hsa-miR-34a-5p enhances temozolomide anti-tumoral effects on glioblastoma: in-silico and in-vitro study.

IF 3.8 3区 生物学 Q1 BIOLOGY EXCLI Journal Pub Date : 2024-03-13 eCollection Date: 2024-01-01 DOI:10.17179/excli2023-6404
Mahdi Abdoli Shadbad, Amir Baghbanzadeh, Behzad Baradaran
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Abstract

Glioblastoma multiform (GBM) is a commonly diagnosed brain neoplasm with a poor prognosis. Accumulating evidence has highlighted the significance of microRNA (miR) dysregulation in tumor development and progression. This study investigated the effect of hsa-miR-34a-5p and its combination with temozolomide on GBM, the related molecular mechanisms, and the signaling pathway using in-silico and in-vitro approaches. The in-silico tumor bulk and single-cell RNA sequencing analyses were done on TCGA-GTEx, CGGA, GSE13276, GSE90603, and GSE182109 datasets. After selecting the A172 cell line, hsa-miR-34a-5p mimics were transfected, and the cell viability, migration, cell cycle, clonogenicity, and apoptosis of studied groups were studied using MTT, scratch, flow cytometry, colony formation, and Annexin V/PI assays. The mRNA expression of CASP9, CASP3, CASP8, MMP2, CD44, CDK6, CDK4, CCND1, RAF1, MAP2K1, MET, SRC, and CD274 was studied using qRT-PCR method. hsa-miR-34a-5p downregulated RAF1 expression, as the signaling factor of the MAPK pathway. The combined treatment significantly downregulated the expression of MET, SRC, and MAP2K1, leading to the inhibition of the MET/MAPK pathway compared to temozolomide. Besides exerting anti-tumoral effects on the cell viability, migration, cell cycle, apoptosis, and clonogenicity of A172 cells, its combination with temozolomide enhanced temozolomide anti-tumoral effect. Compared to temozolomide, the combined treatment significantly decreased CDK4, CDK6, CCND1, and MMP2 expression. hsa-miR-34a-5p targets RAF1, as the signaling factor of the MAPK pathway, and potentiates the temozolomide anti-tumoral effect on A172 cells.

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hsa-miR-34a-5p能增强替莫唑胺对胶质母细胞瘤的抗肿瘤作用:硅内和体外研究。
多形性胶质母细胞瘤(GBM)是一种常见的脑肿瘤,预后较差。越来越多的证据凸显了微RNA(miR)失调在肿瘤发生和发展中的重要作用。本研究利用体内和体外方法研究了hsa-miR-34a-5p及其与替莫唑胺联用对GBM的影响、相关分子机制和信号通路。在TCGA-GTEx、CGGA、GSE13276、GSE90603和GSE182109数据集上进行了体内肿瘤块和单细胞RNA测序分析。选择 A172 细胞系后,转染 hsa-miR-34a-5p mimics,并使用 MTT、划痕、流式细胞术、集落形成和 Annexin V/PI 检测法研究了研究组的细胞活力、迁移、细胞周期、克隆性和凋亡。采用 qRT-PCR 方法研究了 CASP9、CASP3、CASP8、MMP2、CD44、CDK6、CDK4、CCND1、RAF1、MAP2K1、MET、SRC 和 CD274 的 mRNA 表达。与替莫唑胺相比,联合治疗能明显下调 MET、SRC 和 MAP2K1 的表达,从而抑制 MET/MAPK 通路。除了对 A172 细胞的活力、迁移、细胞周期、凋亡和克隆性产生抗肿瘤作用外,它与替莫唑胺的联合用药还增强了替莫唑胺的抗肿瘤作用。hsa-miR-34a-5p靶向MAPK通路的信号因子RAF1,增强了替莫唑胺对A172细胞的抗肿瘤作用。
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来源期刊
EXCLI Journal
EXCLI Journal BIOLOGY-
CiteScore
8.00
自引率
2.20%
发文量
65
审稿时长
6-12 weeks
期刊介绍: EXCLI Journal publishes original research reports, authoritative reviews and case reports of experimental and clinical sciences. The journal is particularly keen to keep a broad view of science and technology, and therefore welcomes papers which bridge disciplines and may not suit the narrow specialism of other journals. Although the general emphasis is on biological sciences, studies from the following fields are explicitly encouraged (alphabetical order): aging research, behavioral sciences, biochemistry, cell biology, chemistry including analytical chemistry, clinical and preclinical studies, drug development, environmental health, ergonomics, forensic medicine, genetics, hepatology and gastroenterology, immunology, neurosciences, occupational medicine, oncology and cancer research, pharmacology, proteomics, psychiatric research, psychology, systems biology, toxicology
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