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Nucleolus and c-Myc: potential targets of cardenolide-mediated antitumor activity.

机译:核仁和c-Myc:心内酯介导的抗肿瘤活性的潜在靶标。

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The use of cardenolides like ouabain, digitoxin, or oleandrin has been reported previously many times as a means of potentially combating human refractory prostate cancer by inducing apoptosis through an increase in intracellular calcium concentrations. The aims of the current study were to investigate if part of the antitumor effects mediated by cardenolides concerned disorganization of nucleolar structure and whether this was further associated with a marked decrease in c-Myc expression. Accordingly, the antitumor activity of a novel hemisynthetic cardenolide [1R,3aS,3bR,5aS,6aR,7aS,9R,12aR,13aR,15aR]-3a,11a-dihydroxy-13a-(hydroxymethyl)-9 ,15a-dimethyl-1-(5-oxo-2,5-dihydrofuran-3-yl)icosahydro-1H,4'H-spiro[cyclopenta [7,8]phenanthro[2,3-b]pyrano[3,2-e][1,4]dioxine-11,2'-[1,3]thiazolidin]-4'-one (UNBS1450)] was compared with that of classic cardenolides and reference anticancer agents in prostate cancer cell lines in vitro and in vivo following s.c. and orthotopic prostate cancer cell grafting into mice. The present study indicates that UNBS1450 markedly decreases the in vitro viability/proliferation of human prostate cancer cell lines but not of normal cells. The induced effects are not linked to an increase in intracellular calcium concentrations and subsequent induction of apoptosis. Rather, they appear to relate to the compound's capacity to disorganize nucleolar structure and function (through an impairment of cyclin-dependent kinase and c-Myc expression and related signaling pathways; paralleled by the disorganization of cancer cell-specific perinucleolar bodies as revealed by disruption of Sam68). This nonapoptotic cancer cell death mediated by severe nucleolar targeting and down-regulation of c-Myc expression is a completely new cardenolide-induced mechanism of antitumor action. [Mol Cancer Ther 2008;7(5):1285-96].
机译:先前已多次报道使用心得安类药物如哇巴因,洋地黄毒苷或夹竹桃苷作为通过增加细胞内钙浓度诱导细胞凋亡来潜在抵抗人类难治性前列腺癌的手段。当前研究的目的是调查由心内酯类介导的部分抗肿瘤作用是否与核仁结构的混乱有关,以及这是否进一步与c-Myc表达的显着下降有关。因此,新型半合成心烯醇内酯[1R,3aS,3bR,5aS,6aR,7aS,9R,12aR,13aR,15aR] -3a,11a-二羟基-13a-(羟甲基)-9,15a-二甲基-的抗肿瘤活性1-(5-氧代-2,5-二氢呋喃-3-基)二十氢-1H,4'H-螺[环戊[7,8]菲[2,3-b]吡喃[3,2-e] [将1,4]二恶英-1,2'-[1,3]噻唑烷] -4'-one(UNBS1450)]与经典心烯醇内酯和参考抗癌药在皮下注射后体外和体内进行比较和原位前列腺癌细胞移植到小鼠体内。本研究表明,UNBS1450显着降低人前列腺癌细胞系的体外生存力/增殖,但不能正常细胞。诱导的作用与细胞内钙浓度的增加和随后的细胞凋亡的诱导无关。相反,它们似乎与化合物破坏核仁结构和功能的能力有关(通过细胞周期蛋白依赖性激酶和c-Myc表达及相关信号传导途径的损伤;与癌细胞特异性周核小体的破坏相平行,如破坏所示)。 Sam68)。这种由严重核仁靶向和c-Myc表达下调介导的非凋亡性癌细胞死亡是一种全新的心内酯诱导的抗肿瘤作用机制。 [Mol Cancer Ther 2008; 7(5):1285-96]。

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