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1.
Braz J Med Biol Res ; 53(6): e8885, 2020.
Article in English | MEDLINE | ID: mdl-32401925

ABSTRACT

In this study, we aimed to analyze the anti-cancer effects of ß-elemene combined with paclitaxel for ovarian cancer. RT-qPCR, MTT assay, western blot, flow cytometry, and immunohistochemistry were used to analyze in vitro and in vivo anti-cancer effects of combined treatment of ß-elemene and paclitaxel. The in vitro results showed that ß-elemene+paclitaxel treatment markedly inhibited ovarian cancer cell growth, migration, and invasion compared to either paclitaxel or ß-elemene treatment alone. Results demonstrated that ß-elemene+paclitaxel induced apoptosis of SKOV3 cells, down-regulated anti-apoptotic Bcl-2 and Bcl-xl gene expression and up-regulated pro-apoptotic P53 and Apaf1 gene expression in SKOV3 cells. Administration of ß-elemene+paclitaxel arrested SKOV3 cell cycle at S phase and down-regulated CDK1, cyclin-B1, and P27 gene expression and apoptotic-related resistant gene expression of MDR1, LRP, and TS in SKOV3 cells. In vivo experiments showed that treatment with ß-elemene+paclitaxel significantly inhibited ovarian tumor growth and prolonged the overall survival of SKOV3-bearing mice. In addition, the treatment inhibited phosphorylated STAT3 and NF-κB expression in vitro and in vivo. Furthermore, it inhibited migration and invasion through down-regulation of the STAT-NF-κB signaling pathway in SKOV3 cells. In conclusion, the data suggested that ß-elemene+paclitaxel can inhibit ovarian cancer growth via down-regulation of the STAT3-NF-κB signaling pathway, which may be a potential therapeutic strategy for ovarian cancer therapy.


Subject(s)
Apoptosis/drug effects , Cell Movement/drug effects , Cell Proliferation/drug effects , NF-kappa B/drug effects , Ovarian Neoplasms/drug therapy , Paclitaxel/administration & dosage , Sesquiterpenes/administration & dosage , Animals , Blotting, Western , Cell Line, Tumor , Female , Humans , Immunohistochemistry , Male , Mice , Mice, Inbred BALB C , NF-kappa B/metabolism , Ovarian Neoplasms/metabolism , Ovarian Neoplasms/pathology , Real-Time Polymerase Chain Reaction , Signal Transduction , Transfection
2.
Rev. bras. pesqui. méd. biol ; Braz. j. med. biol. res;53(6): e8885, 2020. tab, graf
Article in English | LILACS, Coleciona SUS | ID: biblio-1132519

ABSTRACT

In this study, we aimed to analyze the anti-cancer effects of β-elemene combined with paclitaxel for ovarian cancer. RT-qPCR, MTT assay, western blot, flow cytometry, and immunohistochemistry were used to analyze in vitro and in vivo anti-cancer effects of combined treatment of β-elemene and paclitaxel. The in vitro results showed that β-elemene+paclitaxel treatment markedly inhibited ovarian cancer cell growth, migration, and invasion compared to either paclitaxel or β-elemene treatment alone. Results demonstrated that β-elemene+paclitaxel induced apoptosis of SKOV3 cells, down-regulated anti-apoptotic Bcl-2 and Bcl-xl gene expression and up-regulated pro-apoptotic P53 and Apaf1 gene expression in SKOV3 cells. Administration of β-elemene+paclitaxel arrested SKOV3 cell cycle at S phase and down-regulated CDK1, cyclin-B1, and P27 gene expression and apoptotic-related resistant gene expression of MDR1, LRP, and TS in SKOV3 cells. In vivo experiments showed that treatment with β-elemene+paclitaxel significantly inhibited ovarian tumor growth and prolonged the overall survival of SKOV3-bearing mice. In addition, the treatment inhibited phosphorylated STAT3 and NF-κB expression in vitro and in vivo. Furthermore, it inhibited migration and invasion through down-regulation of the STAT-NF-κB signaling pathway in SKOV3 cells. In conclusion, the data suggested that β-elemene+paclitaxel can inhibit ovarian cancer growth via down-regulation of the STAT3-NF-κB signaling pathway, which may be a potential therapeutic strategy for ovarian cancer therapy.


Subject(s)
Animals , Male , Female , Rabbits , Ovarian Neoplasms/drug therapy , Sesquiterpenes/administration & dosage , Cell Movement/drug effects , NF-kappa B/adverse effects , Paclitaxel/administration & dosage , Apoptosis/drug effects , Cell Proliferation/drug effects , Ovarian Neoplasms/metabolism , Ovarian Neoplasms/pathology , Immunohistochemistry , Transfection , Signal Transduction , Blotting, Western , NF-kappa B/metabolism , Cell Line, Tumor , Real-Time Polymerase Chain Reaction , Mice, Inbred BALB C
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