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N-hydroxy-N'-(4-butyl-2-methylphenyl)-formamidine attenuates oxygen-glucose deprivation and reoxygenation-induced cerebral ischemia-reperfusion injury via regulation of microRNAs.
Yang, Tiansong; Wang, Dongyan; Qu, Yuanyuan; Wang, Yulin; Feng, Yuenan; Yang, Yan; Luo, Qiang; Sun, Xiaowei; Yu, Guoqiang; He, Jia; Sun, Zhongren; Zhu, Yulan.
Afiliação
  • Yang T; Department of Neurology, The Second Affiliated Hospital of Harbin Medical University, Harbin, 150081, P. R. China.
  • Wang D; First affiliated hospital, Heilongjiang University of Chinese Medicine, Harbin, 150040, P. R. China.
  • Qu Y; Heilongjiang University of Chinese Medicine, Harbin, 150040, P. R. China.
  • Wang Y; Heilongjiang University of Chinese Medicine, Harbin, 150040, P. R. China.
  • Feng Y; Heilongjiang University of Chinese Medicine, Harbin, 150040, P. R. China.
  • Yang Y; Heilongjiang University of Chinese Medicine, Harbin, 150040, P. R. China.
  • Luo Q; Heilongjiang University of Chinese Medicine, Harbin, 150040, P. R. China.
  • Sun X; Xiamen Institute of Rare-Earth Materials, Xiamen, 361021, P. R. China.
  • Yu G; First affiliated hospital, Heilongjiang University of Chinese Medicine, Harbin, 150040, P. R. China.
  • He J; Heilongjiang University of Chinese Medicine, Harbin, 150040, P. R. China.
  • Sun Z; Department of Neurology, The Second Affiliated Hospital of Harbin Medical University, Harbin, 150081, P. R. China.
  • Zhu Y; Heilongjiang University of Chinese Medicine, Harbin, 150040, P. R. China.
J Integr Neurosci ; 19(2): 303-311, 2020 Jun 30.
Article em En | MEDLINE | ID: mdl-32706194
ABSTRACT
Cerebral ischemia-reperfusion injury is a common complication that occurs during stroke treatment. Increasingly, microRNAs have been found to participate in the modulation of neuron function; however, the role of microRNAs in cerebral ischemia-reperfusion injury remains unclear. We developed a mechanism of cerebral ischemia-reperfusion injury using a cellular model of oxygen-glucose deprivation and reoxygenation-induced injury in human neuroblastoma SH-SY5Y cells. We found that treatment of oxygen-glucose deprivation and reoxygenation promoted the apoptosis of SH-SY5Y cells. Analysis of microRNAs sequencing revealed that the expression of microRNA-27a-5p was induced, and microRNA-29b-3p expression was inhibited in neuroblastoma cells exposed to oxygen-glucose deprivation and reoxygenation. Either inhibition of microRNA-27a-5p or overexpression of microRNA-29b-3p mitigated oxygen-glucose deprivation and reoxygenation-induced cellular apoptosis. Bach1 was authenticated as a target gene of microRNA-27a-5p. Also, microRNA-27a-5p mediated the expression of Bach 1 along with its downstream signaling. N-hydroxy-N'-(4-butyl-2-methylphenyl)-formamidine protected against oxygen-glucose deprivation and reoxygenation-induced apoptosis while decreasing miR-27a-5p expression and increasing microRNA-29b-3p expression. These results suggested that microRNA-27a-5p and microRNA-29b-3p may contribute to oxygen-glucose deprivation and reoxygenation-induced cellular injury. At the same time, N-hydroxy-N'-(4-butyl-2-methylphenyl)-formamidine protects SH-SY5Y cells against oxygen-glucose deprivation and reoxygenation-induced injury partly through the inhibition of microRNA-27-a-5p and promotion of the Bach1/HO-1 signaling pathway.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Traumatismo por Reperfusão / Apoptose / MicroRNAs / Fatores de Transcrição de Zíper de Leucina Básica / Amidinas / Glucose / Hipóxia Tipo de estudo: Prognostic_studies Limite: Humans Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Traumatismo por Reperfusão / Apoptose / MicroRNAs / Fatores de Transcrição de Zíper de Leucina Básica / Amidinas / Glucose / Hipóxia Tipo de estudo: Prognostic_studies Limite: Humans Idioma: En Ano de publicação: 2020 Tipo de documento: Article