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Chronic inflammation: is it the driver or is it paving the road for malignant transformation?

机译:慢性炎症:是驱动因素还是为恶性转化铺平了道路?

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摘要

Chronic inflammation in well-defined mouse models such as Giα2 knock out mouse has been shown to trigger formation and expansion of hypoxic niches and also leads to up regulation of NFĸB, offering cells which have adapted their genetic machinery to hypoxia a unique survival advantage. These adapted cells have been shown to acquire stem cell-like capabilities as shown by up regulation of stem cell markers. Such long lived cells become permanent residents in sub mucosa and acquire a malignant phenotype from long-term exposure to noxious environmental agents due to a barrier defect secondary to down regulation of barrier proteins such as Zo1 and Occludin. Indeed mitotic spindle disorientation in such mice has been proposed as another contributory factor to malignant transformation. Sterilization of bowel lumen of these mice through different techniques has prevented malignant transformation in the presence of chronic inflammation. These facts stand strongly against chronic inflammation as a true driver of carcinogenesis but clearly support its role in facilitating the emergence of the neoplastic clone.
机译:事实证明,在定义明确的小鼠模型(如Giα2敲除小鼠)中的慢性炎症会触发缺氧壁ni的形成和扩展,并导致NFĸB上调,从而为使其基因机制适应缺氧的细胞提供了独特的生存优势。这些适应的细胞已显示获得干细胞样能力,如干细胞标志物的上调所示。这样的长寿命细胞成为粘膜下层的永久居民,由于长期受有害环境因子(例如Zo1和Occludin)下调引起的屏障缺陷的影响,长期暴露于有害的环境试剂后会获得恶性表型。实际上,已经提出了这种小鼠中的有丝分裂纺锤体定向障碍是恶性转化的另一个促成因素。通过不同技术对这些小鼠的肠腔进行灭菌,可防止存在慢性炎症的恶性转化。这些事实强烈反对作为致癌作用的真正驱动因素的慢性炎症,但显然支持其在促进赘生物克隆出现中的作用。

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