Kusakabe Kosuke, Inoue Akihiro, Ohnishi Takanori, Nakamura Yawara, Ohtsuka Yoshihiro, Nishikawa Masahiro, Yano Hajime, Choudhury Mohammed E, Murata Motoki, Matsumoto Shirabe, Suehiro Satoshi, Yamashita Daisuke, Shigekawa Seiji, Watanabe Hideaki, Kunieda Takeharu
Department of Neurosurgery, Ehime University School of Medicine, 454 Shitsukawa, Toon 791-0295, Ehime, Japan.
Department of Neurosurgery, Washoukai Sadamoto Hospital, 1-6-1 Takehara, Matsuyama 790-0052, Ehime, Japan.
Biomedicines. 2025 Feb 5;13(2):372. doi: 10.3390/biomedicines13020372.
BACKGROUND/OBJECTIVES: Late epilepsy occurring in the late stage after glioblastoma (GBM) resection is suggested to be caused by increased extracellular glutamate (Glu). To elucidate the mechanism underlying postoperative late epilepsy, the present study aimed to investigate the expressions and relations of molecules related to Glu metabolism in tumor tissues from GBM patients and cultured glioma stem-like cells (GSCs).
Expressions of CD44, xCT and excitatory amino acid transporter (EAAT) 2 and extracellular Glu concentration in GBM patients with and without epilepsy were examined and their relationships were analyzed. For the study using GSCs, expressions and relationships of the same molecules were analyzed and the effects of CD44 knock-down on xCT, EAAT2, and Glu were investigated. In addition, the effects of hypoxia on the expressions of these molecules were investigated.
Tumor tissues highly expressed CD44 and xCT in the periphery of GBM with epilepsy, whereas no significant difference in EAAT2 expression was seen between groups with and without epilepsy. Extracellular Glu concentration was higher in patients with epilepsy than those without epilepsy. GSCs displayed reciprocal expressions of CD44 and xCT. Concentrations of extracellular Glu coincided with the degree of xCT expression, and CD44 knock-down elevated xCT expression and extracellular Glu concentrations. Hypoxia of 1% O elevated expression of CD44, while 5% O increased xCT and extracellular Glu concentration.
Late epilepsy after GBM resection was related to extracellular Glu concentrations that were regulated by reciprocal expression of CD44 and xCT, which were stimulated by differential hypoxia for each molecule.
背景/目的:胶质母细胞瘤(GBM)切除术后晚期发生的癫痫被认为是由细胞外谷氨酸(Glu)增加所致。为阐明术后晚期癫痫的潜在机制,本研究旨在调查GBM患者肿瘤组织及培养的胶质瘤干细胞样细胞(GSCs)中与Glu代谢相关分子的表达及相互关系。
检测有癫痫和无癫痫的GBM患者中CD44、xCT和兴奋性氨基酸转运体(EAAT)2的表达以及细胞外Glu浓度,并分析它们之间的关系。对于使用GSCs的研究,分析相同分子的表达及相互关系,并研究敲低CD44对xCT、EAAT2和Glu的影响。此外,研究缺氧对这些分子表达的影响。
在伴有癫痫的GBM周边肿瘤组织中,CD44和xCT高表达,而有癫痫和无癫痫组之间EAAT2表达无显著差异。癫痫患者的细胞外Glu浓度高于无癫痫患者。GSCs中CD44和xCT呈反向表达。细胞外Glu浓度与xCT表达程度一致,敲低CD44可提高xCT表达和细胞外Glu浓度。1%氧气浓度的缺氧增加CD44表达,而5%氧气浓度增加xCT和细胞外Glu浓度。
GBM切除术后晚期癫痫与细胞外Glu浓度有关,其受CD44和xCT反向表达调控,且每种分子受不同程度缺氧刺激。