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首页> 外文期刊>DNA and Cell Biology >A Comparative Study on Anti-Invasion, Antimigration, and Antiadhesion Effects of the Bioactive Carotenoids of Saffron on 4T1 Breast Cancer Cells Through Their Effects on Wnt/-Catenin Pathway Genes
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A Comparative Study on Anti-Invasion, Antimigration, and Antiadhesion Effects of the Bioactive Carotenoids of Saffron on 4T1 Breast Cancer Cells Through Their Effects on Wnt/-Catenin Pathway Genes

机译:藏红花生物活性胡萝卜素对4T1乳腺癌细胞生物活性类胡萝卜素的抗侵袭,抗抗体和抗炎作用的比较研究通过它们对Wnt / -catenin途径基因的影响

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摘要

Crocus sativus L. (saffron) has been used as a spice and as a medicine for the past four thousand years. Recently, saffron has been well documented to possess anticancer effects on primary tumors. However studies of its antimetastatic potential are lacking. The present study is a comparative investigation of the antimetastatic effects of saffron carotenoids, crocin and crocetin, on triple negative metastatic breast cancer cells (4T1) and their effects on the Wnt/-catenin pathway. It was found that treatment of 4T1 cells with crocin and crocetin resulted in the inhibition of viability in a dose-dependent manner. Scratch and Transwell chamber assays showed that the nontoxic doses of crocin and crocetin significantly inhibited migration, cell mobility, and invasion, also attenuating adhesion to extracellular matrix. Crocin downregulated mRNA expression of FZD7, NEDD9, VIM, and VEGF- genes and upregulated E-CAD. Crocin and crocetin exhibited comparable anti-invasion properties on 4T1 cells. However, crocin and crocetin exerted more pronounced antimigration and antiadhesion potency, respectively. Furthermore, we showed that the antimetastatic effects of crocin can occur through interfering with the Wnt/-catenin pathway.
机译:藏红花(藏红花)在过去的四千年里被用作香料和药物。最近,藏红花已被充分证明对原发性肿瘤具有抗癌作用。然而,对其抗转移潜能的研究尚不多见。本研究比较了藏红花类胡萝卜素、藏红花素和藏红花酸对三阴性转移性乳腺癌细胞(4T1)的抗转移作用及其对Wnt/-catenin途径的影响。研究发现,用番红花苷和番红花酸处理4T1细胞后,细胞活力受到抑制,且呈剂量依赖性。Scratch和Transwell小室实验表明,无毒剂量的西红花苷和西红花酸显著抑制迁移、细胞迁移和侵袭,也降低了与细胞外基质的粘附。藏红花素下调FZD7、NEDD9、VIM和VEGF基因的mRNA表达,上调E-CAD。西红花苷和西红花酸在4T1细胞上表现出类似的抗侵袭特性。然而,藏红花素和藏红花酸分别具有更显著的抗迁移和抗粘附效力。此外,我们还表明,藏红花苷的抗转移作用可以通过干扰Wnt/-catenin途径实现。

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