Wang Yurong, Wang Bin, Guerram Mounia, Sun Li, Shi Wei, Tian Chongchong, Zhu Xiong, Jiang Zhenzhou, Zhang Luyong
Jiangsu Key Laboratory of Drug Screening and Jiangsu Center for Pharmacodynamics Research and Evaluation, China Pharmaceutical University, Nanjing, P.R. China.
Chia Tai Tianqing Pharmaceutical Group Co., Ltd, Nanjing, P.R. China.
Oncotarget. 2015 Oct 6;6(30):29497-512. doi: 10.18632/oncotarget.4985.
Angiogenesis plays a critical role in the growth and metastasis of tumors, which makes it an attractive target for anti-tumor drug development. Deoxypodophyllotoxin (DPT), a natural product isolated from Anthriscus sylvestris, inhibits cell proliferation and migration in various cancer cell types. Our previous studies indicate that DPT possesses both anti-angiogenic and vascular-disrupting activities. Although the RhoA/ RhoA kinase (ROCK) signaling pathway is implicated in DPT-stimulated cytoskeleton remodeling and tumor vasculature suppressing, the detailed mechanisms by which DPT mediates these effects are poorly understood. In the current study, we found that DPT promotes cytoskeleton remodeling in human umbilical vein endothelial cells (HUVECs) via stimulation of AMP-activated protein kinase (AMPK) and that this effect is abolished by either treatment with a selective AMPK inhibitor or knockdown. Moreover, the cellular levels of LKB1, a kinase upstream of AMPK, were enhanced following DPT exposure. DPT-induced activation of AMPK in tumor vasculature effect was also verified by transgenic zebrafish (VEGFR2:GFP), Matrigel plug assay, and xenograft model in nude mice. The present findings may lay the groundwork for a novel therapeutic approach in treating cancer.
血管生成在肿瘤的生长和转移中起着关键作用,这使其成为抗肿瘤药物开发的一个有吸引力的靶点。脱氧鬼臼毒素(DPT)是从峨参中分离出的一种天然产物,可抑制多种癌细胞类型的细胞增殖和迁移。我们之前的研究表明,DPT具有抗血管生成和血管破坏活性。尽管RhoA/RhoA激酶(ROCK)信号通路与DPT刺激的细胞骨架重塑和肿瘤脉管系统抑制有关,但DPT介导这些效应的详细机制尚不清楚。在本研究中,我们发现DPT通过刺激AMP激活的蛋白激酶(AMPK)促进人脐静脉内皮细胞(HUVECs)的细胞骨架重塑,并且用选择性AMPK抑制剂处理或敲低均可消除这种效应。此外,DPT暴露后,AMPK上游激酶LKB1的细胞水平升高。转基因斑马鱼(VEGFR2:GFP)、基质胶栓塞试验和裸鼠异种移植模型也证实了DPT在肿瘤脉管系统效应中诱导的AMPK激活。本研究结果可能为癌症治疗的新方法奠定基础。