硫化舒林达诱导共培养激活乳腺癌细胞凋亡:ras信号通路介导的机制

N. A. Thabet
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引用次数: 0

摘要

巨噬细胞-上皮相互作用在乳腺癌的进展和转移中起着至关重要的作用。肿瘤相关巨噬细胞(Tumor associated macrophages, tam)为肿瘤微环境提供多种炎症介质,刺激参与癌细胞生存和生长的多种信号通路,因此成为化疗药物的一个有吸引力的靶点。Sulindac Sulfide是一种非甾体抗炎药,其在预防肿瘤发生和发展方面的抗癌作用已被证实适用于多种类型的癌症。本研究的目的是检测U937人单核细胞培养基(U937- cm)和Sulindac Sulfide对MCF-7细胞存活、致癌表达和凋亡的影响。结果表明,U937-CM通过显著增加Ras表达,从而上调抗凋亡蛋白Bcl-2,下调抑瘤因子Par-4,从而增强MCF-7的存活和增殖。Sulindac硫化处理通过抑制Ras表达及其下游信号传导抑制诱导细胞的生长。Ras的抑制伴随着凋亡机制的激活,通过下调Bcl-2和上调Par-4导致caspase-3的显著激活。目前的数据表明,Sulindac Sulfide成功地抑制了tam对乳腺癌细胞的旁分泌作用,提示其在乳腺癌治疗中具有良好的作用。
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SULINDAC SULFIDE INDUCES APOPTOSIS OF BREAST CANCER CELLS ACTIVATED BY CO-CULTURE MODEL: A MECHANISM MEDIATED BY RAS SIGNALING PATHWAY.
Macrophage–epithelial interactions play a crucial role in breast cancer progression and metastasis. Tumor associated macrophages (TAMs) provide the tumor microenvironment with multiple inflammatory mediators that stimulate several signaling pathways which participate in survival and growth of cancer cells, thus they have become an attractive target for chemotherapeutic agents. Sulindac Sulfide is one of NSAIDs and its anticancer activity in prevention of tumor incidence and progression has been documented in several types of cancer. The aim of this study was to test the effects of media conditioned by U937 human monocytes (U937-CM) as well as the effect of Sulindac Sulfide on the survival oncogenic expression and apoptosis of MCF-7 cells. The results showed that U937-CM enhanced MCF-7 survival and proliferation through significant increase in Ras expression which resulted in upregulation of anti-apoptotic protein Bcl-2 and down regulation of tumor suppressor Par-4. Sulindac Sulfide treatment inhibited the growth of induced cells by inhibition of Ras expression and its downstream signaling. Suppression of Ras is accompanied by activation of apoptotic machinery through down regulation of Bcl-2 and upregulation of Par-4 that resulted in significant activation of caspase-3.The current data demonstrate that Sulindac Sulfide succeeded in suppressing the paracrine effect of TAMs on breast cancer cells suggesting the promising role in breast cancer treatment.
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