MEG3 lncRNA与环丙沙星联用可显著降低GC细胞的迁移和活力,并诱导体外细胞凋亡。

IF 3.2 4区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biotechnology and applied biochemistry Pub Date : 2024-03-18 DOI:10.1002/bab.2578
Dena Najafi, Goli Siri, Maryam Sadri, Omid Yazdani, Romina Esbati, Parvin Karimi, Ali Keshavarz, Amirreza Mehmandar-Oskuie, Mehmet Ilktac
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引用次数: 0

摘要

胃癌(GC)是全球癌症相关死亡的主要原因。长非编码 RNA(lncRNA)母体表达基因3(MEG3)通过靶向 miRNA-mRNA 轴参与多种信号通路。对人类肿瘤的研究表明,抗生素环丙沙星可诱导细胞周期变化、程序性细胞死亡和生长抑制。本研究中,我们将 MEG3 lncRNA 和环丙沙星转染到 MKN-45 GC 细胞系中。伤口愈合试验、MTT 试验和流式细胞术分别用来评估它们对细胞迁移、活力和凋亡的影响。研究显示,MEG3 lncRNA转染后,miR-147的表达量下降更多,导致B细胞淋巴瘤2(BCL-2)水平升高。环丙沙星转染对该轴没有明显影响,只有MEG3导致其轻微上调。与对照组相比,MEG3 lncRNA抑制了MKN-45细胞的迁移。当MEG3 lncRNA与环丙沙星联用时,与未处理组和对照组相比,细胞迁移显著减少。MTT 试验和流式细胞术表明,MEG3 lncRNA 可降低细胞活力并引发细胞凋亡。同时给予 MEG3 lncRNA 和环丙沙星可显著降低细胞活力,并通过 MTT 或流式细胞术检测增加细胞凋亡。调节 miR-147-BCL-2 轴可降低细胞迁移和存活率,同时促进细胞死亡。总之,通过影响miR-14-BCL-2轴,降低细胞活力、迁移和增加细胞凋亡,MEG3 lncRNA与环丙沙星的结合可能是治疗GC的一种有效方法。
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Combination MEG3 lncRNA and Ciprofloxacin dramatically decreases cell migration and viability as well as induces apoptosis in GC cells in vitro

Gastric cancer (GC) is a prominent cause of cancer-related mortality worldwide. Long noncoding RNA (lncRNA) maternal expression gene3 (MEG3) participates in numerous signaling pathways by targeting the miRNA-mRNA axis. Studies on human tumors have demonstrated that the antibiotic Ciprofloxacin induces cell cycle changes, programmed cell death, and growth suppression. In this study, we transfected MEG3 lncRNA and Ciprofloxacin into the MKN-45 GC cell line. qRT-PCR was employed to evaluate the effects on the specific microRNA and mRNA. The wound healing test, MTT assay, and flow cytometry were used to assess the impact of their administration on cell migration, viability, and apoptosis, respectively. Research showed that miR-147 expression fell even more after MEG3 lncRNA transfection, leading to an increase in B-cell lymphoma 2 (BCL-2) levels. Ciprofloxacin transfection did not significantly affect the axis, except for MEG3, which led to its slight upregulation. MEG3 lncRNA inhibited the migration of MKN-45 cells compared to the control group. When MEG3 lncRNA was coupled with Ciprofloxacin, there was a significant reduction in cell migration compared to untreated groups and controls. MTT assay and flow cytometry demonstrated that MEG3 lncRNA decreased cell viability and triggered apoptosis. Simultaneous administration of MEG3 lncRNA and Ciprofloxacin revealed a significant reduction in cell viability caused by increased apoptosis obtained from MTT or flow cytometry assays. Modulating the miR-147-BCL-2 axis decreases cell migration and survival while promoting cell death. In conclusion, combining MEG3 lncRNA with Ciprofloxacin may be an effective therapeutic approach for GC treatment by influencing the miR-14-BCl-2 axis, resulting in reduced cell viability, migration, and increased apoptosis.

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来源期刊
Biotechnology and applied biochemistry
Biotechnology and applied biochemistry 工程技术-生化与分子生物学
CiteScore
6.00
自引率
7.10%
发文量
117
审稿时长
3 months
期刊介绍: Published since 1979, Biotechnology and Applied Biochemistry is dedicated to the rapid publication of high quality, significant research at the interface between life sciences and their technological exploitation. The Editors will consider papers for publication based on their novelty and impact as well as their contribution to the advancement of medical biotechnology and industrial biotechnology, covering cutting-edge research in synthetic biology, systems biology, metabolic engineering, bioengineering, biomaterials, biosensing, and nano-biotechnology.
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