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Micro RNA-9 promotes the neuronal differentiation of rat bone marrow mesenchymal stem cells by activating autophagy
Authors:Guang-yu Zhang  Jun Wang  Yan-jie Jia  Rui Han  Ping Li  Deng-na Zhu  Rehabilitation  Treatment Center for Children with Cerebral Palsy of Henan Province,the Third Affiliated Hospital of Zhengzhou University  
Affiliation:Guang-yu Zhang;Jun Wang;Yan-jie Jia;Rui Han;Ping Li;Deng-na Zhu;Rehabilitation and Treatment Center for Children with Cerebral Palsy of Henan Province, the Third Affiliated Hospital of Zhengzhou University;Department of Neurology, the First Affiliated Hospital of Zhengzhou University;Department of Pediatrics, the Third Affiliated Hospital of Zhengzhou University;
Abstract:Micro RNA-9(mi R-9) has been shown to promote the differentiation of bone marrow mesenchymal stem cells into neuronal cells, but the precise mechanism is unclear. Our previous study confirmed that increased autophagic activity improved the efficiency of neuronal differentiation in bone marrow mesenchymal stem cells. Accumulating evidence reveals that mi RNAs adjust the autophagic pathways. This study used mi R-9-1 lentiviral vector and mi R-9-1 inhibitor to modulate the expression level of mi R-9. Autophagic activity and neuronal differentiation were measured by the number of light chain-3(LC3)-positive dots, the ratio of LC3-II/LC3, and the expression levels of the neuronal markers enolase and microtubule-associated protein 2. Results showed that LC3-positive dots, the ratio of LC3-II/LC3, and expression of neuron specific enolase and microtubule-associated protein 2 increased in the mi R-9+ group. The above results suggest that autophagic activity increased and bone marrow mesenchymal stem cells were prone to differentiate into neuronal cells when mi R-9 was overexpressed, demonstrating that mi R-9 can promote neuronal differentiation by increasing autophagic activity.
Keywords:nerve regeneration   microRNA-9   bone marrow mesenchymal stem cells   differentiation   neuron-like cells   autophagy   neuron specific enolase   microtubule-associated protein   LC3   neural regeneration
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