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Trans-scirpusin A showed antitumor effects via autophagy activation and apoptosis induction of colorectal cancer cells

机译:反式神经鞘蛋白A通过自噬激活和诱导大肠癌细胞凋亡而显示出抗肿瘤作用

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摘要

Trans-Scirpusin A (TSA) is a resveratrol oligomer found in Borassus flabellifer L. We found that TSA inhibited the growth of colorectal cancer Her2/CT26 cells in vivo in mice. Although some cytotoxic T lymphocytes (CTLs) were induced against the tumor-associated antigen Her2, TSA treatment did not significantly increase the level of Her2-specific CTL response compared to that with vehicle treatment. However, there was a significant increase in the level of TNF-α mRNA in tumor tissue and Her2-specific Ab (antibody) production. More importantly, we found that TSA overcomes the tumor-associated immunosuppressive microenvironment by reducing the number of CD25+FoxP3+ regulatory T cells and myeloid-derived suppressor cells (MDSCs). We detected the induction of autophagy in TSA-treated Her2/CT26 cells, based on the increased level of the mammalian autophagy protein LC3 puncta, and increased conversion of LC3-I to LC3-II. Further, TSA induced 5' AMP-activated protein kinase (p-AMPK) (T172) and inhibited mammalian target of rapamycin complex 1 (mTORC1) activity as estimated by phosphorylated ribosomal protein S6 kinase beta-1 (p-p70S6K) levels, thereby suggesting that TSA-mediated AMPK activation and inhibition of mTORC1 pathway might be associated with autophagy induction. TSA also induced apoptosis of Her2/CT26 cells, as inferred by the increased sub-G1 mitotic phases in these cells, Annexin V/PI-double positive results, and TUNEL-positive cells. Finally, we found that the combined treatment of mice with docetaxel and TSA successfully inhibited tumor growth to a greater extent than docetaxel alone. Therefore, we propose the use of TSA for supplementary anticancer therapy to support anti-neoplastic drugs, such as docetaxel, by inducing apoptosis in cancer cells and resulting in the induction of neighborhood anti-cancer immunity.
机译:反式-Scirpusin A(TSA)是在黄牛(Borassus flabellifer L)中发现的一种白藜芦醇低聚物。我们发现TSA在小鼠体内可抑制结直肠癌Her2 / CT26细胞的生长。尽管针对肿瘤相关抗原Her2诱导了一些细胞毒性T淋巴细胞(CTL),但与媒介物处理相比,TSA处理并未显着提高Her2特异性CTL反应水平。但是,肿瘤组织中TNF-αmRNA的水平和Her2特异性抗体(抗体)的产生显着增加。更重要的是,我们发现TSA可以通过减少CD25 + FoxP3 + 调节性T细胞和髓样来源的抑制细胞(MDSCs)的数量来克服肿瘤相关的免疫抑制微环境。我们基于哺乳动物自噬蛋白LC3点的水平升高以及LC3-I向LC3-II转化率的升高,检测了TSA处理的Her2 / CT26细胞中自噬的诱导。此外,TSA诱导5'AMP活化的蛋白激酶(p-AMPK)(T172),并抑制哺乳动物雷帕霉素复合物1的靶标(mTORC1)活性,这是通过磷酸化核糖体蛋白S6激酶beta-1(p-p70S6K)的水平来估算的,从而提示TSA介导的AMPK激活和mTORC1途径的抑制可能与自噬诱导有关。如这些细胞中亚G1有丝分裂期增加,膜联蛋白V / PI双阳性结果和TUNEL阳性细胞所推断,TSA还诱导了Her2 / CT26细胞的凋亡。最后,我们发现多西他赛和TSA联合治疗小鼠比单用多西他赛成功抑制肿瘤的程度更大。因此,我们提出将TSA用于辅助抗癌治疗,以通过诱导癌细胞中的凋亡并诱导邻域抗癌免疫性来支持抗肿瘤药物,例如多西他赛。

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