首页> 外文期刊>Anticancer Research: International Journal of Cancer Research and Treatment >Inhibition of Jurkat T Cell Growth by N-farnesyl-norcantharimide Through Up-regulation of Tumor Suppressor Genes and Down-regulation of Genes for Steroid Biosynthesis, Metabolic Pathways and Fatty Acid Metabolism
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Inhibition of Jurkat T Cell Growth by N-farnesyl-norcantharimide Through Up-regulation of Tumor Suppressor Genes and Down-regulation of Genes for Steroid Biosynthesis, Metabolic Pathways and Fatty Acid Metabolism

机译:通过肿瘤抑制基因的上调对肿瘤抑制基因的上调,对类固醇生物合成,代谢途径和脂肪酸代谢进行抑制法律抑制N-Farneryyl-Norcantharimide的抑制作用,代谢途径和脂肪酸代谢

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Background/Aim: To evaluate the anti-cancer mechanism of N-Farnesyl-norcantharimide (NC15). Materials and Methods: The viability of NC15-treated human leukemic Jurkat T (JKT) cells was assessed using the Kit-8 cell counting method. Flow cytometry analysis, human apoptosis antibody array assay, and whole genome sequencing were adopted to investigate the mechanism underlying the anti-cancer activity of NC15 in JKT cells. Results: The growth inhibition rates of NC15 in JKT cells were about 80% and 95% after treatment with 8 mu mol/l NC15 for 24 and 48 h, respectively. The percentages of NC15-treated JKT cells in the sub-G(1) phase at 24 and 48 h were 22.0% and 34.3%, respectively, in contrast to the 1.5% in the control. Next-generation sequencing showed that many tumor suppressor genes (TSG) were up-regulated, while many genes associated with steroid biosynthesis, metabolic pathways, and fatty acid metabolism were down-regulated. Conclusion: NC15 can reduce the cell viability and increase the percentage of JKT cells in the sub-G(1) phase by up-regulating TSG and related genes, and down-regulating the genes for steroid biosynthesis, metabolic pathways and fatty acid metabolism, instead of through apoptosis.
机译:背景/目的:评价N-法尼斯基 - 诺斯坦酰亚胺(NC15)的抗癌机制。材料和方法:使用试剂盒-8细胞计数方法评估NC15处理的人白血病Jurkat T(JKT)细胞的活力。流式细胞术分析,采用人凋亡抗体阵列测定和全基因组测序来研究JKT细胞NC15抗癌活性的基础。结果:在用8μmol/ LnC15处理24和48小时后,JKT细胞中NC15的生长抑制率为约80%和95%。与对照中的1.5%相比,亚克(1)相的NC15处理的JKT细胞的百分比分别为22.0%和34.3%。下一代测序表明,许多肿瘤抑制基因(TSG)上调,而与类固醇生物合成,代谢途径和脂肪酸代谢相关的许多基因被下调。结论:NC15可降低细胞活力,通过上调TSG和相关基因增加亚g(1)相中的JKT细胞的百分比,对类固醇生物合成,代谢途径和脂肪酸代谢进行下调基因,而不是通过细胞凋亡。

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