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The organotelluride catalyst LAB027 prevents colon cancer growth in the mice

机译:有机碲化物催化剂LAB027可防止小鼠结肠癌的生长

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Organotellurides are newly described redox-catalyst molecules with original pro-oxidative properties. We have investigated the in vitro and in vivo antitumoral effects of the organotelluride catalyst LAB027 in a mouse model of colon cancer and determined its profile of toxicity in vivo. LAB027 induced an overproduction of H2O2 by both human HT29 and murine CT26 colon cancer cell lines in vitro. This oxidative stress was associated with a decrease in proliferation and survival rates of the two cell lines. LAB027 triggered a caspase-independent, ROS-mediated cell death by necrosis associated with mitochondrial damages and autophagy. LAB027 also synergized with the cytotoxic drug oxaliplatin to augment its cytostatic and cytotoxic effects on colon cancer cell lines but not on normal fibroblasts. The opposite effects of LAB027 on tumor and on non-transformed cells were linked to differences in the modulation of reduced glutathione metabolism between the two types of cells. In mice grafted with CT26 tumor cells, LAB027 alone decreased tumor growth compared with untreated mice, and synergized with oxaliplatin to further decrease tumor development compared with mice treated with oxaliplatin alone. LAB027 an organotelluride catalyst compound synergized with oxaliplatin to prevent both in vitro and in vivo colon cancer cell proliferation while decreasing the in vivo toxicity of oxaliplatin. No in vivo adverse effect of LAB027 was observed in this model.. ? 2011 Macmillan Publishers Limited
机译:有机碲化物是新近描述的具有原始前氧化性质的氧化还原催化剂分子。我们已经研究了结肠癌的小鼠模型中有机碲化物催化剂LAB027的体外和体内抗肿瘤作用,并确定了其体内毒性的概况。 LAB027在体外诱导人HT29和鼠CT26结肠癌细胞系过量产生H2O2。该氧化应激与两种细胞系的增殖和存活率降低有关。 LAB027通过与线粒体损伤和自噬相关的坏死触发了caspase依赖性的ROS介导的细胞死亡。 LAB027还与细胞毒性药物奥沙利铂协同作用,以增强其对结肠癌细胞系(而非正常成纤维细胞)的抑制细胞和细胞毒性作用。 LAB027对肿瘤和未转化细胞的相反作用与两种类型细胞之间谷胱甘肽代谢减少的调节差异有关。与未治疗的小鼠相比,在移植有CT26肿瘤细胞的小鼠中,单独的LAB027降低了肿瘤的生长,与奥沙利铂协同作用进一步降低了肿瘤的发展。 LAB027与奥沙利铂协同作用的有机碲化物催化剂化合物,可防止体内和体外结肠癌细胞的增殖,同时降低奥沙利铂的体内毒性。在该模型中未观察到LAB027的体内不良反应。 2011 Macmillan Publishers Limited

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