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Fucoidan Derived from Fucus vesiculosus Inhibits the Development of Human Ovarian Cancer via the Disturbance of Calcium Homeostasis, Endoplasmic Reticulum Stress, and Angiogenesis

机译:源自病变植物的岩藻糖果植物通过钙稳态,内质网胁迫和血管生成的干扰抑制人卵巢癌的发展

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摘要

Marine organisms are sources of several natural compounds with potential clinical use. However, only a few marine-based pharmaceuticals have been approved for use due to limited knowledge on their biological activities. Here, we identified the functional role of fucoidan extracted from Fucus vesiculosus on ovarian cancer. Fucoidan increased the death of ES-2 and OV-90 cells, through a reduction in proliferation, cell cycle arrest, releases of cytochrome c, reactive oxygen species (ROS) generation, and endoplasmic reticulum (ER) stress. Additionally, fucoidan increased the concentration of cytosolic and mitochondrial calcium in both cells. The decrease of cell proliferation was controlled by the inactivation of PI3K and MAPK signaling cascades in ES-2 and OV-90 cells. In a toxicity assay with normal zebrafish larvae, fucoidan did not induce toxicity, cardiotoxicity, development, kinesis, and apoptosis at different concentrations. However, it disrupted tumor formation and vascular development in a zebrafish xenograft model and angiogenesis transgenic (Tg, fli1-eGFP) model, respectively. Collectively, the results indicate that fucoidan may be a novel pharmaceutical for the management of human ovarian cancer.
机译:海洋生物是几种具有潜在临床用途的天然化合物的来源。然而,由于对其生物活动的知识有限,只有几个海洋的药品被批准供使用。在这里,我们鉴定了Fucopon植物从卵巢癌中提取的岩藻糖蛋白植物的功能作用。 Fucoidan通过降低增殖,细胞周期骤停,细胞色素C,活性氧物质(ROS)产生和内质网(ER)应力,增加ES-2和OV-90细胞的死亡。另外,岩藻糖糖素增加了两种细胞中细胞溶质和线粒体钙的浓度。通过ES-2和OV-90细胞中的PI3K和MAPK信号传导级联的灭活来控制细胞增殖的降低。在含有正常斑马鱼幼虫的毒性测定中,FUCOINONAN没有诱导不同浓度的毒性,心脏毒性,发育,Kinesis和细胞凋亡。然而,它分别在斑马鱼异种移植模型和血管生成转基因(TG,FLI1-EGFP)模型中破坏了肿瘤形成和血管发育。总的来说,结果表明,Fucoinoinan可以是用于管理人类卵巢癌的新药。

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