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   effect of valproic acid on cisplatinresistant ovarian cancer cell lines  
   
نویسنده hashemi-sheikhshabani somayeh ,amini-farsani zeinab ,shamsara mehdi ,sajadpoor zahra ,sangtarash mohammad hossein ,teimori hossein
منبع journal of shahrekord university of medical sciences - 2019 - دوره : 21 - شماره : 1 - صفحه:39 -44
چکیده    Background and aims: platinum resistance has been one of the most important problems in the management of ovarian cancer. the effects of various chemotherapeutic agents are limited in patients with platinum resistance. therefore, developing new anticancer drugs that can improve the effect of currently used cytostatics is critical. the current study investigated the effects of valproic acid (vpa) alone and in combination with cisplatin on ovarian cancer cells. methods: in this experimental study, the human ovarian cancer cell lines (a2780-s and a2780-cp) were grown in rpmi-1640 medium in appropriate culture conditions. the cells were treated with various concentrations of cisplatin (0.15-400 µg/ml) or vpa (10-2000 µg/ml) and were incubated for 24, 48, and 72 hours. moreover, a2780 cells were cotreated with different concentrations of cisplatin and vpa for 48 hours. afterward, cell viability was investigated using mtt assay. graphpad prism statistical software was used for the data analysis and anova and duncan’s test were conducted. results: a dose and timedependent reduction was observed in cell viability following the treatment with cisplatin or vpa. moreover, cotreatment of the a2780 cells with cisplatin and vpa resulted in a significantly greater inhibition of cell viability compared to the treatment with either agent alone. conclusion: overall, it can be argued that vpa does not only cause inhibition of proliferation and induction of apoptosis in ovarian cancer cells but also helps to enhance the antiproliferative effects of cisplatin and results in the increased susceptibility to cisplatin in resistant cells. vpa may therefore be used to treat cancer in the future.
کلیدواژه ovarian cancer ,cisplatin ,valproic acid ,platinum resistance ,antiproliferative effect
آدرس shahrekord university of medical sciences, basic health sciences institute, cellular and molecular research center, ایران, islamic azad university shahrekord branch, young researchers and elites club, ایران, national institute of genetic engineering and biotechnology, national research center for transgenic mouse, ایران, shahrekord university of medical sciences, basic health sciences institute, cellular and molecular research center, ایران, university of sistan and baluchestan, department of biology, ایران, shahrekord university of medical sciences, basic health sciences institute, cellular and molecular research center, ایران
پست الکترونیکی hteimori@skums.ac.ir
 
   Effect of valproic acid on cisplatinresistant ovarian cancer cell lines  
   
Authors Hashemi-Sheikhshabani Somayeh ,Amini-Farsani Zeinab ,Shamsara Mehdi ,Sajadpoor Zahra ,Sangtarash Mohammad Hossein ,Teimori Hossein
Abstract    Background and aims: Platinum resistance has been one of the most important problems in the management of ovarian cancer. The effects of various chemotherapeutic agents are limited in patients with platinum resistance. Therefore, developing new anticancer drugs that can improve the effect of currently used cytostatics is critical. The current study investigated the effects of valproic acid (VPA) alone and in combination with cisplatin on ovarian cancer cells. Methods: In this experimental study, the human ovarian cancer cell lines (A2780S and A2780CP) were grown in RPMI1640 medium in appropriate culture conditions. The cells were treated with various concentrations of cisplatin (0.15400 µg/mL) or VPA (102000 µg/mL) and were incubated for 24, 48, and 72 hours. Moreover, A2780 cells were cotreated with different concentrations of cisplatin and VPA for 48 hours. Afterward, cell viability was investigated using MTT assay. GraphPad Prism statistical software was used for the data analysis and ANOVA and Duncan’s test were conducted. Results: A dose and timedependent reduction was observed in cell viability following the treatment with cisplatin or VPA. Moreover, cotreatment of the A2780 cells with cisplatin and VPA resulted in a significantly greater inhibition of cell viability compared to the treatment with either agent alone. Conclusion: Overall, it can be argued that VPA does not only cause inhibition of proliferation and induction of apoptosis in ovarian cancer cells but also helps to enhance the antiproliferative effects of cisplatin and results in the increased susceptibility to cisplatin in resistant cells. VPA may therefore be used to treat cancer in the future.
Keywords Ovarian cancer ,Cisplatin ,Valproic acid ,Platinum resistance ,Antiproliferative effect
 
 

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