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Anti-proliferative effect of ridaifen-B on hepatoma cells
Go Hasegawa1, Kotomi Akatsuka2, Keita Hiruma3
1Department of Chemistry, Faculty of Science, Tokyo University of Science, Tokyo 162-8601, Japan.
Abstract:
Ridaifens (RIDs), a novel series of tamoxifen derivatives, exhibit a potent growth-inhibitory effect against numerous tumor cells regardless of the expression of estrogen receptors, and are thus promising candidates as novel anti-tumor drugs. RID-B is a first generation RIDs, and inhibits the proliferation of several tumor cell lines. However, the potentially growth inhibitory effect of RID-B against hepatoma cells, and the detailed mechanism underlying RID-B-mediated tumor cell death remain to be elucidated. The purpose of the current study was to evaluate the anti-proliferative effect of RID-B against hepatoma cells. The anti-proliferative effect of RID-B against human hepatoma Huh-7 cells was investigated by cell proliferation assay using WST-1 reagent, and caspase-3 activity was evaluated by using specific fluorescent substrate. In addition, DNA fragmentation in Huh-7 cells induced by RID-B was estimated by terminal deoxynucleotidyl transferase dUTP nick-end labelling assay, and binding of RID-B to double-stranded DNA was confirmed by mass spectrometry. RID-B (0.5, 1 and 2 µM) inhibited the growth of Huh-7 cells, seemingly dose-dependently, but did not inhibit the growth of normal primary rat hepatocytes in the same concentration range. Furthermore, the caspase-3 activity of Huh-7 cells was increased by RID-B (0.5 and 5 µM), and the anti-proliferative effect of RID-B (1 µM) on Huh-7 cells was partially suppressed by the addition of the caspase inhibitor, Z-VAD-FMK. Additionally, RID-B (10 µM) directly bound to double-stranded DNA, and the addition of DNA suppressed RID-B-mediated cell growth inhibition and DNA fragmentation in Huh-7 cells. From these data, it may be concluded that RID-B inhibited cell growth and induced apoptosis via activating caspase-3 and binding to DNA directly, leading to DNA fragmentation in hepatoma cells.
Insights
RID-B, a novel tamoxifen derivative, effectively inhibits hepatoma cell growth by inducing apoptosis. It activates caspase-3 and directly binds to DNA, causing fragmentation without harming normal liver cells.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Ridaifens (RIDs) are novel tamoxifen derivatives with broad-spectrum anti-tumor activity.
- RID-B, a first-generation RID, shows antiproliferative effects on various cancer cell lines.
- The specific anti-hepatoma effects and death mechanisms of RID-B require further investigation.
Purpose of the Study:
- To evaluate the anti-proliferative impact of RID-B on human hepatoma Huh-7 cells.
- To elucidate the molecular mechanisms behind RID-B-induced hepatoma cell death.
Main Methods:
- Cell proliferation was assessed using WST-1 assay.
- Caspase-3 activity was measured using a fluorescent substrate.
- DNA fragmentation was detected via TUNEL assay.
- RID-B's DNA binding was confirmed by mass spectrometry.
Main Results:
- RID-B inhibited Huh-7 cell growth in a dose-dependent manner, sparing normal rat hepatocytes.
- RID-B treatment increased caspase-3 activity in Huh-7 cells.
- Caspase inhibition partially reversed RID-B's anti-proliferative effect.
- RID-B directly bound to double-stranded DNA, leading to DNA fragmentation.
Conclusions:
- RID-B exhibits selective anti-proliferative effects against hepatoma cells.
- RID-B induces apoptosis in hepatoma cells by activating caspase-3 and causing DNA fragmentation.
- Direct DNA binding is a key mechanism in RID-B's anti-cancer activity.
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