ent-8(14),15-Pimaradiene-2β,19-diol,一种来自 Aleuritopteris albofusca 的二萜,可抑制肝癌细胞的生长并诱导保护性自噬

Yumeng Zhang, Zi Liu, Fuchun Wang, Jian Liu, Yu Zhang, Jianguo Cao, Guozheng Huang, Liang Ma
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引用次数: 0

摘要

我们之前的研究从蕨类植物 Aleuritopteris albofusca 中分离出了一种新的 pimarane 型二萜--ent-8(14),15-pimaradiene-2β,19-diol(JXE-23),但这种二萜的生物活性仍不清楚。本研究考察了 JXE-23 在多种癌细胞中的抗癌潜力。在 MCF-7 乳腺癌细胞、A549 肺癌细胞和 HepG2 肝癌细胞中,JXE-23 对 HepG2 细胞有明显的细胞毒性,IC50 值为 17.20 ± 1.73 µM,而对正常肝细胞 HL7702 则无明显毒性。JXE-23 可抑制 HepG2 细胞的生长和集落形成。细胞周期分布分析表明,JXE-23 会导致 G2/M 细胞周期停滞。此外,JXE-23 还抑制了 HepG2 细胞的迁移。有趣的是,JXE-23 处理的细胞中轻链 3 II(LC3II)和 Beclin 1 增加,P62 减少,并形成 GFP-LC3 点,表明 JXE-23 诱导了自噬。当与自噬抑制剂 3-甲基腺嘌呤和氯喹联合使用时,细胞活力明显降低,这表明 JXE-23 在肝癌细胞中引发了保护性自噬。进一步的研究表明,JXE-23 使 HepG2 细胞中的 CIP2A/p-AKT/c-Myc 信号轴失活。我们的数据提供了证据,证明 JXE-23 能抑制 HepG2 肝癌细胞的生长,使细胞停滞在 G2/M 期,并诱导保护性自噬。JXE-23 可能是开发抗癌药物的潜在先导化合物,自噬抑制剂治疗可能是提高其抗癌效果的有效策略。
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ent-8(14),15-Pimaradiene-2β,19-diol, a diterpene from Aleuritopteris albofusca, inhibits growth and induces protective autophagy in hepatocellular carcinoma cells

A new pimarane-type diterpene, ent-8(14),15-pimaradiene-2β,19-diol (JXE-23), was isolated from the fern plant Aleuritopteris albofusca by our previous work; however, the biological activity of this diterpene remains unclear. In the present study, the anti-cancer potential of JXE-23 in various cancer cells was investigated. Among MCF-7 breast cancer cells, A549 lung cancer cells, and HepG2 liver cancer cells, JXE-23 displayed significant cytotoxicity to HepG2 cells with an IC50 value of 17.20 ± 1.73 µM, while showing no obvious toxicity in normal hepatocytes HL7702. JXE-23 inhibited cell growth and colony formation in HepG2 cells. A cell cycle distribution analysis showed that JXE-23 caused G2/M cell cycle arrest. Besides, JXE-23 also suppressed the migration of HepG2 cells. Interestingly, an increase of light chain 3 II (LC3II) and Beclin 1 and a decrease of P62 have occurred in JXE-23-treated cells, as well as the formation of GFP-LC3 dots, indicative of autophagy induction by JXE-23. When combined with autophagy inhibitor 3-methyladenine and chloroquine, the cell viability was significantly reduced, suggesting that JXE-23 triggered protective autophagy in hepatoma cells. Further study showed that JXE-23 inactivated the CIP2A/p-AKT/c-Myc signaling axis in HepG2 cells. Our data provided evidence that JXE-23 inhibited cell growth, arrested cells at the G2/M phase, and induced protective autophagy in HepG2 hepatocellular carcinoma cells. JXE-23 may be a potential lead compound for anti-cancer drug development, and autophagy inhibitor treatment may provide an effective strategy for improving its anti-cancer effect.

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