Blocking LDHA glycolytic pathway sensitizes glioblastoma cells to radiation and temozolomide

被引:42
作者
Koukourakis, Michael [1 ]
Tsolou, Avgi [1 ]
Pouliliou, Stamatia [1 ]
Lamprou, Loannis [1 ]
Papadopoulou, Maria [1 ]
Ilemosoglou, Maria [1 ]
Kostoglou, Georgia [1 ]
Ananiadou, Dimitra [1 ]
Sivridis, Efthimios [2 ]
Giatromanolaki, Alexandra [2 ]
机构
[1] Democritus Univ Thrace, Dept Radiotherapy Oncol, Alexandroupolis 68100, Greece
[2] Democritus Univ Thrace, Dept Pathol, Alexandroupolis 68100, Greece
关键词
Glioblastoma; Radiotherapy; Temozolomide; LDHA; Oxamate; 2DG; DEHYDROGENASE; 5; EXPRESSION; LACTATE-DEHYDROGENASE; TUMOR PROGRESSION; COLORECTAL-CANCER; PROSTATE-CANCER; IN-VITRO; RADIOTHERAPY; HYPOXIA; INHIBITION; NEURONS;
D O I
10.1016/j.bbrc.2017.07.138
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Purpose: Up-regulation of lactate dehydrogenase LDHA, is a frequent event in human malignancies and relate to poor postoperative outcome. In the current study we examined the hypothesis that LDHA and anaerobic glycolysis, may contribute to the resistance of glioblastoma to radiotherapy and to temozolomide. Methods and materials: The expression of LDH5 isoenzyme (fully encoded by the LDHA gene) was assessed in human glioblastoma tissues. Experimental in vitro studies involved the T98 and U87 glioblastoma cell lines. Their sensitivity to radiotherapy and to temozolomide, following silencing of LDHA gene or following exposure to the LDHA chemical inhibitor 'oxamate' and to the glycolysis inhibitor '2-deoxy-D-glucose' (2DG), was studied. Results: Glioblastoma tissues showed strong cytoplasmic and nuclear LDH5 expression in 0-90% (median 20%) of the neoplastic cells. T98 and U87 cell lines showed that blocking glycolysis, either with LDHA gene silencing or exposure to oxamate (30 mM) and blockage of glycolysis with 2DG (500 mu M), results in enhanced radiation sensitivity, an effect that was more robust in the T98 radioresistant cell line. Furthermore, all three glycolysis targeting methods, significantly sensitized both cell lines to Temozolomide. Conclusions: The current study provides evidence that a large subgroup of human glioblastomas are highly glycolytic, and that inhibitors of glycolysis, like LDHA targeting agents, may prove of therapeutic importance by enhancing the efficacy of radiotherapy and temozolomide against this lethal disease. (C) 2017 Elsevier Inc. All rights reserved.
引用
收藏
页码:932 / 938
页数:7
相关论文
共 50 条
  • [31] PhospholipaseD1inhibition sensitizes glioblastoma to temozolomide and suppresses its tumorigenicity
    Kang, Dong Woo
    Hwang, Won Chan
    Noh, Yu Na
    Park, Kang Seo
    Min, Do Sik
    JOURNAL OF PATHOLOGY, 2020, 252 (03) : 304 - 316
  • [32] Therapeutic interactions of autophagy with radiation and temozolomide in glioblastoma: evidence and issues to resolve
    Koukourakis, Michael I.
    Mitrakas, Achilleas G.
    Giatromanolaki, Alexandra
    BRITISH JOURNAL OF CANCER, 2016, 114 (05) : 485 - 496
  • [33] Concurrent Temozolomide and Radiation, a Reasonable Option for Elderly Patients With Glioblastoma Multiforme?
    Kimple, Randall J.
    Grabowski, Sarah
    Papez, Michael
    Collichio, Frances
    Ewend, Matthew G.
    Morris, David E.
    AMERICAN JOURNAL OF CLINICAL ONCOLOGY-CANCER CLINICAL TRIALS, 2010, 33 (03): : 265 - 270
  • [34] Downregulation of SNRPG induces cell cycle arrest and sensitizes human glioblastoma cells to temozolomide by targeting Myc through a p53-dependent signaling pathway
    Lan, Yulong
    Lou, Jiacheng
    Hu, Jiliang
    Yu, Zhikuan
    Lyu, Wen
    Zhang, Bo
    CANCER BIOLOGY & MEDICINE, 2020, 17 (01) : 112 - +
  • [35] Combination of the mTOR inhibitor RAD001 with temozolomide and radiation effectively inhibits the growth of glioblastoma cells in culture
    Burckel, Helene
    Josset, Elodie
    Denis, Jean-Marc
    Gueulette, John
    Slabbert, Jakobus
    Noel, Georges
    Bischoff, Pierre
    ONCOLOGY REPORTS, 2015, 33 (01) : 471 - 477
  • [36] Therapeutic interactions of autophagy with radiation and temozolomide in glioblastoma: evidence and issues to resolve
    Michael I Koukourakis
    Achilleas G Mitrakas
    Alexandra Giatromanolaki
    British Journal of Cancer, 2016, 114 : 485 - 496
  • [37] Hedgehog/Gli1 signaling pathway regulates MGMT expression and chemoresistance to temozolomide in human glioblastoma
    Wang, Ke
    Chen, Dongjiang
    Qian, Zhouqi
    Cui, Daming
    Gao, Liang
    Lou, Meiqing
    CANCER CELL INTERNATIONAL, 2017, 17
  • [38] Immune modulation effects of concomitant temozolomide and radiation therapy on peripheral blood mononuclear cells in patients with glioblastoma multiforme
    Fadul, Camilo E.
    Fisher, Jan L.
    Gui, Jiang
    Hampton, Thomas H.
    Cote, Anik L.
    Ernstoff, Marc S.
    NEURO-ONCOLOGY, 2011, 13 (04) : 393 - 400
  • [39] Temozolomide treatment combined with AZD3463 shows synergistic effect in glioblastoma cells
    Bagca, Bakiye Goker
    Ozates, Neslihan Pinar
    Asik, Aycan
    Caglar, Hasan Onur
    Gunduz, Cumhur
    Avci, Cigir Biray
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2020, 533 (04) : 1497 - 1504
  • [40] Glioblastoma stem cells resistant to temozolomide-induced autophagy
    Fu Jun
    Liu Zhi-gang
    Liu Xiao-mei
    Chen Fu-rong
    Shi Hong-liu
    Pang, Jesse Chung-sean
    Ng, Ho-keung
    Chen Zhong-ping
    CHINESE MEDICAL JOURNAL, 2009, 122 (11) : 1255 - 1259