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Direct neuronal reprogramming of olfactory ensheathing cells for CNS repair.
Sun, Xiu; Tan, Zijian; Huang, Xiao; Cheng, Xueyan; Yuan, Yimin; Qin, Shangyao; Wang, Dan; Hu, Xin; Gu, Yakun; Qian, Wen-Jing; Wang, Zhongfeng; He, Cheng; Su, Zhida.
Afiliação
  • Sun X; Institute of Neuroscience, Key Laboratory of Molecular Neurobiology of Ministry of Education and the Collaborative Innovation Center for Brain Science, Second Military Medical University, 200433, Shanghai, China.
  • Tan Z; Institute of Neuroscience, Key Laboratory of Molecular Neurobiology of Ministry of Education and the Collaborative Innovation Center for Brain Science, Second Military Medical University, 200433, Shanghai, China.
  • Huang X; Institute of Neuroscience, Key Laboratory of Molecular Neurobiology of Ministry of Education and the Collaborative Innovation Center for Brain Science, Second Military Medical University, 200433, Shanghai, China.
  • Cheng X; Institute of Neuroscience, Key Laboratory of Molecular Neurobiology of Ministry of Education and the Collaborative Innovation Center for Brain Science, Second Military Medical University, 200433, Shanghai, China.
  • Yuan Y; Institute of Neuroscience, Key Laboratory of Molecular Neurobiology of Ministry of Education and the Collaborative Innovation Center for Brain Science, Second Military Medical University, 200433, Shanghai, China.
  • Qin S; Institute of Neuroscience, Key Laboratory of Molecular Neurobiology of Ministry of Education and the Collaborative Innovation Center for Brain Science, Second Military Medical University, 200433, Shanghai, China.
  • Wang D; Institute of Neuroscience, Key Laboratory of Molecular Neurobiology of Ministry of Education and the Collaborative Innovation Center for Brain Science, Second Military Medical University, 200433, Shanghai, China.
  • Hu X; Institute of Neuroscience, Key Laboratory of Molecular Neurobiology of Ministry of Education and the Collaborative Innovation Center for Brain Science, Second Military Medical University, 200433, Shanghai, China.
  • Gu Y; Institute of Neuroscience, Key Laboratory of Molecular Neurobiology of Ministry of Education and the Collaborative Innovation Center for Brain Science, Second Military Medical University, 200433, Shanghai, China.
  • Qian WJ; Institutes of Brain Science and State Key Laboratory of Medical Neurobiology, Fudan University, 200032, Shanghai, China.
  • Wang Z; Institutes of Brain Science and State Key Laboratory of Medical Neurobiology, Fudan University, 200032, Shanghai, China.
  • He C; Institute of Neuroscience, Key Laboratory of Molecular Neurobiology of Ministry of Education and the Collaborative Innovation Center for Brain Science, Second Military Medical University, 200433, Shanghai, China. chenghe@smmu.edu.cn.
  • Su Z; Institute of Neuroscience, Key Laboratory of Molecular Neurobiology of Ministry of Education and the Collaborative Innovation Center for Brain Science, Second Military Medical University, 200433, Shanghai, China. suzhida@smmu.edu.cn.
Cell Death Dis ; 10(9): 646, 2019 09 09.
Article em En | MEDLINE | ID: mdl-31501413
ABSTRACT
Direct conversion of readily available non-neural cells from patients into induced neurons holds great promise for neurological disease modeling and cell-based therapy. Olfactory ensheathing cells (OECs) is a unique population of glia in olfactory nervous system. Based on the regeneration-promoting properties and the relative clinical accessibility, OECs are attracting increasing attention from neuroscientists as potential therapeutic agents for use in neural repair. Here, we report that OECs can be directly, rapidly and efficiently reprogrammed into neuronal cells by the single transcription factor Neurogenin 2 (NGN2). These induced cells exhibit typical neuronal morphologies, express multiple neuron-specific markers, produce action potentials, and form functional synapses. Genome-wide RNA-sequencing analysis shows that the transcriptome profile of OECs is effectively reprogrammed towards that of neuronal lineage. Importantly, these OEC-derived induced neurons survive and mature after transplantation into adult mouse spinal cords. Taken together, our study provides a direct and efficient strategy to quickly obtain neuronal cells from adult OECs, suggestive of promising potential for personalized disease modeling and cell replacement-mediated therapeutic approaches to neurological disorders.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Bulbo Olfatório / Regeneração Nervosa Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Bulbo Olfatório / Regeneração Nervosa Idioma: En Ano de publicação: 2019 Tipo de documento: Article