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首页> 外文期刊>Journal of molecular signaling >Curcumin enhances the apoptosis-inducing potential of TRAIL in prostate cancer cells: molecular mechanisms of apoptosis, migration and angiogenesis
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Curcumin enhances the apoptosis-inducing potential of TRAIL in prostate cancer cells: molecular mechanisms of apoptosis, migration and angiogenesis

机译:姜黄素增强TRAIL在前列腺癌细胞中的凋亡诱导潜力:细胞凋亡,迁移和血管生成的分子机制

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BackgroundWe have recently shown that curcumin (a diferuloylmethane) inhibits growth and induces apoptosis, and also demonstrated that TRAIL induces apoptosis by binding to specific cell surface death receptors in prostate cancer cells. The objectives of this paper were to investigate the molecular mechanisms by which curcumin enhanced the apoptosis-inducing potential of TRAIL in prostate cancer cells.ResultsCurcumin enhanced the apoptosis-inducing potential of TRAIL in androgen-unresponsive PC-3 cells and sensitized androgen-responsive TRAIL-resistant LNCaP cells. Curcumin inhibited the expressions of Bcl-2, Bcl-XL, survivin and XIAP, and induced the expressions Bax, Bak, PUMA, Bim, and Noxa and death receptors (TRAIL-R1/DR4 and TRAIL-R2/DR5) in both cell lines. Overexpression of dominant negative FADD inhibited the interactive effects of curcumin and TRAIL on apoptosis. Treatment of these cells with curcumin resulted in activation of caspase-3, and caspase-9, and drop in mitochondrial membrane potential, and these events were further enhanced when combined with TRAIL. Curcumin inhibited capillary tube formation and migration of HUVEC cells and these effects were further enhanced in the presence of MEK1/2 inhibitor PD98059.ConclusionThe ability of curcumin to inhibit capillary tube formation and cell migration, and enhance the therapeutic potential of TRAIL suggests that curcumin alone or in combination with TRAIL can be used for prostate cancer prevention and/or therapy.
机译:背景技术我们最近显示姜黄素(二铁甲酰甲烷)抑制生长并诱导凋亡,并且还证明TRAIL通过与前列腺癌细胞中的特定细胞表面死亡受体结合而诱导凋亡。本文的目的是研究姜黄素增强前列腺癌细胞TRAIL凋亡诱导潜力的分子机制。结果姜黄素增强雄激素无反应性PC-3细胞和致敏雄激素响应的TRAIL诱导TRAIL的凋亡诱导潜力。耐药的LNCaP细胞。姜黄素抑制两种细胞中Bcl-2,Bcl-XL,survivin和XIAP的表达,并诱导Bax,Bak,PUMA,Bim和Noxa以及死亡受体(TRAIL-R1 / DR4和TRAIL-R2 / DR5)的表达线。显性负性FADD的过表达抑制姜黄素和TRAIL对细胞凋亡的相互作用。用姜黄素处理这些细胞会导致caspase-3和caspase-9活化,并使线粒体膜电位下降,并且与TRAIL结合使用时,这些事件会进一步增强。姜黄素抑制HUVEC细胞的毛细管形成和迁移,在MEK1 / 2抑制剂PD98059的存在下,这些作用进一步增强。结论姜黄素抑制毛细管形成和细胞迁移并增强TRAIL的治疗潜力表明,单独使用姜黄素或与TRAIL结合可用于前列腺癌的预防和/或治疗。

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