首页> 美国卫生研究院文献>International Journal of Molecular Sciences >The Antitumor Effect of Lipophilic Bisphosphonate BPH1222 in Melanoma Models: The Role of the PI3K/Akt Pathway and the Small G Protein Rheb
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The Antitumor Effect of Lipophilic Bisphosphonate BPH1222 in Melanoma Models: The Role of the PI3K/Akt Pathway and the Small G Protein Rheb

机译:亲脂性双膦酸盐BPH1222在黑色素瘤模型中的抗肿瘤作用:PI3K / Akt通路和小G蛋白Rheb的作用。

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摘要

Malignant melanoma is one of the most metastatic cancer types, and despite recent success with novel treatment strategies, there is still a group of patients who do not respond to any therapies. Earlier, the prenylation inhibitor hydrophilic bisphosphonate zoledronic acid (ZA) was found to inhibit melanoma growth in vitro, but only a weaker effect was observed in vivo due to its hydrophilic properties. Recently, lipophilic bisphosphonates (such as BPH1222) were developed. Accordingly, for the first time, we compared the effect of BPH1222 to ZA in eight melanoma lines using viability, cell-cycle, clonogenic and spheroid assays, videomicroscopy, immunoblot, and xenograft experiments. Based on 2D and spheroid assays, the majority of cell lines were more sensitive to BPH. The activation of Akt and S6 proteins, but not Erk, was inhibited by BPH. Additionally, BPH had a stronger apoptotic effect than ZA, and the changes of Rheb showed a correlation with apoptosis. In vitro, only M24met cells were more sensitive to ZA than to BPH; however, in vivo growth of M24met was inhibited more strongly by BPH. Here, we present that lipophilic BPH is more effective on melanoma cells than ZA and identify the PI3K pathway, particularly Rheb as an important mediator of growth inhibition.
机译:恶性黑色素瘤是转移性最强的癌症类型之一,尽管最近通过新颖的治疗策略获得了成功,但仍有一群患者对任何疗法均无反应。早先,发现异戊二烯化抑制剂亲水性双膦酸酯唑来膦酸(ZA)在体外抑制黑素瘤生长,但由于其亲水性,在体内仅观察到较弱的作用。最近,开发了亲脂性双膦酸酯(例如BPH1222)。因此,我们首次使用生存力,细胞周期,克隆形成和球状体检测,视频显微镜,免疫印迹和异种移植实验比较了BPH1222对ZA在八个黑色素瘤细胞系中的作用。基于2D和球体分析,大多数细胞系对BPH更为敏感。 BPH抑制了Akt和S6蛋白的激活,但未抑制Erk的激活。另外,BPH的细胞凋亡作用比ZA强,Rheb的变化与细胞凋亡相关。在体外,仅M24met细胞对ZA的敏感性高于对BPH的敏感性。但是,BPH抑制了M24met的体内生长。在这里,我们提出亲脂性BPH在黑色素瘤细胞上比ZA更有效,并确定PI3K途径,特别是Rheb是抑制生长的重要介质。

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