Glutamatergic Mechanisms in Glioblastoma and Tumor-Associated Epilepsy

被引:62
作者
Lange, Falko [1 ,2 ]
Hoernschemeyer, Max Frederik [1 ]
Kirschstein, Timo [1 ,2 ]
机构
[1] Rostock Univ, Med Ctr, Oscar Langendorff Inst Physiol, D-18057 Rostock, Germany
[2] Univ Rostock, Ctr Transdisciplinary Neurosci Rostock, D-18147 Rostock, Germany
关键词
glutamate; ionotropic glutamate receptor; metabotropic glutamate receptor; glioblastoma; epilepsy; seizures; perampanel; preclinical model; AMINO-ACID OXIDASE; NEWLY-DIAGNOSED GLIOBLASTOMA; INTEGRATED GENOMIC ANALYSIS; D-SERINE METABOLISM; VALPROIC ACID; RADIATION-THERAPY; NMDA RECEPTOR; GENE-EXPRESSION; ANTIEPILEPTIC DRUGS; CELL-PROLIFERATION;
D O I
10.3390/cells10051226
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The progression of glioblastomas is associated with a variety of neurological impairments, such as tumor-related epileptic seizures. Seizures are not only a common comorbidity of glioblastoma but often an initial clinical symptom of this cancer entity. Both, glioblastoma and tumor-associated epilepsy are closely linked to one another through several pathophysiological mechanisms, with the neurotransmitter glutamate playing a key role. Glutamate interacts with its ionotropic and metabotropic receptors to promote both tumor progression and excitotoxicity. In this review, based on its physiological functions, our current understanding of glutamate receptors and glutamatergic signaling will be discussed in detail. Furthermore, preclinical models to study glutamatergic interactions between glioma cells and the tumor-surrounding microenvironment will be presented. Finally, current studies addressing glutamate receptors in glioma and tumor-related epilepsy will be highlighted and future approaches to interfere with the glutamatergic network are discussed.
引用
收藏
页数:22
相关论文
共 194 条
[91]   Current usage of tumor treating fields for glioblastoma [J].
Lassman, Andrew B. ;
Joanta-Gomez, Adela E. ;
Pan, Peter C. ;
Wick, Wolfgang .
NEURO-ONCOLOGY ADVANCES, 2020, 2 (01)
[92]   Defining the Homo- and Heterodimerization Propensities of Metabotropic Glutamate Receptors [J].
Lee, Joon ;
Munguba, Hermany ;
Gutzeit, Vanessa A. ;
Kristt, Melanie ;
Dittman, Jeremy S. ;
Levitz, Joshua .
CELL REPORTS, 2020, 31 (05)
[93]   Characterisation of the Expression of NMDA Receptors in Human Astrocytes [J].
Lee, Ming-Chak ;
Ting, Ka Ka ;
Adams, Seray ;
Brew, Bruce J. ;
Chung, Roger ;
Guillemin, Gilles J. .
PLOS ONE, 2010, 5 (11)
[94]   Glioma: experimental models and reality [J].
Lenting, Krissie ;
Verhaak, Roel ;
ter Laan, Mark ;
Wesseling, Pieter ;
Leenders, William .
ACTA NEUROPATHOLOGICA, 2017, 133 (02) :263-282
[95]  
Linnebacher, 2014, J CANC SCI THER, V6, P6, DOI [10.4172/1948-5956.1000237, DOI 10.4172/1948-5956.1000237]
[96]   Inhibition of metabotropic glutamate receptor 5 facilitates hypoxia-induced glioma cell death [J].
Liu, Bo ;
Zhao, Shuang ;
Qi, Cheng ;
Zhao, Xiaodong ;
Liu, Bin ;
Hao, Fang ;
Zhao, Zongmao .
BRAIN RESEARCH, 2019, 1704 :241-248
[97]   Role of NMDA receptor subtypes in governing the direction of hippocampal synaptic plasticity [J].
Liu, LD ;
Wong, TP ;
Pozza, MF ;
Lingenhoehl, K ;
Wang, YS ;
Sheng, M ;
Auberson, YP ;
Wang, YT .
SCIENCE, 2004, 304 (5673) :1021-1024
[98]   Astrocyte-mediated activation of neuronal kainate receptors [J].
Liu, QS ;
Xu, QW ;
Arcuino, G ;
Kang, J ;
Nedergaard, M .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (09) :3172-3177
[99]   The xc- cystine/glutamate antiporter:: A potential target for therapy of cancer and other diseases [J].
Lo, Maisie ;
Wang, Yu-Zhuo ;
Gout, Peter W. .
JOURNAL OF CELLULAR PHYSIOLOGY, 2008, 215 (03) :593-602
[100]   Dysregulation of Glutamate Transport Enhances Treg Function That Promotes VEGF Blockade Resistance in Glioblastoma [J].
Long, Yu ;
Tao, Haipeng ;
Karachi, Aida ;
Grippin, Adam J. ;
Jin, Linchun ;
Chang, Yifan ;
Zhang, Wang ;
Dyson, Kyle A. ;
Hou, Alicia Y. ;
Na, Meng ;
Deleyrolle, Loic P. ;
Sayour, Elias J. ;
Rahman, Maryam ;
Mitchell, Duane A. ;
Lin, Zhiguo ;
Huang, Jianping .
CANCER RESEARCH, 2020, 80 (03) :499-509