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首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Zinc deficiency activates S100A8 inflammation in the absence of COX-2 and promotes murine oral-esophageal tumor progression.
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Zinc deficiency activates S100A8 inflammation in the absence of COX-2 and promotes murine oral-esophageal tumor progression.

机译:缺锌会在没有COX-2的情况下激活S100A8炎症,并促进鼠口腔食管肿瘤的进展。

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Zinc (Zn)-deficiency (ZD) is implicated in the pathogenesis of human oral-esophageal cancers. Previously, we showed that in ZD mice genetic deletion of cyclooxygenase-2 (Cox-2) enhances N-nitrosomethylbenzylamine-induced forestomach carcinogenesis. By contrast, Cox-2 deletion offers protection in Zn-sufficient (ZS) mice. We hypothesize that ZD activates pathways insensitive to COX-2 inhibition, thereby promoting carcinogenesis. This hypothesis is tested in a Cox-2(-/-) mouse tongue cancer model that mimics pharmacologic blockade of COX-2 by firstly examining transcriptome profiles of forestomach mucosa from Cox-2(-/-) and wild-type mice on a ZD vs. ZS diet, and secondly investigating the roles of identified markers in mouse forestomach/tongue preneoplasia and carcinomas. In Cox-2(-/-) mice exposed to the tongue carcinogen 4-nitroquinoline 1-oxide, dietary ZD elicited tongue/esophagus/forestomach carcinomas that were prevented by ZS. The precancerous ZD:Cox-2(-/-) vs. ZS:Cox-2(-/-) forestomach had an inflammatory signature with upregulation of the proinflammation genes S100a8 and S100a9. Bioinformatics analysis revealed overrepresentation of inflammation processes comprising S100a8/a9 and an nuclear factor (NF)-kappaB network with connectivity to S100A8. Immunohistochemistry revealed co-overexpression of S100A8, its heterodimeric partner S100A9, the receptor for advanced glycation end-products (RAGE), NF-kappaB p65, and cyclin D1, in ZD:Cox-2(-/-) forestomach/tongue preneoplasia and carcinomas, evidence for the activation of a RAGE-S100A8/A9 inflammatory pathway. Accumulation of p53 in these carcinomas indicated activation of additional inflammatory pathways. Zn-replenishment in ZD:Cox-2(-/-) mice reversed the inflammation and inhibited carcinogenesis. Thus, ZD activates alternative inflammation-associated cancer pathways that fuel tumor progression and bypass the antitumor effect of Cox-2 ablation. These findings have important clinical implications, as combination cancer therapy that includes Zn may improve efficacy.
机译:缺锌(ZD)与人类口腔食管癌的发病机制有关。以前,我们表明在ZD小鼠中,环氧合酶2(Cox-2)的基因缺失会增强N-亚硝基甲基苄胺诱导的前胃癌致癌作用。相比之下,Cox-2缺失在锌充足(ZS)小鼠中提供保护。我们假设ZD激活了对COX-2抑制不敏感的途径,从而促进了癌变。该假设在Cox-2(-/-)小鼠舌头癌模型中进行了测试,该模型通过首先检查Cox-2(-/-)和野生型小鼠的前胃粘膜的转录组谱,模拟了COX-2的药理学阻断作用。 ZD与ZS饮食之间的关系,其次调查了已鉴定标志物在小鼠前胃/舌苔前脑膜瘤和癌中的作用。在暴露于舌致癌物4-nitroquinoline 1-oxide的Cox-2(-/-)小鼠中,饮食性ZD引发了由ZS预防的舌/食道/前胃癌。癌前的ZD:Cox-2(-/-)与ZS:Cox-2(-/-)前胃病具有炎性信号,并上调了促炎基因S100a8和S100a9。生物信息学分析显示,炎症过程的过度表现包括S100a8 / a9和与S100A8具有连通性的核因子(NF)-kappaB网络。免疫组织化学揭示了S100A8,其异二聚体伴侣S100A9,晚期糖基化终产物(RAGE),NF-κBp65和细胞周期蛋白D1的共表达在ZD:Cox-2(-/-)前胃病/舌癌性前肾病和癌,RAGE-S100A8 / A9炎症途径活化的证据。在这些癌中p53的积累表明其他炎症途径的激活。 ZD:Cox-2(-/-)小鼠体内的锌补充可逆转炎症并抑制致癌作用。因此,ZD激活了替代性的与炎症相关的癌症途径,从而促进了肿瘤的进展并绕开了Cox-2消融的抗肿瘤作用。这些发现具有重要的临床意义,因为包括锌在内的联合癌症治疗可能会提高疗效。

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