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Beneficial bacteria stimulate host immune cells to counteract dietary and genetic predisposition to mammary cancer in mice

机译:有益细菌刺激宿主免疫细胞抵消小鼠乳腺癌的饮食和遗传易感性

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摘要

Recent studies suggest health benefits including protection from cancer after eating fermented foods such as probiotic yogurt, though the mechanisms are not well understood. Here we tested mechanistic hypotheses using two different animal models: the first model studied development of mammary cancer when eating a Westernized diet, and the second studied animals with a genetic predilection to breast cancer. For the first model, outbred Swiss mice were fed a Westernized chow putting them at increased risk for development of mammary tumors. In this Westernized diet model, mammary carcinogenesis was inhibited by routine exposure to Lactobacillus reuteri ATCC-PTA-6475 in drinking water. The second model was FVB strain erbB2 (HER2) mutant mice, genetically susceptible to mammary tumors mimicking breast cancers in humans, being fed a regular (non-Westernized) chow diet. We found that oral supplement with these purified lactic acid bacteria alone was sufficient to inhibit features of mammary neoplasia in both models. The protective mechanism was determined to be microbially-triggered CD4+CD25+ lymphocytes. When isolated and transplanted into other subjects, these L. reuteri-stimulated lymphocytes were sufficient to convey transplantable anti-cancer protection in the cell recipient animals. These data demonstrate that host immune responses to environmental microbes significantly impact and inhibit cancer progression in distal tissues such as mammary glands, even in genetically susceptible mice. This leads us to conclude that consuming fermentative microbes such as L. reuteri may offer a tractable public health approach to help counteract the accumulated dietary and genetic carcinogenic events integral in the Westernized diet and lifestyle.
机译:最近的研究表明,健康的益处包括食用发酵食品(如益生菌酸奶)后免受癌症侵害,尽管其作用机理尚不清楚。在这里,我们使用两种不同的动物模型测试了机械假说:第一个模型研究了进食西式饮食时乳癌的发展,第二个模型研究了具有乳腺癌遗传易感性的动物。对于第一个模型,给近交的瑞士小鼠喂食了一种西式食物,使它们处于患乳腺肿瘤的风险增加。在这种西式饮食模型中,乳汁的致癌作用被饮用水中例行的路透乳杆菌ATCC-PTA-6475常规暴露抑制。第二种模型是FVB菌株erbB2(HER2)突变小鼠,在基因上易受模拟人类乳腺癌的乳腺肿瘤的影响,接受常规饮食(非西餐)。我们发现,仅使用这些纯化的乳酸菌的口服补充剂就足以抑制两个模型中的乳腺肿瘤的特征。确定的保护机制是微生物触发的CD4 + CD25 +淋巴细胞。当分离并移植到其他受试者中时,这些罗伊氏乳杆菌刺激的淋巴细胞足以在细胞受体动物中传达可移植的抗癌保护。这些数据表明,宿主对环境微生物的免疫反应会显着影响并抑制远端组织(如乳腺)中的癌症进展,甚至在遗传易感的小鼠中也是如此。这使我们得出结论,食用诸如罗伊氏乳杆菌的发酵微生物可能提供一种易于处理的公共卫生方法,以帮助抵消西式饮食和生活方式中不可或缺的累积饮食和遗传致癌事件。

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