GSK-3 Inhibitor Promotes Neuronal Cell Regeneration and Functional Recovery in a Rat Model of Spinal Cord Injury

被引:17
|
作者
Lei, Fei [1 ,2 ]
He, Wen [3 ]
Tian, Xinggui [2 ]
Zhou, Qingzhong [2 ]
Zheng, Lipeng [2 ]
Kang, Jianping [2 ]
Song, Yueming [1 ]
Feng, Daxiong [2 ]
机构
[1] Sichuan Univ, West China Hosp, Dept Orthoped Surg, 37 Guoxue St, Chengdu 610041, Sichuan, Peoples R China
[2] Southwest Med Univ, Dept Spine Surg, Affiliated Hosp, 25 Taiping St, Luzhou 646000, Sichuan, Peoples R China
[3] Southwest Med Univ, Dept Lib, 1 Xianglin Rd, Luzhou 646000, Sichuan, Peoples R China
关键词
AXONAL REGENERATION; INDUCED APOPTOSIS; GROWTH-FACTOR; PATHWAY; PROTEIN; INACTIVATION; INVOLVEMENT; MECHANISMS;
D O I
10.1155/2019/9628065
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The reparative process following spinal cord injury (SCI) is extremely complicated. Cells in the microenvironment express multiple inhibitory factors that affect axonal regeneration over a prolonged period of time. The axon growth inhibitory factor glycogen synthase kinase-3 (GSK-3) is an important factor during these processes. TDZD-8 (4-benzyl-2-methyl-1,2,4-thiadiazolidine-3,5-dione) is the most effective and specific non-ATP-competitive inhibitor of GSK-3. Here, we show that administering TDZD-8 after SCI was associated with significantly inhibited neuronal apoptosis, upregulated GAP-43 expression, increased density of cortical spinal tract fibers around areas of injury, and increased Basso, Beattie, and Bresnahan (BBB) scores in the lower limbs. These findings support the notion that GSK-3 inhibitors promote neuronal cell regeneration and lower limb functional recovery.
引用
收藏
页数:8
相关论文
共 50 条
  • [31] LOTUS Inhibits Neuronal Apoptosis and Promotes Tract Regeneration in Contusive Spinal Cord Injury Model Mice
    Ito, Shuhei
    Nagoshi, Narihito
    Tsuji, Osahiko
    Shibata, Shinsuke
    Shinozaki, Munehisa
    Kawabata, Soya
    Kojima, Kota
    Yasutake, Kaori
    Hirokawa, Tomoko
    Matsumoto, Morio
    Takei, Kohtaro
    Nakamura, Masaya
    Okano, Hideyuki
    ENEURO, 2018, 5 (05)
  • [32] Knockdown of Nogo gene by short hairpin RNA interference promotes functional recovery of spinal cord injury in a rat model
    Liu, Guo-Min
    Luo, Yun-Gang
    Li, Juan
    Xu, Kun
    MOLECULAR MEDICINE REPORTS, 2016, 13 (05) : 4431 - 4436
  • [33] Transplantation of Human Amniotic Mesenchymal Stem Cells Promotes Functional Recovery in a Rat Model of Traumatic Spinal Cord Injury
    Zhou, Hong-Long
    Zhang, Xue-Jun
    Zhang, Mao-Ying
    Yan, Zhong-Jie
    Xu, Zhi-Min
    Xu, Ru-Xiang
    NEUROCHEMICAL RESEARCH, 2016, 41 (10) : 2708 - 2718
  • [34] Transplantation of olfactory ensheathing cells promotes axonal regeneration in a rat model of spinal cord injury
    Teng, Xichuan
    Yoshioka, Nozomu
    Kimura-Kuroda, Junko
    Kawamura, Koki
    Kawano, Hitoshi
    Li, Hongpeng
    NEURAL REGENERATION RESEARCH, 2010, 5 (09) : 651 - 656
  • [35] Transplantation of Human Amniotic Mesenchymal Stem Cells Promotes Functional Recovery in a Rat Model of Traumatic Spinal Cord Injury
    Hong-Long Zhou
    Xue-Jun Zhang
    Mao-Ying Zhang
    Zhong-Jie Yan
    Zhi-Min Xu
    Ru-Xiang Xu
    Neurochemical Research, 2016, 41 : 2708 - 2718
  • [36] Intraspinal cord graft of autologous activated Schwann cells efficiently promotes axonal regeneration and functional recovery after rat's spinal cord injury
    Ban, De-Xiang
    Kong, Xiao-Hong
    Feng, Shi-Qing
    Ning, Guang-Zhi
    Chen, Jia-Tong
    Guo, Shi-Fu
    BRAIN RESEARCH, 2009, 1256 : 149 - 161
  • [37] Transplantation of olfactory ensheathing cells promotes axonal regeneration in a rat model of spinal cord injury
    Nozomu Yoshioka
    Junko Kimura-Kuroda
    Koki Kawamura
    Hitoshi Kawano
    NeuralRegenerationResearch, 2010, 5 (09) : 651 - 656
  • [38] Curcumin promotes nerve regeneration and functional recovery in rat model of nerve crush injury
    Ma, Junxiong
    Liu, Jun
    Yu, Hailong
    Wang, Qi
    Chen, Yu
    Xiang, Liangbi
    NEUROSCIENCE LETTERS, 2013, 547 : 26 - 31
  • [39] Human blood derived regeneration matrix (RMX™) promotes neuronal cell functional responses and loco-motor recovery in animal models of traumatic spinal cord injury
    Ahlfors, Jan-Eric
    Adams, David
    Hartey, Jack
    Ungurean, Victor
    Vidali, Luis
    Mackin, William
    JOURNAL OF NEUROTRAUMA, 2006, 23 (06) : 994 - 994
  • [40] Exercise Training Promotes Functional Recovery after Spinal Cord Injury
    Fu, Juanjuan
    Wang, Hongxing
    Deng, Lingxiao
    Li, Jianan
    NEURAL PLASTICITY, 2016, 2016