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Transcriptomic Changes Associated with Electroacupuncture in a DMCAO Model of Delayed Cognitive Impairment
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Introduction:
Delayed Cognitive Impairment (DCIS) occurs in approximately 31% to
77% of individuals following stroke. Clinical findings have indicated that electroacupuncture
may alleviate post-stroke DCIS. However, insights derived from animal models remain limited.
The present study utilized a Distal Middle Cerebral Artery Occlusion (DMCAO) mouse model
to investigate the potential mechanisms of electroacupuncture through hippocampal transcriptomic
analysis.
Materials and Methods:
Adult male BALB/c mice were subjected to DMCAO and received
electroacupuncture treatment. High-throughput RNA sequencing of hippocampal tissue was performed
to identify Differentially Expressed Genes (DEGs). Enrichment analyses, including Gene
Ontology (GO), Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis, hierarchical
clustering, and Protein–Protein Interaction (PPI) network analysis, were performed to elucidate
potential biological mechanisms.
Results:
The DMCAO model exhibited features consistent with DCIS. Electroacupuncture
treatment was associated with improved cognitive performance and enhanced hippocampal neuroplasticity.
A total of 116 DEGs were identified in the DMCAO group compared with the sham
group, while 69 DEGs were identified in the DMCAO+ electroacupuncture group compared
with the untreated DMCAO group.
Discussion:
GO enrichment analysis indicated that electroacupuncture modulated biological
processes related to nerve fibers, axonal development, neuronal regulation, cellular processes,
and cardiovascular protection. KEGG pathway analysis indicated involvement in pathways associated
with neuronal recovery and axonal function. The PPI network comprised 28 nodes and 33
interactions, with hub genes such as Gna13, Hipk2, and Stambp playing key roles. Quantitative
Reverse Transcription Polymerase Chain Reaction (qRT-PCR) results were consistent with RNA
sequencing findings.
Conclusion:
Electroacupuncture improved DCIS in the DMCAO mouse model. Transcriptomic
analysis of the hippocampus provided preliminary evidence of the potential mechanisms underlying
the therapeutic effects of electroacupuncture treatment following ischemic stroke.
Bentham Science Publishers Ltd.
Title: Transcriptomic Changes Associated with Electroacupuncture in a DMCAO Model of Delayed Cognitive Impairment
Description:
Introduction:
Delayed Cognitive Impairment (DCIS) occurs in approximately 31% to
77% of individuals following stroke.
Clinical findings have indicated that electroacupuncture
may alleviate post-stroke DCIS.
However, insights derived from animal models remain limited.
The present study utilized a Distal Middle Cerebral Artery Occlusion (DMCAO) mouse model
to investigate the potential mechanisms of electroacupuncture through hippocampal transcriptomic
analysis.
Materials and Methods:
Adult male BALB/c mice were subjected to DMCAO and received
electroacupuncture treatment.
High-throughput RNA sequencing of hippocampal tissue was performed
to identify Differentially Expressed Genes (DEGs).
Enrichment analyses, including Gene
Ontology (GO), Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis, hierarchical
clustering, and Protein–Protein Interaction (PPI) network analysis, were performed to elucidate
potential biological mechanisms.
Results:
The DMCAO model exhibited features consistent with DCIS.
Electroacupuncture
treatment was associated with improved cognitive performance and enhanced hippocampal neuroplasticity.
A total of 116 DEGs were identified in the DMCAO group compared with the sham
group, while 69 DEGs were identified in the DMCAO+ electroacupuncture group compared
with the untreated DMCAO group.
Discussion:
GO enrichment analysis indicated that electroacupuncture modulated biological
processes related to nerve fibers, axonal development, neuronal regulation, cellular processes,
and cardiovascular protection.
KEGG pathway analysis indicated involvement in pathways associated
with neuronal recovery and axonal function.
The PPI network comprised 28 nodes and 33
interactions, with hub genes such as Gna13, Hipk2, and Stambp playing key roles.
Quantitative
Reverse Transcription Polymerase Chain Reaction (qRT-PCR) results were consistent with RNA
sequencing findings.
Conclusion:
Electroacupuncture improved DCIS in the DMCAO mouse model.
Transcriptomic
analysis of the hippocampus provided preliminary evidence of the potential mechanisms underlying
the therapeutic effects of electroacupuncture treatment following ischemic stroke.
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