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Enhanced Cytotoxic Effects of Combined Valproic Acid and the Aurora Kinase Inhibitor VE465 on Gynecologic Cancer
Yanfang Li1, Tao Liu, Cristina Ivan
1Departments of Gynecologic Oncology and Reproductive Medicine, The University of Texas MD Anderson Cancer Center Houston, TX, USA.
Abstract:
Increasing evidence shows that targeting epigenetic changes including acetylation and deacetylation of core nucleosomal histones as well as Aurora kinases hold promise for improving the treatment of human cancers including ovarian cancer. We investigated whether the histone deacetylase (HDAC) inhibitor, valproic acid (VPA), and the Aurora kinase inhibitor VE465 can have additive or synergistic effects on gynecologic cancer cells. We tested the in vitro antitumor activity of VPA and VE465, alone and in combination, in gynecologic cancer cells and assessed potential mechanisms of action. 3-[4,5-dimethyl-2-thiazolyl]-2,5-diphenyl-2H-tetrazolium bromide (MTT) analysis revealed that 72 h of treatment with VPA or VE465 alone induced dose-dependent cytotoxic effects in nine gynecologic cancer cell lines (ovarian: 2008/C13, OVCAR3, SKOV3, and A2780; cervical: ME180 and CaSki; endometrial: HEC-1B; and uterine sarcoma: MES-SA and MES-SA/D×5). Co-treatment with VPA and VE465 enhanced cytotoxic effects on five of these cell lines: ovarian: 2008/C13, A2780, and OVCAR3; endometrial: HEC-1B; and cervical: ME180. In ovarian 2008/C13 cells, co-treatment with VPA (2 mM) and VE465 (1 μM) induced more apoptosis than either VPA or VE465 alone. Western blot analysis showed that VPA alone increased the expression of cleaved PARP and p21 in a dose-dependent manner in 2008/C13 cells, while co-treatment with VPA and VE465 induced more cleaved PARP than treatment with VPA or VE465 alone did. The combined use of VPA and VE465 enhanced cytotoxic effects in some ovarian cancer cells, via enhanced induction of apoptosis. Targeting epigenetics with the HDAC inhibitor, in combination with Aurora kinase inhibitors, holds promise for more effective therapy of ovarian cancer.
Insights
Combining valproic acid (VPA), a histone deacetylase inhibitor, with VE465, an Aurora kinase inhibitor, shows promise for treating gynecologic cancers. This combination therapy enhanced cytotoxic effects and apoptosis in ovarian cancer cells.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Epigenetic modifications, including histone acetylation/deacetylation, and Aurora kinases are implicated in human cancers.
- Targeting these pathways offers potential for improved cancer treatment strategies, particularly for ovarian cancer.
Purpose of the Study:
- To investigate the additive or synergistic antitumor effects of valproic acid (VPA), a histone deacetylase (HDAC) inhibitor, and VE465, an Aurora kinase inhibitor.
- To assess the in vitro cytotoxic activity and potential mechanisms of action of VPA and VE465 in combination against gynecologic cancer cells.
Main Methods:
- In vitro screening of VPA and VE465, alone and in combination, across nine gynecologic cancer cell lines using MTT assays.
- Analysis of apoptosis induction and protein expression (cleaved PARP, p21) via Western blotting in selected cell lines.
Main Results:
- VPA and VE465 demonstrated dose-dependent cytotoxic effects individually in all tested cell lines.
- Combination treatment enhanced cytotoxicity in five cell lines, including specific ovarian, endometrial, and cervical cancer lines.
- Co-treatment with VPA and VE465 significantly increased apoptosis and cleaved PARP expression in ovarian 2008/C13 cells compared to single-agent treatments.
Conclusions:
- Combined VPA and VE465 exhibit enhanced cytotoxic effects and apoptosis induction in certain gynecologic cancer cells, notably ovarian cancer.
- Targeting epigenetic pathways with HDAC inhibitors in conjunction with Aurora kinase inhibitors presents a promising therapeutic approach for ovarian cancer.
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