Zhou Fusheng, Zhuo Jialong, Xu Xudong, Pan Duyi, Cai Chenwen, Huang Jiaxin, Zhao Xianguang, Mao Qiqi, Jiang Xiaoyun, Sun X U, Zhong Liang, Gao Nan, Chen Jiajie
Department of Gastroenterology, Huashan Hospital, Fudan University, Shanghai, P.R. China.
Department of Otolaryngology Head and Neck Surgery, Huashan Hospital, Fudan University, Shanghai, P.R. China
Anticancer Res. 2024 Dec 30;45(1):173-187. doi: 10.21873/anticanres.17403.
BACKGROUND/AIM: Chemotherapy based on 5-fluorouracil (5-Fu) is the first-line treatment for advanced gastric cancer (GC) patients. Importantly, 5-Fu resistance is recognized as a major obstacle for the successful treatment of GC. Circular RNAs (circRNAs) are non-coding RNAs involved in the pathogenesis of GC. However, their role in the mechanism of 5-Fu resistance in GC remains largely unknown. The purpose of this study was to explore and elucidate the biological function and molecular mechanism of circRNAs underlying 5-Fu resistance in GC.
High-throughput sequencing results for intersection analysis were used to select a novel differentially expressed circRNA hsa_circ_0004650. The expression levels of the new circRNA between 5-Fu-sensitive and 5-Fu-resistant GC cells were evaluated using quantitative real-time polymerase chain reaction (qRT-PCR), and biological behaviors, such as proliferation and apoptosis of GC cells, were observed after silencing the hsa_circ_0004650. The mechanism of hsa_circ_0004650 sponges miR-145-5p to regulate 5-Fu resistance in GC cells was investigated by luciferase reporter assay, qRT-PCR, CCK-8 assay, Calcein AM/PI double fluorescence staining and flow cytometry.
hsa_circ_0004650 was identified as a differentially expressed circRNA between 5-Fu-sensitive GC and 5-Fu-resistant GC cells. Hsa_circ_0004650 was up-regulated in 5-Fu-resistant GC cells. Silencing of hsa_circ_0004650 in 5-Fu-resistant GC cells, the survival rates of cells treated with increasing doses of 5-Fu for 24 h and 48 h were decreased (p<0.01); the mortality rates of SGC-7901-5-Fu cells were increased (17.86%±0.6 vs. 44.86%±1.52; p<0.001), and those of BGC-823-5-Fu cells were increased (8.17%±7.80 vs. 26.61%±1.12; p<0.001); and the apoptosis rates of cells treated with the same concentration of 5-Fu were increased (p<0.001). Mechanistically, miR-145-5p was confirmed as a downstream target of hsa_circ_0004650. By the down-regulation of the expression of miR-145-5p in 5-Fu-resistant GC cells, the survival rates of cells treated with increasing doses of 5-Fu for 24 h and 48 h were increased (p<0.05); the mortality rates of SGC-7901-5-Fu cells were decreased (12.86%±1.10 vs. 7.83%±0.53; p<0.01), those of BGC-823-5-Fu cells were decreased as well (16.99%±1.31 vs. 11.40%±0.72; p<0.01); and the apoptosis rates of cells treated with the same concentration of 5-Fu were decreased (p<0.001).
The circRNA hsa_circ_0004650 promotes chemotherapy resistance to 5-Fu in GC cells through sponge adsorption of miR-145-5p, which offers a potential approach to overcome 5-Fu resistance in GC.
背景/目的:基于5-氟尿嘧啶(5-Fu)的化疗是晚期胃癌(GC)患者的一线治疗方法。重要的是,5-Fu耐药被认为是GC成功治疗的主要障碍。环状RNA(circRNAs)是参与GC发病机制的非编码RNA。然而,它们在GC中5-Fu耐药机制中的作用仍在很大程度上未知。本研究的目的是探索并阐明circRNAs在GC中5-Fu耐药的生物学功能和分子机制。
采用高通量测序结果进行交集分析,以选择一种新的差异表达环状RNA hsa_circ_0004650。使用定量实时聚合酶链反应(qRT-PCR)评估5-Fu敏感和5-Fu耐药GC细胞之间这种新环状RNA的表达水平,并在沉默hsa_circ_0004650后观察GC细胞的生物学行为,如增殖和凋亡。通过荧光素酶报告基因测定、qRT-PCR、CCK-8测定、钙黄绿素AM/PI双荧光染色和流式细胞术研究hsa_circ_0004650海绵吸附miR-145-5p以调节GC细胞中5-Fu耐药的机制。
hsa_circ_0004650被鉴定为5-Fu敏感GC细胞和5-Fu耐药GC细胞之间差异表达的环状RNA。Hsa_circ_0004650在5-Fu耐药GC细胞中上调。在5-Fu耐药GC细胞中沉默hsa_circ_0004650后,用递增剂量的5-Fu处理24小时和48小时的细胞存活率降低(p<0.01);SGC-7901-5-Fu细胞的死亡率增加(17.86%±0.6对44.86%±1.52;p<0.001),BGC-823-5-Fu细胞的死亡率增加(8.17%±7.80对26.61%±1.12;p<0.001);用相同浓度的5-Fu处理的细胞凋亡率增加(p<0.001)。机制上,miR-145-5p被确认为hsa_circ_0004650的下游靶点。通过下调5-Fu耐药GC细胞中miR-145-5p的表达,用递增剂量的5-Fu处理24小时和48小时的细胞存活率增加(p<0.05);SGC-7901-5-Fu细胞的死亡率降低(12.86%±1.10对7.83%±0.53;p<0.01),BGC-823-5-Fu细胞的死亡率也降低(16.99%±1.31对11.40%±0.72;p<0.01);用相同浓度的5-Fu处理的细胞凋亡率降低(p<0.001)。
环状RNA hsa_circ_0004650通过海绵吸附miR-145-5p促进GC细胞对5-Fu的化疗耐药,这为克服GC中的5-Fu耐药提供了一种潜在方法。