Comparative analysis of dentate gyrus from naive Wistar rats and human hippocampus using molecular tools

Much of the studies related to the hippocampus are aimed to elucidate the diseases which affect this structure, such as Mesial Temporal Lobe Epilepsy (MTLE) and Alzheimer’s disease (AD). However, to better understand the pathophysiology of these diseases, which are not fully elucidated, we must focu...

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Main Authors: Godoi, Alexandre Barcia de, Cendes, Iscia Teresinha Lopes, Canto, Amanda Morato do, Matos, Alexandre Hilário Berenguer, Vieira, André S., Rogério, Fábio, Yassuda, Clarissa L.
Format: Online
Language:English
Published: Universidade Estadual de Campinas 2018
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Online Access:https://econtents.sbu.unicamp.br/eventos/index.php/pibic/article/view/75
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author Godoi, Alexandre Barcia de
Cendes, Iscia Teresinha Lopes
Canto, Amanda Morato do
Matos, Alexandre Hilário Berenguer
Vieira, André S.
Rogério, Fábio
Yassuda, Clarissa L.
author_facet Godoi, Alexandre Barcia de
Cendes, Iscia Teresinha Lopes
Canto, Amanda Morato do
Matos, Alexandre Hilário Berenguer
Vieira, André S.
Rogério, Fábio
Yassuda, Clarissa L.
author_sort Godoi, Alexandre Barcia de
collection Portal de Eventos Científicos da UNICAMP
container_reference Revista dos Trabalhos de Iniciação Científica da UNICAMP; n. 26 (2018): Congresso de Iniciação Científica Unicamp
description Much of the studies related to the hippocampus are aimed to elucidate the diseases which affect this structure, such as Mesial Temporal Lobe Epilepsy (MTLE) and Alzheimer’s disease (AD). However, to better understand the pathophysiology of these diseases, which are not fully elucidated, we must focus in other structures from the Hippocampal Formation, that can be involved with these mechanisms, such as the DG¹. The DG itself is also subdivided into dorsal and ventral in rodents and posterior and anterior in humans². Moreover, the neurodegenerative diseases, as others, are usually investigated using animal models, mainly rodents, due to its possibility of study the development of the diseases and not only its final stage³. However, despite its remarkable similarities with humans, it is necessary to evaluate the differences between the two species to validate the rodents as a suitable model for human pathologies. Therefore, here we present the comparative multi-OMICs analysis of the laser microdissected DG from rat and humans, intending to characterize and describe both species, validating the rat as a good animal model for human pathologies. We also present the comparative analysis of dorsal and ventral DG isolated from the rats.
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spelling ojs-article-752025-09-26T14:32:30Z Comparative analysis of dentate gyrus from naive Wistar rats and human hippocampus using molecular tools Godoi, Alexandre Barcia de Cendes, Iscia Teresinha Lopes Canto, Amanda Morato do Matos, Alexandre Hilário Berenguer Vieira, André S. Rogério, Fábio Yassuda, Clarissa L. Hippocampus Transcriptomics Proteomics. Much of the studies related to the hippocampus are aimed to elucidate the diseases which affect this structure, such as Mesial Temporal Lobe Epilepsy (MTLE) and Alzheimer’s disease (AD). However, to better understand the pathophysiology of these diseases, which are not fully elucidated, we must focus in other structures from the Hippocampal Formation, that can be involved with these mechanisms, such as the DG¹. The DG itself is also subdivided into dorsal and ventral in rodents and posterior and anterior in humans². Moreover, the neurodegenerative diseases, as others, are usually investigated using animal models, mainly rodents, due to its possibility of study the development of the diseases and not only its final stage³. However, despite its remarkable similarities with humans, it is necessary to evaluate the differences between the two species to validate the rodents as a suitable model for human pathologies. Therefore, here we present the comparative multi-OMICs analysis of the laser microdissected DG from rat and humans, intending to characterize and describe both species, validating the rat as a good animal model for human pathologies. We also present the comparative analysis of dorsal and ventral DG isolated from the rats. Universidade Estadual de Campinas 2018-12-04 info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion Artigo de convidado application/pdf https://econtents.sbu.unicamp.br/eventos/index.php/pibic/article/view/75 10.20396/revpibic26201875 Revista dos Trabalhos de Iniciação Científica da UNICAMP; n. 26 (2018): Congresso de Iniciação Científica Unicamp 2596-1969 eng https://econtents.sbu.unicamp.br/eventos/index.php/pibic/article/view/75/71 Copyright (c) 2018 Alexandre Barcia de Godoi, Iscia Teresinha Lopes Cendes http://creativecommons.org/licenses/by/4.0
spellingShingle Godoi, Alexandre Barcia de
Cendes, Iscia Teresinha Lopes
Canto, Amanda Morato do
Matos, Alexandre Hilário Berenguer
Vieira, André S.
Rogério, Fábio
Yassuda, Clarissa L.
Hippocampus
Transcriptomics
Proteomics.
Comparative analysis of dentate gyrus from naive Wistar rats and human hippocampus using molecular tools
title Comparative analysis of dentate gyrus from naive Wistar rats and human hippocampus using molecular tools
title_full Comparative analysis of dentate gyrus from naive Wistar rats and human hippocampus using molecular tools
title_fullStr Comparative analysis of dentate gyrus from naive Wistar rats and human hippocampus using molecular tools
title_full_unstemmed Comparative analysis of dentate gyrus from naive Wistar rats and human hippocampus using molecular tools
title_short Comparative analysis of dentate gyrus from naive Wistar rats and human hippocampus using molecular tools
title_sort comparative analysis of dentate gyrus from naive wistar rats and human hippocampus using molecular tools
topic Hippocampus
Transcriptomics
Proteomics.
url https://econtents.sbu.unicamp.br/eventos/index.php/pibic/article/view/75
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