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来自扇形聚伞藻的化合物14-酮-聚伞藻二醇二乙酸酯可抑制DU-145人前列腺癌细胞中的微管和细胞增殖。

The compound 14-keto-stypodiol diacetate from the algae Stypopodium flabelliforme inhibits microtubules and cell proliferation in DU-145 human prostatic cells.

作者信息

Depix M S, Martínez J, Santibañez F, Rovirosa J, San Martín A, Maccioni R B

机构信息

Laboratory of Cellular and Molecular Biology, International Center for Cancer and Developmental Biology, Las Palmeras, Nuñoa, Santiago, Chile.

出版信息

Mol Cell Biochem. 1998 Oct;187(1-2):191-9. doi: 10.1023/a:1006879308861.

Abstract

We investigated the effects of the drug 14-keto-stypodiol diacetate (SDA) extracted from the seaweed product Stypopodium flabelliforme, in inhibiting the cell growth and tumor invasive behavior of DU-145 human prostate cells. In addition, the molecular action of the drug on microtubule assembly was analyzed. The effects of this diterpenoid drug in cell proliferation of DU-145 tumor cells in culture revealed that SDA at concentrations of 5 microM decreased cell growth by 14%, while at 45 microM a 61% decrease was found, as compared with control cells incubated with the solvent but in the absence of the drug. To study their effects on the cell cycle, DU-145 cells were incubated with increasing concentrations of SDA and the distribution of cell-cycle stages was analyzed by flow cytometry. Interestingly, the data showed that 14-keto-stypodiol diacetate dramatically increased the proportion of cells in the G2/M phases, and decreased the number of cells at the S phase of mitosis, as compared with appropriate controls. Studies on their action on the in vitro assembly of microtubules using purified brain tubulin, showed that SDA delayed the lag period associated to nucleation events during assembly, and decreased significantly the extent of polymerization. The studies suggest that this novel derivative from a marine natural product induces mitotic arrest of tumor cells, an effect that could be associated to alterations in the normal microtubule assembly process. On the other hand, a salient feature of this compound is that it affected protease secretion and the in vitro invasive capacity, both properties of cells from metastases. The secretion of plasminogen activator (u-PA) and the capacity of DU-145 cells to migrate through a Matrigel-coated membrane were significantly inhibited in the presence of micromolar concentrations of SDA. These results provide new keys to analyze the functional relationships between protease secretion, invasive behavior of tumor cells and the microtubule network.

摘要

我们研究了从海藻产品扇形聚肋草中提取的药物14-酮-聚肋草二醇二乙酸酯(SDA)对抑制DU-145人前列腺癌细胞的细胞生长和肿瘤侵袭行为的作用。此外,还分析了该药物对微管组装的分子作用。这种二萜类药物对培养的DU-145肿瘤细胞增殖的影响表明,与用溶剂培养但未加药物的对照细胞相比,浓度为5微摩尔的SDA使细胞生长减少了14%,而在45微摩尔时减少了61%。为了研究它们对细胞周期的影响,将DU-145细胞与浓度不断增加的SDA一起孵育,并通过流式细胞术分析细胞周期阶段的分布。有趣的是,数据显示,与适当的对照相比,14-酮-聚肋草二醇二乙酸酯显著增加了处于G2/M期的细胞比例,并减少了有丝分裂S期的细胞数量。使用纯化的脑微管蛋白对它们在微管体外组装上的作用进行研究表明,SDA延迟了组装过程中与成核事件相关的延迟期,并显著降低了聚合程度。这些研究表明,这种来自海洋天然产物的新型衍生物可诱导肿瘤细胞的有丝分裂停滞,这种作用可能与正常微管组装过程的改变有关。另一方面,该化合物的一个显著特征是它影响蛋白酶分泌和体外侵袭能力,这两者都是转移细胞的特性。在存在微摩尔浓度的SDA时,纤溶酶原激活剂(u-PA)的分泌以及DU-145细胞穿过基质胶包被膜的迁移能力均受到显著抑制。这些结果为分析蛋白酶分泌、肿瘤细胞侵袭行为和微管网络之间的功能关系提供了新的线索。

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