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Anticancer Activity of a Broccoli Derivative, Sulforaphane, in Barrett Adenocarcinoma: Potential Use in Chemoprevention and as Adjuvant in Chemotherapy1

机译:西兰花衍生物萝卜硫素在巴雷特腺癌中的抗癌活性:在化学预防中的潜在用途以及在化学治疗中的佐剂1

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摘要

INTRODUCTION: The incidence of Barrett esophageal adenocarcinoma (BEAC) has been increasing at an alarming rate in western countries. In this study, we have evaluated the therapeutic potential of sulforaphane (SFN), an antioxidant derived from broccoli, in BEAC. METHODS: BEAC cells were treated with SFN, alone or in combination with chemotherapeutic, paclitaxel, or telomerase-inhibiting agents (MST-312, GRN163L), and live cell number determined at various time points. The effect on drug resistance/chemosensitivity was evaluated by rhodamine efflux assay. Apoptosis was detected by annexin V labeling and Western blot analysis of poly(ADP-ribose) polymerase cleavage. Effects on genes implicated in cell cycle and apoptosis were determined by Western blot analyses. To evaluate the efficacy in vivo, BEAC cells were injected subcutaneously in severe combined immunodeficient mice, and after the appearance of palpable tumors, mice were treated with SFN. RESULTS: SFN induced both time- and dose-dependent decline in cell survival, cell cycle arrest, and apoptosis. The treatment with SFN also suppressed the expression of multidrug resistance protein, reduced drug efflux, and increased anticancer activity of other antiproliferative agents including paclitaxel. A significant reduction in tumor volume was also observed by SFN in a subcutaneous tumor model of BEAC. Anticancer activity could be attributed to the induction of caspase 8 and p21 and down-regulation of hsp90, a molecular chaperon required for activity of several proliferation-associated proteins. CONCLUSIONS: These data indicate that a natural product with antioxidant properties from broccoli has great potential to be used in chemoprevention and treatment of BEAC.
机译:简介:在西方国家,巴雷特食管腺癌(BEAC)的发病率一直以惊人的速度增长。在这项研究中,我们评估了西兰花中抗氧化剂萝卜硫烷(SFN)的治疗潜力。方法:单独或与化疗药物,紫杉醇或端粒酶抑制剂(MST-312,GRN163L)联合使用SFN处理BEAC细胞,并在不同时间点测定活细胞数。通过若丹明外排试验评估对药物耐药性/化学敏感性的影响。通过膜联蛋白V标记和聚(ADP-核糖)聚合酶裂解的蛋白质印迹分析检测凋亡。通过蛋白质印迹分析确定对涉及细胞周期和凋亡的基因的影响。为了评估体内功效,将BEAC细胞皮下注射入严重的联合免疫缺陷小鼠中,并在出现明显的肿瘤后,用SFN处理小鼠。结果:SFN诱导了细胞存活,细胞周期停滞和凋亡的时间和剂量依赖性下降。 SFN的治疗还抑制了多药耐药蛋白的表达,减少了药物外排,并提高了其他抗增殖剂(包括紫杉醇)的抗癌活性。通过SFN在BEAC的皮下肿瘤模型中也观察到肿瘤体积的显着减少。抗癌活性可能归因于caspase 8和p21的诱导以及hsp90的下调,hsp90是几种与增殖相关的蛋白的活性所必需的分子伴侣。结论:这些数据表明西兰花具有抗氧化性能的天然产品具有巨大的潜力,可用于化学预防和治疗BEAC。

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