Abstract

BackgroundInduction of cell apoptosis and regulation of cell cycle are very attractive for treatments of tumors including ovarian carcinoma. Flavopiridol is a potent small molecular cyclin-dependent kinase(cdk) inhibitor, but its antitumor efficacy is not satisfied yet. Caspase-3 play a major role in the transduction of apoptotic signals and the execution of apoptosis in mammalian cells. We have successfully constructed the recombinant adenovirues AdHTVP2G5-rev-casp3 containing autocatalytic caspase-3 (rev-caspase-3) driven by amplified hTERT promoter system (TSTA-hTERTp). In this study, we applied it with flavopiridol to investigate their antitumor effect on ovarian cancer in vitro and in vivo.MethodsCell viabilities were determined using Cell Counting Kit 8 and flow cytometry. RT-PCR and immunoblotting assays were used to detect cellular apoptotic activities. Tumor growth and survival of mice bearing tumors were studied.ResultsFlavopiridol or AdHTVP2G5-rev-casp3 at low dosage alone was mildly cytotoxic in vitro with a viability rate of 86.5 ± 4.7% for 300 nM flavopiridol and 88.9 ± 5.4% for AdHTVP2G5-rev-casp3 (MOI 20). By contrast, significant synergism of their sequential combination was observed, and the treatment of AdHTVP2G5-rev-casp3 (MOI 20) infection for 72 h, followed by flavopiridol (300 nM) for 48 h, can result in the most synergistic cell death, with cell survival rate and apoptotic rate of 11.6% and 69.7%, respectively. The sequential combination showed synergistic tumor suppression rate of 77.8%, which was significantly higher than that of AdHTVP2G5-rev-casp3 (33.6%) or flavopiridol (40.1%) alone. The mean survival of mice treated with the combination was 286 ± 8 d, which was synergistically longer than that of mice treated with AdHTVP2G5-rev-casp3 (141 ± 14d), flavopiridol (134 ± 10 d) or controls (106 ± 11 d) (P < 0.01).ConclusionsThe sequential combination of rev-caspase-3 and flavopiridol result in significant synergistic cell killing effects, significant tumor growth suppression and extended survival of mice bearing OVCAR3 cells. The combination should be further explored as a potential clinically useful regimen against ovarian cancer.Electronic supplementary materialThe online version of this article (doi:10.1186/s13048-014-0121-3) contains supplementary material, which is available to authorized users.

Highlights

  • Induction of cell apoptosis and regulation of cell cycle are very attractive for treatments of tumors including ovarian carcinoma

  • Flow cytometry further indicated a dose-dependent increase in the percentage of OVCAR3 cells undergoing apoptosis with an apoptotic rate of 3.1 ± 1.5% at an multiplicity of infection (MOI) of 5 and 21.8 ± 4.3% at an MOI of 40 (Figure 1B)

  • The results showed that the cell-killing synergism of them was the most potent when flavopiridol was added into cells at 72 h after the viral infection and lasted for 48 hs, in which the survival rate of OVCAR3 cells was 11.6 ± 4.6%,and the apoptosis rate was 69.7 ± 7.4% (Figure 1C)

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Summary

Introduction

Induction of cell apoptosis and regulation of cell cycle are very attractive for treatments of tumors including ovarian carcinoma. Flavopiridol is a potent small molecular cyclin-dependent kinase(cdk) inhibitor, but its antitumor efficacy is not satisfied yet. Flavopiridol is a small molecule potent inhibitor of cdks, which is structurally related to a compound derived from the plant Dysoxylumm binectariferum. It strongly inhibits cdk, cdk, cdk, and cdk and exerts cytostatic or cytotoxic activities against various human cancer cell lines. Cdk, cdk, and cdk and exerts cytostatic or cytotoxic activities against various human cancer cell lines It inhibits various kinases such as protein kinase A and C and epidermal growth factorreceptor tyrosine kinase at micromolar concentrations. Combination therapy of flavopiridol with other drugs have been attempted to improve the efficacy against various tumor types [6,7]

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