but in the mPFC. However, in situations with a high level of adversity, protein synthesis in this three structures are essential for the consolidation of such experience. In addition, the histaminergic genes are distinctly expressed in the AMG, DH and mPFC along the time scale of consolidation, retrieval and reconsolidation of the formation of fear memories. (AU)

FAPESP's process: 11/19472-4 - Involvement of histaminergic system in limbic structures on the memory of inhibitory avoidance in mice
Grantee:Lucas Canto de Souza
Support Opportunities: Scholarships in Brazil - Doctorate