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Augmented Adriamycin Sensitivity in Cells Transduced with an Antisense Tumor Necrosis Factor Gene Is Mediated by Caspase‐3 Downstream from Reactive Oxygen Species

机译:反义肿瘤坏死因子基因转导的细胞中增强的阿霉素敏感性由活性氧下游的Caspase-3介导

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摘要

While transduction of an antisense tumor necrosis factor (TNF) gene sequence can augment the cytotoxicity of adriamycin (ADM) in human cancer cells, the specific effect of introducing this sequence on the signal transduction pathway leading to cell death remains unclear. In ADM‐resistant pancreatic carcinoma (PANC‐1) cells, both the antioxidant N‐acetyl‐L‐cysteine (NAC) and the caspase‐3 inhibitor acetyl‐L‐aspartyl‐L‐methionyl‐L‐glutaminyl‐L‐aspartyl‐aldehyde (Ac‐DMQD‐CHO) prevented ADM‐induced cytotoxicity. NAC additionally inhibited caspase‐3 activity induced by ADM treatment, while Ac‐DMQD‐CHO showed no suppressive effect on reactive oxygen species (ROS). Stable antisense‐TNF transfectants showed higher ADM sensitivity and greater ADM‐induced ROS production and caspase‐3 activity than mock transfectant or parent cells. These results indicate that increased caspase‐3 activity downstream from ROS production is among the mechanisms by which transduction of the antisense TNF sequence of augments ADM sensitivity of pancreatic carcinoma cells.
机译:虽然反义肿瘤坏死因子(TNF)基因序列的转导可以增强阿霉素(ADM)在人癌细胞中的细胞毒性,但尚不清楚将该序列引入导致细胞死亡的信号转导途径的具体作用。在抗ADM的胰腺癌(PANC-1)细胞中,抗​​氧化剂N-乙酰基-L-半胱氨酸(NAC)和caspase-3抑制剂乙酰基-L-天冬氨酰-L-甲硫酰基-L-谷氨酰胺基-L-天冬氨酰-醛(Ac‐DMQD‐CHO)可以防止ADM诱导的细胞毒性。 NAC还抑制了ADM处理诱导的caspase-3活性,而Ac-DMQD-CHO对活性氧(ROS)没有抑制作用。与模拟转染子或亲代细胞相比,稳定的反义TNF转染子显示出更高的ADM敏感性和更高的ADM诱导的ROS产生和caspase-3活性。这些结果表明,ROS产生下游的caspase-3活性增加是其中的反义TNF序列转导增强胰腺癌细胞ADM敏感性的机制之一。

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