Dell'Eva Raffaella, Ambrosini Claudia, Minghelli Simona, Noonan Douglas M, Albini Adriana, Ferrari Nicoletta
Molecular Oncology Laboratory, National Institute for Cancer Research Largo R. Benzi 10, Italy.
Carcinogenesis. 2007 Feb;28(2):404-13. doi: 10.1093/carcin/bgl162. Epub 2006 Sep 4.
Several natural compounds, especially plant products and dietary constituents, are able to exhibit 'angiopreventive' (anti-angiogenic chemoprevention) activities both in vitro and in vivo. Deguelin is a rotenoid of the flavonoid family with chemopreventive activities able to decrease tumor incidence in animal models for lung, colon, mammary and skin carcinogenesis through Akt inhibition. Here we show that deguelin belongs to the 'angiopreventive' molecules and provide evidence for molecular events associated with its anti-angiogenic properties. The data show that deguelin inhibits HUVE cells growth by inducing cell-cycle arrest in the G0/G1 phase and in the absence of apoptosis. Growth arrest is associated with induction of p21 and p53 and decreased survivin levels. Deguelin also interferes with several points in the angiogenic process, including inhibition of endothelial cell migration, invasion and metalloprotease production, and potently inhibits in vivo angiogenesis and vascular tumor growth. In addition to Akt, the nuclear factor-kappaB (NF-kappaB) kinase pathway, which plays a critical role in the regulation of inflammation, vascular homeostasis and angiogenesis, was also repressed by deguelin even in the presence of inflammatory stimuli such as tumor necrosis factor-alpha (TNF-alpha). These findings reveal a new therapeutic potential for deguelin in angioprevention and anti-angiogenic therapy.
几种天然化合物,尤其是植物产物和膳食成分,在体外和体内均能表现出“血管预防”(抗血管生成化学预防)活性。鱼藤素是黄酮类家族中的一种鱼藤酮类化合物,具有化学预防活性,能够通过抑制Akt降低动物模型中肺癌、结肠癌、乳腺癌和皮肤癌的肿瘤发生率。在此,我们表明鱼藤素属于“血管预防”分子,并为与其抗血管生成特性相关的分子事件提供了证据。数据表明,鱼藤素通过诱导细胞周期停滞在G0/G1期且不发生凋亡来抑制人脐静脉内皮细胞(HUVE)生长。生长停滞与p21和p53的诱导以及存活素水平降低有关。鱼藤素还干扰血管生成过程中的多个环节,包括抑制内皮细胞迁移、侵袭和金属蛋白酶产生,并有效抑制体内血管生成和血管性肿瘤生长。除Akt外,在炎症、血管稳态和血管生成调节中起关键作用的核因子-κB(NF-κB)激酶途径,即使在存在肿瘤坏死因子-α(TNF-α)等炎症刺激的情况下,也会被鱼藤素抑制。这些发现揭示了鱼藤素在血管预防和抗血管生成治疗方面的新治疗潜力。