替莫唑胺
癌症研究
免疫系统
免疫印迹
肿瘤微环境
胶质母细胞瘤
医学
小胶质细胞
下调和上调
胶质瘤
细胞
U87型
化疗
生物
脑瘤
炎症
抗体
达卡巴嗪
免疫疗法
细胞生长
免疫组织化学
肿瘤进展
T细胞
免疫学
细胞培养
转录组
污渍
化学
细胞迁移
作者
Daikang Xu,Guangyu Du,J Y Sun,Hongyun Zhao,Xiaolei Lan,JIANPENG WANG
出处
期刊:Anticancer Research
[International Institute of Anticancer Research (IIAR) Conferences 1997. Athens, Greece. Abstracts]
日期:2026-05-27
卷期号:46 (6): 3159-3178
标识
DOI:10.21873/anticanres.18188
摘要
BACKGROUND/AIM: Glioblastoma is the most common and aggressive primary malignant tumor in the adult central nervous system, with a high incidence rate. It accounts for approximately half of all gliomas, and its prognosis is extremely poor. Due to the difficulty in achieving complete surgical resection and the development of chemotherapy resistance, the median survival time of patients is only about 15 months. Recently, cuproptosis has been proposed as a new form of cell death, playing a crucial role in tumor-targeted therapy. This study aimed to investigate the distribution of the cuproptosis-related key protein SLC31A1 in the immune microenvironment of glioblastoma (GBM) and to evaluate the effect of cuproptosis agonists on temozolomide (TMZ) sensitivity. MATERIALS AND METHODS: We first analyzed GBM transcriptomic and single-cell sequencing data to explore the correlation between SLC31A1 and immune cell infiltration. Expression of SLC31A1 in tumor tissues was subsequently verified using immunohistochemistry, western blot, and quantitative fluorescence PCR. We then performed cell proliferation, scratch wound healing, and western blot assays to assess the inhibitory effect of TMZ combined with the cuproptosis agonist elesclomol (ES) on GBM cells and its influence on SLC31A1 protein expression. Finally, a xenograft tumor model was established to further validate the enhanced anti-tumor efficacy of the combination therapy. RESULTS: experiments demonstrated that the combination of TMZ and ES exerted a significantly stronger inhibitory effect on GBM proliferation and migration compared to TMZ alone. Moreover, combined treatment upregulated the protein expression of SLC31A1. CONCLUSION: The cuproptosis pathway and its key protein SLC31A1 play a potential role in regulating GBM proliferation, migration, and TMZ sensitivity, and is closely associated with the tumor immune microenvironment, particularly macrophages. These findings may contribute to the selection of more effective clinical treatment strategies.
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