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Modulating the RPS27A/PSMD12/NF-κB pathway to control immune response in mouse brain ischemia-reperfusion injury.
Li, Xiaocheng; Qiao, Ming; Zhou, Yan; Peng, Yan; Wen, Gang; Xie, Chenchen; Zhang, Yamei.
Affiliation
  • Li X; Key Laboratory of Clinical Genetics, Affiliated Hospital of Chengdu University & College of Food and Biological Engineering, Chengdu, 610081, P. R. China.
  • Qiao M; Department of Critical Medicine, The People's Hospital of Renshou County, Meishan, 620500, P. R. China.
  • Zhou Y; Department of Radiation Protection Medicine, Faculty of Preventive Medicine, Air Force Medical University, Xi'an, 710032, P. R. China.
  • Peng Y; Department of Critical Medicine, The People's Hospital of Renshou County, Meishan, 620500, P. R. China.
  • Wen G; Department of Critical Medicine, The People's Hospital of Renshou County, Meishan, 620500, P. R. China.
  • Xie C; Department of Neurology, Affiliated Hospital of Chengdu University, Chengdu, 610082, P. R. China.
  • Zhang Y; Key Laboratory of Clinical Genetics, Affiliated Hospital of Chengdu University, No. 82, North Section 2, 2nd Ring Road, Chengdu, Sichuan, 610081, P. R. China. zhangyamei@cdu.edu.cn.
Mol Med ; 30(1): 106, 2024 Jul 22.
Article in En | MEDLINE | ID: mdl-39039432
ABSTRACT

BACKGROUND:

Investigating immune cell infiltration in the brain post-ischemia-reperfusion (I/R) injury is crucial for understanding and managing the resultant inflammatory responses. This study aims to unravel the role of the RPS27A-mediated PSMD12/NF-κB axis in controlling immune cell infiltration in the context of cerebral I/R injury.

METHODS:

To identify genes associated with cerebral I/R injury, high-throughput sequencing was employed. The potential downstream genes were further analyzed using Gene Ontology (GO), Kyoto Encyclopedia of Genes and Genomes (KEGG), and Protein-Protein Interaction (PPI) analyses. For experimental models, primary microglia and neurons were extracted from the cortical tissues of mouse brains. An in vitro cerebral I/R injury model was established in microglia using the oxygen-glucose deprivation/reoxygenation (OGD/R) technique. In vivo models involved inducing cerebral I/R injury in mice through the middle cerebral artery occlusion (MCAO) method. These models were used to assess neurological function, immune cell infiltration, and inflammatory factor release.

RESULTS:

The study identified RPS27A as a key player in cerebral I/R injury, with PSMD12 likely acting as its downstream regulator. Silencing RPS27A in OGD/R-induced microglia decreased the release of inflammatory factors and reduced neuron apoptosis. Additionally, RPS27A silencing in cerebral cortex tissues mediated the PSMD12/NF-κB axis, resulting in decreased inflammatory factor release, reduced neutrophil infiltration, and improved cerebral injury outcomes in I/R-injured mice.

CONCLUSION:

RPS27A regulates the expression of the PSMD12/NF-κB signaling axis, leading to the induction of inflammatory factors in microglial cells, promoting immune cell infiltration in brain tissue, and exacerbating brain damage in I/R mice. This study introduces novel insights and theoretical foundations for the treatment of nerve damage caused by I/R, suggesting that targeting the RPS27A and downstream PSMD12/NF-κB signaling axis for drug development could represent a new direction in I/R therapy.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Ribosomal Proteins / Reperfusion Injury / Signal Transduction / NF-kappa B Limits: Animals Language: En Journal: Mol Med Journal subject: BIOLOGIA MOLECULAR Year: 2024 Document type: Article Country of publication: United kingdom

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Ribosomal Proteins / Reperfusion Injury / Signal Transduction / NF-kappa B Limits: Animals Language: En Journal: Mol Med Journal subject: BIOLOGIA MOLECULAR Year: 2024 Document type: Article Country of publication: United kingdom