Cytokines Induce Monkey Neural Stem Cell Differentiation through Notch Signaling.

The mammalian central nervous system (CNS) has a limited ability to renew the damaged cells after a brain or spinal cord injury whether it is nonhuman primates like monkeys or humans. Transplantation of neural stem cells (NSCs) is a potential therapy for CNS injuries due to their pluripotency and di...

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Publicado en:BioMed Research International pp. 1 - 14
Autores principales: Wang, Min, Yu, Liming, Zhu, Lu-Ying, He, Hua, Ren, Jie, Pan, Jie, Xie, Xiaoyun, Cai, Chunhui, Lu, Lixia, Tian, Haibin, Chen, Li, Zhang, Ying, Liu, Yuehua, Zhang, Ce, Gao, Zhengliang, Han, Xin-Xin
Formato: pictorial research tables/charts Journal Article
Publicado: Wiley-Blackwell 5/14/2020
Acceso en línea:Ver este registro en EBSCOhost
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      dt: 5/14/2020
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      pub: Wiley-Blackwell
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        10.1155/2020/1308526
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        atl: Cytokines Induce Monkey Neural Stem Cell Differentiation through Notch Signaling.
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        au:
          Wang, Min
          Yu, Liming
          Zhu, Lu-Ying
          He, Hua
          Ren, Jie
          Pan, Jie
          Xie, Xiaoyun
          Cai, Chunhui
          Lu, Lixia
          Tian, Haibin
          Chen, Li
          Zhang, Ying
          Liu, Yuehua
          Zhang, Ce
          Gao, Zhengliang
          Han, Xin-Xin
        affil: National Key Disciplines, Key Laboratory for Cellular Physiology of Ministry of Education, Department of Neurobiology, Shanxi Medical University, Taiyuan 030001, China
      sug:
        subj:
          Cytokines Pharmacodynamics
          Stem Cells Drug Effects
          Cell Differentiation Drug Effects
          Signal Transduction Drug Effects
          Central Nervous System Drug Effects
          Animal Studies
          Primates
          Transforming Growth Factor beta Drug Effects
          Tretinoin Drug Effects
          Hydrocarbons Drug Effects
          Spinal Cord Injuries Therapy
          Brain Injuries Therapy
      ab: The mammalian central nervous system (CNS) has a limited ability to renew the damaged cells after a brain or spinal cord injury whether it is nonhuman primates like monkeys or humans. Transplantation of neural stem cells (NSCs) is a potential therapy for CNS injuries due to their pluripotency and differentiation abilities. Cytokines play an important role in CNS development and repair of CNS injuries. However, the detailed cytokine signaling response in monkey neural stem cells is rarely studied. In our previous research, we isolated NSCs from the adult monkey brain and found the effects of cytokines on monkey NSCs. Now, we further analyzed the regulation mechanisms of cytokines to the proliferation of monkey NSCs such as bone morphogenic protein 4 (BMP4), BMP4/leukaemia inhibitory factor (LIF), or retinoic acid (RA)/Forskolin. The data showed that BMP4 inhibited cell proliferation to arrest, but it did not affect the stemness of NSCs. BMP4/LIF promoted the astrocyte-like differentiation of monkey NSCs, and RA/forskolin induced the neuronal differentiation of monkey NSCs. BMP4/LIF and RA/forskolin induced monkey NSC differentiation by regulating Notch signaling. These results provide some theoretical evidence for NSC therapy to brain or spinal cord injury in regenerative medicine.
      pubtype: Academic Journal
      doctype:
        pictorial
        research
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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