BioNovo, Inc., Emeryville, California, United States of America.
PLoS One. 2012;7(1):e30107. doi: 10.1371/journal.pone.0030107. Epub 2012 Jan 17.
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.
贝泽尔是一种植物提取物,具有选择性抗肿瘤活性,在临床测试的早期阶段显示出有希望的疗效。贝泽尔抑制线粒体呼吸并诱导肿瘤细胞线粒体中的活性氧 (ROS),但不在未转化的细胞中。肿瘤细胞中高 ROS 的产生导致大量 DNA 损伤和 PARP 的超激活,随后抑制糖酵解。因此,贝泽尔属于一组靶向肿瘤细胞线粒体的药物,但它的细胞毒性涉及抑制两种细胞能量产生途径。我们发现,体外贝泽尔提取物的细胞毒性活性与包含多种类黄酮的特定部分共同纯化。我们已经分离出几种贝泽尔类黄酮,并研究了它们在贝泽尔选择性抗肿瘤细胞毒性中的可能作用。我们的结果支持这样的假设,即主要的黄芩类黄酮,黄芩素,具有总提取物的许多(如果不是全部)生物学相关特性。与贝泽尔一样,黄芩素诱导线粒体来源的 ROS 水平逐渐升高,进行性 DNA 损伤,蛋白质氧化,还原型谷胱甘肽和 ATP 的耗竭,以及 OXPHOS 和糖酵解的抑制。与贝泽尔一样,黄芩素对癌细胞具有选择性细胞毒性。藏红花素,一种在贝泽尔中发现的类黄酮,也诱导 DNA 损伤和氧化细胞死亡。两种众所周知的植物类黄酮,芹菜素和木犀草素,具有有限的且非选择性的细胞毒性,而不依赖于它们的促氧化剂活性。我们还提供了证据表明,当其他贝泽尔类黄酮存在时,黄芩素的细胞毒性增加,而这些类黄酮本身不一定具有高细胞毒性或选择性。这表明总贝泽尔提取物的活性可能取决于其中存在的几种不同化合物的组合。