Tamoxifen:an FDA approved drug with neuroprotective effects for spinal cord injury recovery

被引:0
作者
Jennifer M.Colón [1 ]
Jorge D.Miranda [1 ]
机构
[1] Department of Physiology,School of Medicine,University of Puerto Rico Medical Sciences Campus
关键词
selective estrogen receptor modulator; trauma; antioxidant; anti-inflammatory; regeneration; reactive gliosis; demyelination; estradiol;
D O I
暂无
中图分类号
R651.2 [脊髓];
学科分类号
1002 ; 100210 ;
摘要
Spinal cord injury(SCI) is a condition without a cure,affecting sensory and/or motor functions.The physical trauma to the spinal cord initiates a cascade of molecular and cellular events that generates a non-permissive environment for cell survival and axonal regeneration.Among these complex set of events are damage of the blood-brain barrier,edema formation,inflammation,oxidative stress,demyelination,reactive gliosis and apoptosis.The multiple events activated after SCI require a multi-active drug that could target most of these events and produce a permissive environment for cell survival,regeneration,vascular reorganization and synaptic formation.Tamoxifen,a selective estrogen receptor modulator,is an FDA approved drug with several neuroprotective properties that should be considered for the treatment of this devastating condition.Various investigators using different animal models and injury parameters have demonstrated the beneficial effects of this drug to improve functional locomotor recovery after SCI.Results suggest that the mechanism of action of Tamoxifen administration is to modulate anti-oxidant,anti-inflammatory and anti-gliotic responses.A gap of knowledge exists regarding the sex differences in response to Tamoxifen and the therapeutic window available to administer this treatment.In addition,the effects of Tamoxifen in axonal outgrowth or synapse formation needs to be investigated.This review will address some of the mechanisms activated by Tamoxifen after SCI and the results recently published by investigators in the field.
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页码:1208 / 1211
页数:4
相关论文
共 13 条
  • [1] Quantitative analysis of hindlimbs locomotion kinematics in spinalized rats treated with Tamoxifen plus treadmill exercise. Osuna-Carrasco LP,López-Ruiz JR,Mendizabal-Ruiz EG,De la Torre-Valdovinos B,Ba?uelos-Pineda J,Jiménez-Estrada I,Due?asJiménez SH. Neuroscience . 2016
  • [2] Tamoxifen administration immediately or 24hours after spinal cord injury improves locomotor recovery and reduces secondary damage in female rats. Colón JM,Torrado AI,Cajigas A,Santiago JM,Salgado IK,Arroyo Y,Miranda JD. Journal of Neurotrauma . 2016
  • [3] The cancer drug tamoxifen:a potential therapeutic treatment for spinal cord injury. Guptarak J,Wiktorowicz JE,Sadygov RG,et al. Journal of Neurotrauma . 2014
  • [4] Tamoxifen reduces infiltration of inflammatory cells, apoptosis and inhibits IKK/NF-kB pathway after spinal cord injury in rats[J] . Hong-yu Wei,Xiao Ma. &nbspNeurological Sciences . 2014 (11)
  • [5] Tamoxifen and estradiol improved locomotor function and increased spared tissue in rats after spinal cord injury: Their antioxidant effect and role of estrogen receptor alpha[J] . Laurivette Mosquera,Jennifer M. Colón,José M. Santiago,Aranza I. Torrado,Margarita Meléndez,Annabell C. Segarra,José F. Rodríguez-Orengo,Jorge D. Miranda. &nbspBrain Research . 2014
  • [6] The Role of Steroids in Acute Spinal Cord Injury[J] . Mohamad Bydon,Joseph Lin,Mohamed Macki,Ziya L. Gokalsan,Ali Bydon. &nbspWorld Neurosurgery . 2013
  • [7] Neuroprotective effects of tamoxifen on experimental spinal cord injury in rats
    Ismailoglu, Ozguer
    Oral, Baha
    Gorgulu, Askin
    Sutcu, Recep
    Demir, Necdet
    [J]. JOURNAL OF CLINICAL NEUROSCIENCE, 2010, 17 (10) : 1306 - 1310
  • [8] Neuroprotection by tamoxifen in focal cerebral ischemia is not mediated by an agonist action at estrogen receptors but is associated with antioxidant activity
    Zhang, Yonghua
    Milatovic, Dejan
    Aschner, Michael
    Feustel, Paul J.
    Kimelberg, Harold K.
    [J]. EXPERIMENTAL NEUROLOGY, 2007, 204 (02) : 819 - 827
  • [9] Tamoxifen attenuates inflammatory-mediated damage and improves functional outcome after spinal cord injury in rats. Tian Dai-Shi,Liu Jun-Li,Xie Min-Jie,Zhan Yan,Qu Wen-Sheng,Yu Zhi-Yuan,Tang Zhou-Ping,Pan Deng-Ji,Wang Wei. Journal of Neurophysiology . 2009
  • [10] Sexual dimorphism in the spontaneous recovery from spinal cord injury: a gender gap in beneficial autoimmunity?. Ehud Hauben,Tal Mizrahi,Evgenia Agranov,Michal Schwartz. European Journal of Neuroscience . 2002