Development Center for Biotechnology, Institute of Biologics, New Taipei City, Taiwan.
Division of Hematology-Oncology and Blood Bank, Department of Internal Medicine, Ditmanson Medical Foundation Chia-Yi Christian Hospital, Chiayi, Taiwan.
J Cell Mol Med. 2018 Mar;22(3):1894-1908. doi: 10.1111/jcmm.13474. Epub 2018 Jan 24.
Honokiol, an active natural product derived from Magnolia officinalis, exerted anticancer effects through a variety of mechanisms on multiple types of cancers. In this study, the molecular mechanisms of honokiol in suppressing the human oral squamous cell carcinoma (OSCC) cells were evaluated. Treatment of two OSCC cell lines with honokiol resulted in reducing the cell proliferation and arresting the cell cycle at G1 stage which was correlated with the down-regulation of Cdk2 and Cdk4 and the up-regulation of cell cycle suppressors, p21 and p27. In addition, the caspase-dependent programmed cell death was substantially detected, and the autophagy was induced as the autophagosome formation and autophagic flux proceeded. Modulation of autophagy by autophagic inducer, rapamycin or inhibitors, 3-MA or bafilomycin, potentiated the honokiol-mediated anti-OSCC effects where honokiol exerted multiple actions in suppression of MAPK pathway and regulation of Akt/mTOR or AMPK pathways. As compared to clinical therapeutic agent, 5-FU, honokiol exhibited more potent activity against OSCC cells and synergistically enhanced the cytotoxic effect of 5-FU. Furthermore, orally administrated honokiol exerted effective antitumour activity in vivo in OSCC-xenografted mice. Thus, this study revealed that honokiol could be a promising candidate in preventing human OSCCs.
厚朴酚是一种从厚朴中提取的天然活性产物,通过多种机制对多种类型的癌症发挥抗癌作用。在本研究中,评估了厚朴酚抑制人口腔鳞状细胞癌(OSCC)细胞的分子机制。厚朴酚处理两种 OSCC 细胞系导致细胞增殖减少,并将细胞周期阻滞在 G1 期,这与 Cdk2 和 Cdk4 的下调以及细胞周期抑制剂 p21 和 p27 的上调相关。此外,还检测到了 caspase 依赖性的程序性细胞死亡,并且自噬被诱导,因为自噬体的形成和自噬流进行。自噬诱导剂雷帕霉素或抑制剂 3-MA 或巴弗洛霉素通过调节自噬,增强了厚朴酚介导的抗 OSCC 作用,其中厚朴酚在抑制 MAPK 通路和调节 Akt/mTOR 或 AMPK 通路方面发挥了多种作用。与临床治疗药物 5-FU 相比,厚朴酚对 OSCC 细胞表现出更强的活性,并协同增强了 5-FU 的细胞毒性作用。此外,口服给予厚朴酚在 OSCC 异种移植小鼠体内表现出有效的抗肿瘤活性。因此,本研究表明厚朴酚可能是预防人类 OSCC 的有前途的候选药物。