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Gut microbiota accelerate tumor growth via c-jun and STAT3 phosphorylation in APCMin/+ mice

机译:肠道菌群通过c-jun和STAT3磷酸化促进APC Min / + 小鼠的肿瘤生长

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摘要

Chronic inflammation is increasingly recognized as a major contributor of human colorectal cancer (CRC). While gut microbiota can trigger inflammation in the intestinal tract, the precise signaling pathways through which host cells respond to inflammatory bacterial stimulation are unclear. Here, we show that gut microbiota enhances intestinal tumor load in the APCMin/+ mouse model of CRC. Furthermore, systemic anemia occurs coincident with rapid tumor growth, suggesting a role for intestinal barrier damage and erythropoiesis-stimulating mitogens. Short-term stimulation assays of murine colonic tumor cells reveal that lipopolysaccharide, a microbial cell wall component, can accelerate cell growth via a c-Jun/JNK activation pathway. Colonic tumors are also infiltrated by CD11b+ myeloid cells expressing high levels of phospho-STAT3 (p-Tyr705). Our results implicate the role of gut microbiota, through triggering the c-Jun/JNK and STAT3 signaling pathways in combination with anemia, in the acceleration of tumor growth in APCMin/+ mice.
机译:慢性炎症日益被认为是人类大肠癌(CRC)的主要病因。虽然肠道菌群可以引发肠道炎症,但宿主细胞对炎症细菌刺激反应的确切信号途径尚不清楚。在这里,我们显示肠道菌群在CRC的APC Min / + 小鼠模型中增强了肠道肿瘤负荷。此外,全身性贫血与肿瘤的快速生长同时发生,提示其对肠屏障损害和促红细胞生成的促分裂原的作用。小鼠结肠肿瘤细胞的短期刺激试验表明,脂多糖(一种微生物细胞壁成分)可以通过c-Jun / JNK激活途径加速细胞生长。表达高水平磷酸化STAT3(p-Tyr705)的CD11b +髓样细胞也浸润了结肠肿瘤。我们的研究结果提示肠道菌群通过触发c-Jun / JNK和STAT3信号通路与贫血相结合,在加速APC Min / + 小鼠肿瘤生长中的作用。

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