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二聚萘醌类化合物,一类具有前列腺癌细胞毒性的新型化合物。

Dimeric naphthoquinones, a novel class of compounds with prostate cancer cytotoxicity.

机构信息

Department of Urology, Johns Hopkins School of Medicine, Baltimore, MD 21205, USA.

出版信息

BJU Int. 2011 Aug;108(3):447-54. doi: 10.1111/j.1464-410X.2010.09907.x. Epub 2010 Dec 22.

Abstract

OBJECTIVES

• To evaluate the cytotoxicity of dimeric naphthoquinones (BiQs) in prostate cancer cells. • To assess the interaction of dimeric naphthoquinones with common therapies including radiation and docetaxel.

MATERIALS AND METHODS

• The cytotoxicity of 12 different dimeric naphthoquinones was assessed in androgen-independent (PC-3, DU-145) and androgen-responsive (LNCaP, 22RV1) prostate cancer cell lines and in prostate epithelial cells (PrECs). • BiQ2 and BiQ11 were selected for determination of dose response, effects on colony formation and initial exploration into mechanism of action. • Synergistic effects with radiation and docetaxel were explored using colony-forming and MTT assays.

RESULTS

• At concentrations of 15µM, BiQ2, BiQ3, BiQ11, BiQ12, and BiQ15 demonstrated cytotoxicity in all prostate cancer cell lines. • Treatment with BiQs limited the ability of prostate cancer cells to form colonies in clonogenic assays. • Exposure of prostate cancer to BiQs increased cellular reactive oxygen species (ROS), decreased ATP production, and promoted apoptosis. • BiQ cytotoxicity was independent of NADP(H):quinone oxidoreductase 1 (NQO1) activity in PrECs, PC-3 and 22RV1, but not DU-145 cells. • Exposure of prostate cancer cells to radiation before treatment with BiQs increased their activity allowing for inhibitory effects well below the IC(50) s of these compounds in PrECs. • Co-administration of BiQs with docetaxel had minimal additive effects.

CONCLUSIONS

• Dimeric naphthoquinones represent a new class of compounds with prostate cancer cytotoxicity and synergistic effects with radiation. The cytotoxic effect of these agents is probably contributed to by the accumulation of ROS and mitochondrial dysfunction. • Further studies are warranted to better characterize this class of potential chemo-therapeutics.

摘要

目的

  • 评估二聚萘醌(BiQs)在前列腺癌细胞中的细胞毒性。

  • 评估二聚萘醌与常见治疗方法(包括辐射和多西他赛)的相互作用。

材料和方法

  • 在雄激素非依赖性(PC-3、DU-145)和雄激素反应性(LNCaP、22RV1)前列腺癌细胞系以及前列腺上皮细胞(PrECs)中评估 12 种不同二聚萘醌的细胞毒性。

  • 选择 BiQ2 和 BiQ11 来确定剂量反应、对集落形成的影响以及对作用机制的初步探索。

  • 使用集落形成和 MTT 测定法探索与辐射和多西他赛的协同作用。

结果

  • 在 15µM 浓度下,BiQ2、BiQ3、BiQ11、BiQ12 和 BiQ15 在所有前列腺癌细胞系中均表现出细胞毒性。

  • BiQs 处理限制了前列腺癌细胞在集落形成测定中的集落形成能力。

  • 暴露于 BiQs 会增加前列腺癌细胞中的活性氧物种 (ROS),减少 ATP 产生,并促进细胞凋亡。

  • BiQ 细胞毒性与 NADP(H):醌氧化还原酶 1 (NQO1) 在 PrECs、PC-3 和 22RV1 中的活性无关,但与 DU-145 细胞有关。

  • 在用 BiQs 处理之前,将前列腺癌细胞暴露于辐射会增加其活性,从而使这些化合物在 PrECs 中的 IC(50) 以下的抑制作用得以实现。

  • 与多西他赛联合使用 BiQs 几乎没有附加作用。

结论

  • 二聚萘醌代表一类具有前列腺癌细胞毒性的新型化合物,并与辐射具有协同作用。这些药物的细胞毒性作用可能归因于 ROS 的积累和线粒体功能障碍。

  • 需要进一步研究以更好地描述这一类潜在的化疗药物。

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