Abstract

Objective To study the effects of emodin on apoptosis and mRNA and protein of apoptosis inducing factor (AIF) and Endonuclease G (Endo G) in human bladder cancer cells BIU87,and to investigate the anticancer mechanism of emodin. Methods The BIU87 cells were divided into 4 groups,control group,Z-VAD-FMK group,emodin group,emodin combined with Z-VAD-FMK group.The effects of different concentrations of emodin at different action time on cells proliferation of BIU87 in vitro culture were measured by methylthiazole (MTT) chromatometry,the cells apoptosis were detected by flow cytometry,and expression of AIF and Endo G were examined by reverse transcription PCR (RT-PCR) and Western blot.Results MTT assay demonstrated that the higher concentration of emodin and the longer action time,the more significant inhibition of tumor cell growth.Based on the IC50 value,80 μmol/L and 72 h of emodin intervention were selected as an intervention condition.The apoptosis rate in emodin group (44.57 ± 1.52 ) %was significantly higher than that in emodin combined with Z-VAD-FMK group (35.58 ± 1.61 ) % ( P <0.01).RT-PCR and Western blot showed that the mRNA and protein of AIF in emodin combined with Z-VAD-FMK group,emodin group,control group,Z-VAD-FMK group were ( 1.74 ± 0.11 ) and (2.59 ±0.13),(1.36±0.08) and (1.89±0.14),(0.37 ±0.02) and (0.53±0.11),(0.42 ±0.06) and (0.44 ± 0.07),respectively.There were significant differences between emodin group and the other groups (P <0.01 ).The mRNA and protein of Endo G in emodin combined with Z-VAD-FMK group,emodin group,control group,Z-VAD-FMK group were (2.28±0.15) and (3.31 ±0.36),(1.85 ±0.13) and (2.15 ±0.27),(0.53 ±0.07) and (0.71 ±0.16),(0.61 ±0.04) and (0.67 ±0.22),respectively.The differences were significant between emodin group and the other groups ( P < 0.01 ). Coneltusion Emodin can upgrade the expression of AIF and Endo G in bladder cancer cells BIU87,which can induce apoptosis through Caspase-independent pathway. Key words: Emodin; Bladder neoplasms; Apoptosis inducing factor; Endonuclease G; Cells apoptosis

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