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Identification and analysis of the active phytochemicals from the anti-cancer botanical extract Bezielle
Vivian Chen1, Richard E Staub, Scott Baggett
1BioNovo, Inc., Emeryville, California, United States of America.
Abstract:
Bezielle is a botanical extract that has selective anti-tumor activity, and has shown a promising efficacy in the early phases of clinical testing. Bezielle inhibits mitochondrial respiration and induces reactive oxygen species (ROS) in mitochondria of tumor cells but not in non-transformed cells. The generation of high ROS in tumor cells leads to heavy DNA damage and hyper-activation of PARP, followed by the inhibition of glycolysis. Bezielle therefore belongs to a group of drugs that target tumor cell mitochondria, but its cytotoxicity involves inhibition of both cellular energy producing pathways. We found that the cytotoxic activity of the Bezielle extract in vitro co-purified with a defined fraction containing multiple flavonoids. We have isolated several of these Bezielle flavonoids, and examined their possible roles in the selective anti-tumor cytotoxicity of Bezielle. Our results support the hypothesis that a major Scutellaria flavonoid, scutellarein, possesses many if not all of the biologically relevant properties of the total extract. Like Bezielle, scutellarein induced increasing levels of ROS of mitochondrial origin, progressive DNA damage, protein oxidation, depletion of reduced glutathione and ATP, and suppression of both OXPHOS and glycolysis. Like Bezielle, scutellarein was selectively cytotoxic towards cancer cells. Carthamidin, a flavonone found in Bezielle, also induced DNA damage and oxidative cell death. Two well known plant flavonoids, apigenin and luteolin, had limited and not selective cytotoxicity that did not depend on their pro-oxidant activities. We also provide evidence that the cytotoxicity of scutellarein was increased when other Bezielle flavonoids, not necessarily highly cytotoxic or selective on their own, were present. This indicates that the activity of total Bezielle extract might depend on a combination of several different compounds present within it.
Insights
Bezielle, a botanical extract, selectively targets tumor cell mitochondria, inducing reactive oxygen species (ROS) and energy pathway inhibition. Its primary active compound, scutellarein, demonstrates potent anti-cancer properties, potentially enhanced by other Bezielle flavonoids.
Area of Science:
- Pharmacology
- Biochemistry
- Oncology
Background:
- Bezielle is a botanical extract with selective anti-tumor activity, targeting tumor cell mitochondria.
- It inhibits mitochondrial respiration and induces reactive oxygen species (ROS) in cancer cells, leading to DNA damage and energy pathway disruption.
Purpose of the Study:
- To investigate the specific flavonoids responsible for Bezielle's selective anti-tumor cytotoxicity.
- To elucidate the mechanisms underlying Bezielle's action on tumor cell mitochondria and energy metabolism.
Main Methods:
- In vitro isolation and characterization of Bezielle flavonoids.
- Assessment of individual and combined flavonoid effects on cancer cell viability, ROS production, DNA damage, and energy pathways (OXPHOS, glycolysis).
Main Results:
- Scutellarein, a major Scutellaria flavonoid, replicated Bezielle's selective cytotoxicity, ROS induction, DNA damage, and energy pathway suppression.
- Carthamidin also induced DNA damage and oxidative cell death, while apigenin and luteolin showed limited, non-selective effects.
- The presence of other Bezielle flavonoids potentiated scutellarein's cytotoxicity, suggesting a synergistic effect.
Conclusions:
- Scutellarein is a key active component of Bezielle, mediating its selective anti-tumor effects through mitochondrial ROS generation and energy metabolism inhibition.
- The combined action of multiple Bezielle flavonoids may contribute to the overall efficacy of the botanical extract, highlighting a potential multi-component therapeutic strategy.
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