膳食补充剂CELNORM抗结肠癌和肺癌的体外初步研究

Vijay Mehta, Amit Dey, Nandita Thakkar, Keerthana Prabhakar, Ganesan Jothimani, A. Banerjee
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引用次数: 1

摘要

癌症是一种复杂的疾病,其特征是一系列事件的连锁反应,最终导致几种基因改变的积累。由于癌症的高发病率和死亡率,科学家们开始寻找对癌细胞有害但对健康细胞无害的新型药物。本研究旨在探讨CELNORM及其各组分在结肠癌和肺癌细胞中的作用。根据LD50值,结肠癌和肺癌细胞分别用两种不同剂量的姜黄素、辣椒、胡萝卜和黄瓜提取物和CELNORM(包含所有四种成分的配方)处理。采用CCK8试剂盒对各化合物的细胞毒性进行形态学分析和细胞活力测定,并进行统计学分析。基于qpcr的基因表达研究也已完成,以进一步验证化合物的抗癌特性。姜黄素提取物降低癌细胞生长,这是细胞毒性和形态学分析的证据,但辣椒、胡萝卜和黄瓜提取物对癌细胞生长的抑制作用不那么显著。另一方面,CELNORM在抑制细胞增殖方面具有最高的显著效果,这表明新型保健品CELNORM比单个成分更有效。基因表达分析也证实了CELNORM的抗癌特性,尽管一些基因表达不符合预期。形态学分析和细胞活力结果显示了CELNORM对CELNORM单个化合物的有效性,对Cyclin D、CDK6、PCNA和BCL-2等增殖基因的基因表达分析进一步验证了CELNORM及其四种成分的抗癌特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anti-cancer Properties of Dietary Supplement CELNORM against Colon and Lung Cancer: An in vitro preliminary study
Cancer is a complex disease characterized by a cascade of events that culminate in the accumulation of several genetic alterations. Because of the high incidence and mortality rate, scientists began seeking novel medications that were harmful to cancer cells but not to healthy cells. This study aimed to investigate the effect of CELNORM and its various components individually in colon and lung cancer cells. Based on the LD50 value, colon and lung cancer cells were treated with two different dosages of curcumin, pepper, carrot and cucumber extracts, individually and CELNORM (formulation with all four ingredients). The cytotoxicity of each compound has been checked through morphological analysis and cell viability assay by using the CCK8 kit and statistically analyzed. qPCR-based Gene expression study has also been done to further validate the anti-cancerous properties of the compounds.  Curcumin extract decreased cancer cell growth, as evidenced by cytotoxicity and morphological analyses, but pepper, carrot, and cucumber extracts showed a less significant reduction in cancer cell growth. CELNORM, on the other hand, had the highest significant effect in suppressing cell proliferation, indicating the novel health supplement CELNORM renders more efficacy than individual components. Gene expression analysis also verifies the anti-cancerous properties of CELNORM, though some gene expressions are not in the expected line. The morphological analysis and cell viability result has shown the efficacy of the CELNORM over the individual compounds of the CELNORM and gene expression analysis of proliferative genes such as Cyclin D, CDK6, PCNA and BCL-2 further validates the anti-cancerous properties of CELNORM and all four components.
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