Celastrol mediates autophagy and apoptosis via the ROS/JNK and Akt/mTOR signaling pathways in glioma cells

被引:0
作者
Xihong Liu
Peiyuan Zhao
Xiujuan Wang
Lei Wang
Yingjun Zhu
Yadi Song
Wei Gao
机构
[1] Capital Medical University,School of Traditional Chinese Medicine
[2] Capital Medical University,Beijing Key Lab of TCM Collateral Disease Theory Research
[3] Capital Medical University,Advanced Innovation Center for Human Brain Protection
[4] Henan University of Chinese Medicine,Basic Discipline of Integrated Chinese and Western Medicine
来源
Journal of Experimental & Clinical Cancer Research | / 38卷
关键词
Celastrol; Apoptosis; Autophagosome; Glioma; Cell cycle;
D O I
暂无
中图分类号
学科分类号
摘要
引用
收藏
相关论文
共 292 条
  • [1] Schwartzbaum JA(2006)Epidemiology and molecular pathology of glioma Nat Clin Pract Neurol 2 494-503
  • [2] Fisher JL(2015)Treatment of obesity with celastrol Cell. 161 999-1011
  • [3] Aldape KD(2017)Celastrol-induced Nur77 interaction with TRAF2 alleviates inflammation by promoting mitochondrial ubiquitination and autophagy Mol Cell 66 141-53 e6
  • [4] Wrensch M(2018)Mitochondrial alkaline pH-responsive drug release mediated by Celastrol loaded glycolipid-like micelles for cancer therapy Biomaterials. 154 169-181
  • [5] Liu J(2007)Molecular understanding and modern application of traditional medicines: triumphs and trials Cell. 130 769-774
  • [6] Lee J(2014)Cancerous inhibitor of PP2A is targeted by natural compound celastrol for degradation in non-small-cell lung cancer Carcinogenesis. 35 905-914
  • [7] Salazar Hernandez MA(2016)Targeting acute myeloid leukemia with a small molecule inhibitor of the Myb/p300 interaction Blood. 127 1173-1182
  • [8] Mazitschek R(2009)Antiangiogenic effect of celastrol on the growth of human glioma: an in vitro and in vivo study Chin Med J 122 1666-1673
  • [9] Ozcan U(2008)Celastrol inhibits the growth of human glioma xenografts in nude mice through suppressing VEGFR expression Cancer Lett 264 101-106
  • [10] Hu M(2014)Celastrol prevents cadmium-induced neuronal cell death via targeting JNK and PTEN-Akt/mTOR network J Neurochem 128 256-266