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多西他赛在前列腺癌细胞的缺氧条件下保持其细胞毒性活性。

Docetaxel maintains its cytotoxic activity under hypoxic conditions in prostate cancer cells.

机构信息

Prostate Molecular Oncology Research Group, Academic Unit of Clinical and Molecular Oncology, Institute of Molecular Medicine, St. James's Hospital and Trinity College Dublin, Dublin, Ireland.

出版信息

Urol Oncol. 2012 Nov-Dec;30(6):912-9. doi: 10.1016/j.urolonc.2010.08.015. Epub 2010 Dec 21.

Abstract

OBJECTIVE

The efficacy of docetaxel has recently been shown to be increased under hypoxic conditions through the down-regulation of hypoxia-inducible-factor 1α (HIF1A). Overexpression of the hypoxia-responsive gene class III β-tubulin (TUBB3) has been associated with docetaxel resistance in a number of cancer models. We propose that administration of docetaxel to prostate patients has the potential to reduce the hypoxic response through HIF1A down-regulation and that TUBB3 down-regulation participates in sensitivity to docetaxel.

METHODS

The cytotoxic effect of docetaxel was determined in both 22Rv1 and DU145 prostate cancer cell lines and correlated with HIF1A expression levels under aerobic and hypoxic conditions. Hypoxia-induced chemoresistance was investigated in a pair of isogenic docetaxel-resistant PC3 cell lines. Basal and hypoxia-induced TUBB3 gene expression levels were determined and correlated with methylation status at the HIF1A binding site.

RESULTS

Prostate cancer cells were sensitive to docetaxel under both aerobic and hypoxic conditions. Hypoxic cytotoxicity of docetaxel was consistent with a reduction in detected HIF1A levels. Sensitivity correlated with reduced basal and hypoxia-induced HIF1A and TUBB3 expression levels. The TUBB3 HIF1A binding site was hypermethylated in prostate cell lines and tumor specimens, which may exclude transcription factor binding and induction of TUBB3 expression. However, acquired docetaxel resistance was not associated with TUBB3 overexpression.

CONCLUSION

These data suggest that the hypoxic nature of a tumor may have relevance as regard to their response to docetaxel. Further investigation into the nature of this relationship may allow identification of novel targets to improve tumor control in prostate cancer patients.

摘要

目的

最近的研究表明,在缺氧条件下,通过下调缺氧诱导因子 1α(HIF1A),多西紫杉醇的疗效得到增强。在许多癌症模型中,缺氧反应基因 III 类 β-微管蛋白(TUBB3)的过表达与多西紫杉醇耐药有关。我们提出,在前列腺患者中给予多西紫杉醇有可能通过下调 HIF1A 来减少低氧反应,并且 TUBB3 下调参与了对多西紫杉醇的敏感性。

方法

在 22Rv1 和 DU145 前列腺癌细胞系中测定多西紫杉醇的细胞毒性作用,并在有氧和缺氧条件下与 HIF1A 表达水平相关联。在一对同源性多西紫杉醇耐药 PC3 细胞系中研究了缺氧诱导的化疗耐药性。测定了基础和缺氧诱导的 TUBB3 基因表达水平,并与 HIF1A 结合位点的甲基化状态相关联。

结果

前列腺癌细胞对多西紫杉醇在有氧和缺氧条件下均敏感。多西紫杉醇的缺氧细胞毒性与检测到的 HIF1A 水平降低一致。敏感性与基础和缺氧诱导的 HIF1A 和 TUBB3 表达水平降低相关。TUBB3 HIF1A 结合位点在前列腺细胞系和肿瘤标本中呈超甲基化状态,这可能排除转录因子结合和 TUBB3 表达的诱导。然而,获得的多西紫杉醇耐药性与 TUBB3 过表达无关。

结论

这些数据表明,肿瘤的缺氧性质可能与它们对多西紫杉醇的反应有关。对这种关系的本质进行进一步研究可能有助于确定改善前列腺癌患者肿瘤控制的新靶标。

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