氢奎尼丁通过抑制细胞周期和刺激细胞凋亡在乳腺癌和卵巢癌细胞中显示出显著的抗癌活性。

Mervenur Yavuz, Betül Şahin, Ahmet Tarık Baykal, Turan Demircan
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引用次数: 0

摘要

乳腺癌和卵巢癌是女性最常诊断的癌症。考虑到这些癌症的侵袭性和目前治疗的有限益处,寻找一种有效的抗癌化合物仍然是当务之急。氢奎尼丁(HQ)是一种天然生物碱,用于治疗心律失常和Brugada综合征。作为离子通道阻滞剂,HQ通过改变离子梯度和膜电位来发挥其活性。考虑到越来越多的证据表明离子通道阻滞剂具有抗肿瘤潜力,我们被提示测试HQ对乳腺癌和卵巢癌的影响。用MCF-7和SKOV-3细胞株检测HQ对细胞存活、克隆原性、迁移性、致瘤性、增殖和凋亡的影响。蛋白组学分析了黄芪多糖在这些细胞中具有显著的抗增殖和促凋亡作用的分子基础。值得注意的是,hq处理的MCF-7细胞中CDK1、PSMB5、PSMC2、MCM2、MCM7、YWHAH、YWHAQ和YWHAB蛋白含量较低,而hq处理的SKOV-3细胞中RRM2、PSMD2、PSME2、COX2、COX4l1和CDK6蛋白含量较低。通过深入分析,发现HQ处理后,几个细胞周期相关的过程被抑制,而凋亡和铁下垂通路被激活。在癌细胞中观察到的蛋白质组改变可能在细胞水平上为HQ的生长限制作用提供了机制解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Hydroquinidine displays a significant anticarcinogenic activity in breast and ovarian cancer cells via inhibiting cell-cycle and stimulating apoptosis.

Hydroquinidine displays a significant anticarcinogenic activity in breast and ovarian cancer cells via inhibiting cell-cycle and stimulating apoptosis.

Hydroquinidine displays a significant anticarcinogenic activity in breast and ovarian cancer cells via inhibiting cell-cycle and stimulating apoptosis.

Hydroquinidine displays a significant anticarcinogenic activity in breast and ovarian cancer cells via inhibiting cell-cycle and stimulating apoptosis.

Breast and ovarian cancers are women's most commonly diagnosed cancers. Seeking an efficient anticarcinogenic compound is still a top priority regarding the aggressiveness of these cancers and the limited benefit of current therapies. Hydroquinidine (HQ) is a natural alkaloid used in arrhythmia and Brugada syndrome. As an ion channel blocker, HQ exhibits its activity by altering ion gradient and membrane potential. Considering the growing evidence of ion channel blockers' antineoplastic potential, we were prompted to test HQ's effect on breast and ovarian cancers. MCF-7 and SKOV-3 cell lines were used to inspect how HQ acts on survival, clonogenicity, migration, tumorigenicity, proliferation, and apoptosis. The molecular basis for the remarkable antiproliferative and proapoptotic effect of HQ in these cells was dissected by proteomics. CDK1, PSMB5, PSMC2, MCM2, MCM7, YWHAH, YWHAQ, and YWHAB proteins in HQ-treated MCF-7 cells, and RRM2, PSMD2, PSME2, COX2, COX4l1, and CDK6 proteins in HQ-treated SKOV-3 cells were found as low-abundant, which was noteworthy. Based on the in-depth analysis, upon HQ treatment, several cell cycle-related processes were found as suppressed, whereas apoptosis and ferroptosis pathways were found to be activated. The observed proteome alteration in cancer cells may provide mechanistic explanations for the growth-limiting effects of HQ at the cellular level.

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