首页> 外文期刊>Investigational new drugs. >Cell growth inhibition, G2M cell cycle arrest, and apoptosis induced by the novel compound Alternol in human gastric carcinoma cell line MGC803.
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Cell growth inhibition, G2M cell cycle arrest, and apoptosis induced by the novel compound Alternol in human gastric carcinoma cell line MGC803.

机译:新型化合物Alternol在人胃癌细胞系MGC803中诱导的细胞生长抑制,G2M细胞周期阻滞和凋亡。

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摘要

Alternol is a novel compound purified from fermentation products of a microorganism in the bark of the yew tree. Because it has a similar origin as the anticancer agent paclitaxel, we hypothesized that Alternol may also have an anti-tumor effect. In this report, we chose human gastric carcinoma cell line MGC803 as the model to investigate the effects of Alternol. We evaluated cell viability using the CCK8 kit. The cell cycle distribution was analyzed by flow cytometry. AnnexinV combined with PI was performed to evaluate the apoptosis rate. The mitochondria membrane potential (MMP) was measured by a fluorescence-activated cell sorter using Rhodamin123 staining. We observed the morphological changes by immunofluorescence and Hochest33342 staining. RT-PCR and Western blot analysis were used to evaluate the changes of G2M-related regulators. Our data show that Alternol inhibited the growth of MGC803 and induced G2M arrest. Coincident with G2M arrest, phosphorylation of CDC2 on Tyr-15 was significantly elevated, which could be explained by the increase of Wee1 and decrease of CDC25C. The decreased expression of PLK1 may cause the elevation of Wee1 and CyclinB1 protein levels. Moreover, the apoptosis seemed to be secondary to G2M arrest because the elevated Caspase3, decreased MMP, and typical apoptotic morphology changes appeared after G2M arrest. These findings suggested that Alternol could inhibit the growth of MGC803 by inducing G2M arrest and apoptosis. We expected Alternol may be used as a lead compound one day and our experiments might provide some clues for further research.
机译:交替烯是从紫杉树皮中的微生物的发酵产物中纯化的新型化合物。因为它与抗癌药紫杉醇具有相似的起源,所以我们假设Alternol也可能具有抗肿瘤作用。在本报告中,我们选择人胃癌细胞系MGC803作为模型来研究Alternol的作用。我们使用CCK8试剂盒评估了细胞活力。通过流式细胞术分析细胞周期分布。用AnnexinV结合PI来评估细胞凋亡率。使用Rhodamin123染色,通过荧光激活的细胞分选仪测量线粒体膜电位(MMP)。我们通过免疫荧光和Hochest33342染色观察了形态变化。 RT-PCR和蛋白质印迹分析用于评估G2M相关调节剂的变化。我们的数据表明,Alternol抑制MGC803的生长并诱导G2M阻滞。与G2M停顿同时发生的是,Tyr-15上CDC2的磷酸化显着升高,这可以用Wee1的增加和CDC25C的减少来解释。 PLK1表达降低可能导致Wee1和CyclinB1蛋白水平升高。此外,凋亡似乎是继发于G2M停滞的,因为C2ase停滞后Caspase3升高,MMP降低和典型的凋亡形态改变。这些发现表明,Alternol可以通过诱导G2M阻滞和凋亡来抑制MGC803的生长。我们希望有一天Alternol可以用作先导化合物,我们的实验可能会为进一步研究提供一些线索。

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