Department of Chemistry and Biochemistry, Mendel University in Brno, Zemedelska 1, CZ-613 00 Brno, Czech Republic.
Central European Institute of Technology, Brno University of Technology, Technicka 3058/10, CZ-616 00 Brno, Czech Republic.
Cells. 2019 Mar 12;8(3):235. doi: 10.3390/cells8030235.
The efficiency of cisplatin (CDDP) is significantly hindered by the development of resistance during the treatment course. To gain a detailed understanding of the molecular mechanisms underlying the development of cisplatin resistance, we comparatively analyzed established a CDDP-resistant neuroblastoma cell line (UKF-NB-4) and its susceptible parental cells (UKF-NB-4). We verified increased chemoresistance of UKF-NB-4 cells by analyzing the viability, induction of apoptosis and clonal efficiency. To shed more light on this phenomenon, we employed custom cDNA microarray (containing 2234 probes) to perform parallel transcriptomic profiling of RNA and identified that 139 genes were significantly up-regulated due to CDDP chemoresistance. The analyses of molecular pathways indicated that the top up-regulation scoring functions were response to stress, abiotic stimulus, regulation of metabolic process, apoptotic processes, regulation of cell proliferation, DNA repair or regulation of catalytic activity, which was also evidenced by analysis of molecular functions revealing up-regulation of genes encoding several proteins with a wide-spectrum of enzymatic activities. Functional analysis using lysosomotropic agents chloroquine and bafilomycin A1 validated their potential to re-sensitize UKF-NB-4 cells to CDDP. Taken together, the identification of alterations in specific genes and pathways that contribute to CDDP chemoresistance may potentially lead to a renewed interest in the development of novel rational therapeutics and prognostic biomarkers for the management of CDDP-resistant neuroblastoma.
顺铂(CDDP)的疗效在治疗过程中因耐药性的发展而受到显著阻碍。为了深入了解顺铂耐药性发展的分子机制,我们比较分析了建立的顺铂耐药性神经母细胞瘤细胞系(UKF-NB-4)及其敏感亲本细胞(UKF-NB-4)。通过分析细胞活力、诱导细胞凋亡和集落形成效率,我们验证了 UKF-NB-4 细胞的化疗耐药性增加。为了更深入地了解这一现象,我们采用定制的 cDNA 微阵列(包含 2234 个探针)对 RNA 进行平行转录组谱分析,发现 139 个基因因 CDDP 化疗耐药而显著上调。对分子途径的分析表明,上调评分功能最高的是应激反应、非生物刺激、代谢过程调节、凋亡过程调节、细胞增殖调节、DNA 修复或催化活性调节,这也得到了分子功能分析的证实,该分析揭示了编码具有广泛酶活性的几种蛋白质的基因上调。使用溶酶体趋化剂氯喹和巴弗洛霉素 A1 进行功能分析验证了它们使 UKF-NB-4 细胞重新对 CDDP 敏感的潜力。总之,鉴定出与 CDDP 化疗耐药性相关的特定基因和途径的改变,可能会重新引起人们对开发新的合理治疗方法和预测 CDDP 耐药性神经母细胞瘤管理的预后生物标志物的兴趣。