几种细菌胞外代谢物对HeLa细胞株的体外抗癌作用。

Islam Abdelraouf Elmanama, A. Elmanama, M. Zaharna, Mariam R. Al-Reefi
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引用次数: 2

摘要

背景:癌症仍然是影响人类健康的最严重问题之一。尽管努力开发治疗方法,但仍然没有有效的药物。在某些情况下,由于出现耐药性,传统疗法可能是有害的或失败的。因此,开发新的抗癌疗法至关重要。评估细菌代谢物对癌细胞的抗癌作用可能有助于寻找新的廉价、可靠、有争议和安全的癌症治疗方法。目的:探讨8种细菌胞外代谢物对HeLa细胞株的抗癌作用。方法:在液体培养基中分离培养8种细菌(大肠杆菌、金黄色葡萄球菌、微球菌、铜绿假单胞菌、乳酸菌、克雷伯氏菌、变形杆菌和大肠杆菌及其噬菌体)制备胞外代谢物。试管孵育过夜并离心。上清液经红外浓缩器过滤浓缩。制备不同浓度的黄芪多糖,用MTT细胞增殖试验评价其抗癌作用。结果:8种细菌对HeLa细胞的增殖抑制作用呈时间和浓度依赖性。假单胞菌和大肠杆菌及其噬菌体显示出明显的抗癌活性,在1000µg\ml时的抑制效果分别为63%和86%,24h时的IC50分别为301和1395µg/dl。变形杆菌和微球菌对HeLa细胞的抑制作用较低,金黄色葡萄球菌对HeLa细胞的增殖作用较弱。结论:在所检测的细菌中,假单胞菌和大肠杆菌及其噬菌体对HeLa细胞的抗癌抑制作用最好。建议使用有效细菌的纯化成分进行进一步的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In vitro Anticancer Activity Effect of Extracellular Metabolites of Some Bacterial Species on HeLa Cell Line.
Background: Cancer is still one of the most serious problems that affect human health. Despite the intense efforts to develop treatments, effective agents are still not available. In some cases, conventional therapy could be harmful or fail because of emerging drug resistance. Therefore, the development of novel therapies against cancer is of utmost importance. Assessment of anticancer effects of bacterial metabolites on cancer cells may help in the process of finding new cheap, reliable, contentious and safe cancer therapy. Objective: To determine the anticancer effect of the extracellular metabolites of eight bacterial species on HeLa cell line. Methodology: Extracellular metabolites were prepared by isolating and culturing eight bacterial species (Escherichia coli, Staphylococcus aureus, Micrococcus, Pseudomonas aeruginosa, Lactic acid bacteria, Klebsiella, Proteus and E. coli with its phage) in liquid media. Tubes were incubated overnight and centrifuged. Supernatant was filtered and concentrated using Infra-Red concentrator. Different concentrations were prepared and their anticancer effect were evaluated using MTT cell proliferation assay. Results: Results showed variation among the eight bacteria concerning proliferation inhibition against HeLa cells in a time and concentration dependent manner. Pseudomonas and E. coli with its phage revealed considerable anticancer activity with 63% and 86% inhibitory effects (both at 1000 µg\ml) and IC50 of 301 and 1395 µg/dl at 24h respectively. While Proteus and Micrococcus showed low inhibitory effects and S. aureus enhanced the proliferation of HeLa cells at low concentrations. Conclusion: Among the tested bacteria, Pseudomonas and E. coli and its phage gave the best anticancer inhibitory effects against HeLa cells. Further studies using purified components of effective bacteria are recommended.
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