The effects of tissue factor (TF) on doxorubicin-induced apoptosis in human neuroblastoma were investigated. The expression of TF was examined by Western blotting. TFsiRNA-pSUPER plasmid was constructed by inserting...The effects of tissue factor (TF) on doxorubicin-induced apoptosis in human neuroblastoma were investigated. The expression of TF was examined by Western blotting. TFsiRNA-pSUPER plasmid was constructed by inserting specific 19-nt silencing sequence targeting TF gene into pSUPER vector. Transfection of TFsiRNA-pSUPER was performed using lipofectamine^2000. The cytotoxicity of doxorubicin was determined by WST assay. The activation of Caspase-3 and PARP induced by doxorubicin was tested by Western blotting. The apoptotic cells were stained by Hochest33342 and counted under fluorescence inverted microscope. It was found that human neuroblastoma cell line SK-N-MC expressed high level of TE Knockdown of the TF expression was achieved by transfection of TFsiRNA-pSUPER on SK-N-MC cells in a dose-dependent manner. Inhibition of TF significantly decreased the viability of transfected SK-N-MC cells treated with different concentrations of doxorubicin. Cleavage of Caspase-3 and PARP was enhanced in transfected SK-N-MC cells with down-regulation of TF. TFsiRNA treatment significantly increased the number of apoptotic cells in transfected SK-N-MC cells as compared with those control cells (P〈0.05) when these cells were exposed to 1 μg/mL doxorubicin for 8 h. These results suggested that knockdown of the TF expression by specific siRNA vector could increase the cytotoxicity of doxorubicin and enhance doxorubicin-induced apoptosis in human neuroblastoma cells. Over-expression of TF might contribute to chemotherapy resistance in human neuroblastoma and its progression, at lest in part, by regulating doxorubicin-induced apoptosis.展开更多
MDM2 was transfected to acute lymphoblastic leukemia (ALL) line EU-4 cell which lacks P53 expression and expresses very low levels of MDM2. The results showed that MDM2 up-regulated P65 expression in mRNA level and pr...MDM2 was transfected to acute lymphoblastic leukemia (ALL) line EU-4 cell which lacks P53 expression and expresses very low levels of MDM2. The results showed that MDM2 up-regulated P65 expression in mRNA level and protein level. The effect of adriamycin (ADM) on MDM2-transfected EU-4 cell was detected by MTT assay. It was found that MDM2 transfection could increase drug resistance of EU-4 cells to ADM as compared with parent cells. Since the expression of E-selectin is P65 dependent, E-selectin promoter-CAT construct and P65 and MDM2 expression plasmids were co-transfected to EU-4 cells, revealing that MDM2 increased P65-mediated transactivation of E-selectin promoter. In the absence of P65, MDM2 had no effect on the transactivation of E-selectin. Moreover, MDM2 antisense couldn't change the transactivation of E-selectin. It was concluded that MDM2 could up-regulate transcriptionally P65 expression; MDM2 increased drug resistance of leukemia cells to ADM; MDM2 elevated NF-kappaB activity in a P53-independent manner.展开更多
文摘The effects of tissue factor (TF) on doxorubicin-induced apoptosis in human neuroblastoma were investigated. The expression of TF was examined by Western blotting. TFsiRNA-pSUPER plasmid was constructed by inserting specific 19-nt silencing sequence targeting TF gene into pSUPER vector. Transfection of TFsiRNA-pSUPER was performed using lipofectamine^2000. The cytotoxicity of doxorubicin was determined by WST assay. The activation of Caspase-3 and PARP induced by doxorubicin was tested by Western blotting. The apoptotic cells were stained by Hochest33342 and counted under fluorescence inverted microscope. It was found that human neuroblastoma cell line SK-N-MC expressed high level of TE Knockdown of the TF expression was achieved by transfection of TFsiRNA-pSUPER on SK-N-MC cells in a dose-dependent manner. Inhibition of TF significantly decreased the viability of transfected SK-N-MC cells treated with different concentrations of doxorubicin. Cleavage of Caspase-3 and PARP was enhanced in transfected SK-N-MC cells with down-regulation of TF. TFsiRNA treatment significantly increased the number of apoptotic cells in transfected SK-N-MC cells as compared with those control cells (P〈0.05) when these cells were exposed to 1 μg/mL doxorubicin for 8 h. These results suggested that knockdown of the TF expression by specific siRNA vector could increase the cytotoxicity of doxorubicin and enhance doxorubicin-induced apoptosis in human neuroblastoma cells. Over-expression of TF might contribute to chemotherapy resistance in human neuroblastoma and its progression, at lest in part, by regulating doxorubicin-induced apoptosis.
基金This project was supported by a grant from National Natu-ral Sciences Foundation of China ( No.3 9970 778)
文摘MDM2 was transfected to acute lymphoblastic leukemia (ALL) line EU-4 cell which lacks P53 expression and expresses very low levels of MDM2. The results showed that MDM2 up-regulated P65 expression in mRNA level and protein level. The effect of adriamycin (ADM) on MDM2-transfected EU-4 cell was detected by MTT assay. It was found that MDM2 transfection could increase drug resistance of EU-4 cells to ADM as compared with parent cells. Since the expression of E-selectin is P65 dependent, E-selectin promoter-CAT construct and P65 and MDM2 expression plasmids were co-transfected to EU-4 cells, revealing that MDM2 increased P65-mediated transactivation of E-selectin promoter. In the absence of P65, MDM2 had no effect on the transactivation of E-selectin. Moreover, MDM2 antisense couldn't change the transactivation of E-selectin. It was concluded that MDM2 could up-regulate transcriptionally P65 expression; MDM2 increased drug resistance of leukemia cells to ADM; MDM2 elevated NF-kappaB activity in a P53-independent manner.