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典型文献
Inhibition of microRNA-29b suppresses oxidative stress and reduces apoptosis in ischemic stroke
文献摘要:
MicroRNAs (miRNAs) regulate protein expression by antagonizing the translation of mRNAs and are effective regulators of normal nervous system development, function, and disease. MicroRNA-29b (miR-29b) plays a broad and critical role in brain homeostasis. In this study, we tested the function of miR-29b in animal and cell models by inhibiting miR-29b expression. Mouse models of middle cerebral artery occlusion were established using the modified Zea-Longa suture method. Prior to modeling, 50 nmol/kg miR-29b antagomir was injected via the tail vein. MiR-29b expression was found to be abnormally increased in ischemic brain tissue. The inhibition of miR-29b expression decreased the neurological function score and reduced the cerebral infarction volume and cell apoptosis. In addition, the inhibition of miR-29b significantly decreased the malondialdehyde level, increased superoxide dismutase activity, and Bcl-2 expression, and inhibited Bax and Caspase3 expression. PC12 cells were treated with glutamate for 12 hours to establish in vitro cell models of ischemic stroke and then treated with the miR-29 antagomir for 48 hours. The results revealed that miR-29b inhibition in PC12 cells increased Bcl-2 expression and inhibited cell apoptosis and oxidative damage. These findings suggest that the inhibition of miR-29b inhibits oxidative stress and cell apoptosis in ischemic stroke, producing therapeutic effects in ischemic stroke. This study was approved by the Laboratory Animal Care and Use Committee of the First Affiliated Hospital of Zhengzhou University (approval No. 201709276S) on September 27, 2017.
文献关键词:
作者姓名:
Yao-Hua Ma
作者机构:
Neurological Intensive Care Unit,the First Affiliated Hospital of Zhengzhou University,Zhengzhou,Henan Province,China
引用格式:
[1]Yao-Hua Ma-.Inhibition of microRNA-29b suppresses oxidative stress and reduces apoptosis in ischemic stroke)[J].中国神经再生研究(英文版),2022(02):433-439
A类:
201709276S
B类:
Inhibition,microRNA,29b,suppresses,oxidative,stress,reduces,apoptosis,ischemic,stroke,MicroRNAs,miRNAs,regulate,protein,expression,by,antagonizing,translation,mRNAs,effective,regulators,nervous,system,development,function,disease,plays,broad,critical,role,brain,homeostasis,this,study,tested,animal,models,inhibiting,Mouse,middle,cerebral,artery,occlusion,were,established,using,modified,Zea,Longa,suture,method,Prior,modeling,nmol,antagomir,was,injected,via,tail,vein,MiR,found,abnormally,increased,tissue,inhibition,decreased,neurological,score,reduced,infarction,volume,addition,significantly,malondialdehyde,level,superoxide,dismutase,activity,Bcl,inhibited,Bax,Caspase3,PC12,cells,treated,glutamate,hours,vitro,then,results,revealed,that,damage,These,findings,suggest,inhibits,producing,therapeutic,effects,This,approved,Laboratory,Animal,Care,Use,Committee,First,Affiliated,Hospital,Zhengzhou,University,approval,No,September
AB值:
0.546543
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