Pseudozyma spp. and Barnettozyma spp. effectively kill cancer cells in vitro

Ren-Yu Hu, Ching-Fu Lee, Hsiu-Chuan Chou
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引用次数: 1

Abstract

Cancer is the overall leading cause of death in developed countries and also worldwide, and being able to exploit an effective anticancer drug is the aim of all cancer scientists. However, many of the synthetic drugs produced so far usually cause serious side effects, which reduces their therapeutic efficacy. Discovering new drugs or auxiliary therapies derived from natural products might thus provide a novel opportunity for cancer therapy. A recent study reported that some lethal toxins can maintain their activity after being injected into mice. We therefore used two Pseudozyma spp. and three Barnettozyma spp. to examine whether these killer yeasts can preserve their lethal effect on cancer cells under the physical environment (optimum pH, temperature and osmolality, supporting a living cell accomplishes to proliferate, metabolize, differentiate and survive). Our preliminary results showed that both Barnettozyma spp. and Pseudozyma spp. have stronger cytotoxicity against HepG2 than Chang’s liver cells. According to the results of two-dimensional difference gel electrophoresis (2D-DIGE), a total of 115 and 27 proteins differentially expressed by 1.5-fold or more were observed for HepG2 and Chang’s liver cells, respectively. Furthermore, we explored the mechanism involved in the effect of the lethal yeast filtrates on liver cancer cells using 2D-DIGE and mass spectrometry.

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假酵素和巴奈特菌酵素在体外能有效杀死癌细胞
癌症是发达国家乃至全世界最主要的死亡原因,能够开发出有效的抗癌药物是所有癌症科学家的目标。然而,目前生产的许多合成药物通常会产生严重的副作用,从而降低了其治疗效果。因此,从天然产物中发现新的药物或辅助疗法可能为癌症治疗提供新的机会。最近的一项研究报告称,一些致命毒素在注射到老鼠体内后仍能保持活性。因此,我们使用两种Pseudozyma和三种Barnettozyma来研究这些杀手酵母是否能在物理环境(最佳pH、温度和渗透压,支持活细胞完成增殖、代谢、分化和存活)下保持其对癌细胞的致命作用。我们的初步结果表明,Barnettozyma spp.和Pseudozyma spp.对HepG2的细胞毒性都比Chang的肝细胞强。二维差异凝胶电泳(2D-DIGE)结果显示,HepG2和Chang’s肝细胞中分别有115个和27个差异表达1.5倍以上的蛋白。此外,我们利用2D-DIGE和质谱技术探讨了致死酵母滤液对肝癌细胞的作用机制。
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