Metabolomics,Unknown,Transcriptomics,Genomics,Proteomics

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Microarray dataset of gene transcription in mouse microglia and peripheral monocytes in contextual fear conditioning


ABSTRACT: Using Illumina MouseWG-6v2 microarrays, we investigated the gene transcription changes in microglia and peripheral monocytes after contextual fear conditioning of C57BL/6J mice. Mice were trained with or without a single minimized footshock stimulation (0-s or 2-s, 0.4 mA) and re-exposed to the training context without footshock for three different durations 24 h later: 0 min (FS0), 3 min (FS3), or 30 min (FS30). Whole brain microglia and peripheral monocytes were prepared 24 h after re-exposure using a neural tissue dissociation kit, including non-footshock controls for two re-exposure durations (Con3 and Con30). The data can be valuable for researchers interested in glial cells and neurotransmission studies and are related to the research article “Contextual fear conditioning regulates synapse-related gene transcription in mouse microglia”.

ORGANISM(S): Mus musculus

SUBMITTER: Zhiqian Yu 

PROVIDER: E-MTAB-12361 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Contextual fear conditioning regulates synapse-related gene transcription in mouse microglia.

Yu Zhiqian Z   Sakai Mai M   Fukushima Hotaka H   Ono Chiaki C   Kikuchi Yoshie Y   Koyama Ryuta R   Matsui Ko K   Furuyashiki Tomoyuki T   Kida Satoshi S   Tomita Hiroaki H  

Brain research bulletin 20220818


Microglia have been suggested to be involved in the underlying mechanism of conditional fear memory formation by regulating inflammatory cytokines. However, the mechanism linking microglia and neuronal activity related to fear conditioning remains unclear. This study characterized the transcription profile of microglia in a fear memory conditional mouse model. Compared with those in control mice microglia, the most significantly induced genes were synapse-related, whereas immune-related genes we  ...[more]

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