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Dietary selenium protects adiponectin knockout mice against chronic inflammation induced colon cancer

机译:膳食硒保护脂联蛋白敲除小鼠反对慢性炎症诱导的结肠癌

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摘要

Selenium (Se) is an essential dietary micronutrient that has been examined for protection against different types of cancers including colon cancer. Despite an established inverse association between Se and chronic inflammation induced colon cancer (CICC), the mechanistic understanding of Se's protective effects requires additional in-vivo studies using preclinical animal models of CICC. Adiponectin (APN) is an adipocytokine that is protective against CICC as well. However, its role in the anti-mutagenic effects of the Se-diet remains unknown. To address this knowledge gap, here we examine the ability of dietary Se in reducing CICC in APN knockout mice (KO) and its wild-type C57BL/6. CICC was induced with the colon cancer agent 1,2 dimethyl hydrazine (DMH) along with dextran sodium sulfate (DSS). Se-enhanced diet increased selenoproteins, Gpx-1 and Gpx-2, in the colon tissues, thereby reducing oxidative stress. Se-mediated reduction of CICC was evident from the histopathological studies in both mouse models. In both mice, reduction in inflammation and tumorigenesis associated well with reduced p65 phosphorylation and elevated 53 phosphorylation. Finally, we show that in both models Se-administration promotes goblet cell differentiation with a concomitant increase in the levels of associated proteins, Muc-2 and Math-1. Our findings suggest that Se's protection against CICC involves both colonic epithelial protection and anti-tumor effects that are independent of APN.
机译:硒(SE)是一种基本的膳食微量营养素,已被检查用于防止不同类型的癌症,包括结肠癌。尽管Se和慢性炎症诱导的结肠癌(CICC)之间存在成熟的反相关联,但是对SE的保护作用的机械理解需要使用CICC的临床前动物模型需要额外的体内研究。脂联素(APN)是一种对CICC保护的脂肪细胞因子。然而,它在Se-Diet的抗诱变效应中的作用仍然是未知的。为了解决这一知识差距,在这里,我们在此检查膳食SE在APN敲除小鼠(KO)中的CICC及其野生型C57BL / 6中的能力。 CICC与结肠癌剂1,2二甲基肼(DMH)与葡聚糖硫酸钠(DSS)诱导。 Se-Enhoppation饮食在结肠组织中增加硒蛋白,GPX-1和GPX-2,从而减少氧化应激。 Se介导的CICC的减少是从两种小鼠模型中的组织病理学研究中明显的。在小鼠中,用降低的P65磷酸化和升高的53次磷酸化减少炎症和肿瘤瘤。最后,我们表明,在两种模型中,Se-施用促进了携带蛋白,MUC-2和MATH-1水平的伴随增加的脚卵细胞分化。我们的研究结果表明,SE对CICC的保护涉及与APN无关的结肠上皮保护和抗肿瘤效应。

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