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芳基烃受体诱导的肾上腺髓质素介导香烟烟雾在人类和小鼠中的致癌性。

Aryl hydrocarbon receptor-induced adrenomedullin mediates cigarette smoke carcinogenicity in humans and mice.

机构信息

Angiogenesis Core Facility, Radiation Oncology Branch, Radiation Oncology Branch, Surgery Branch, National Cancer Institute, NIH, Bethesda, Maryland 21702-1201, USA.

出版信息

Cancer Res. 2012 Nov 15;72(22):5790-800. doi: 10.1158/0008-5472.CAN-12-0818. Epub 2012 Sep 19.

Abstract

Cigarette smoking (CS) is a leading cause of death worldwide. The aryl hydrocarbon receptor (AHR) is partially responsible for tobacco-induced carcinogenesis although the underlying mechanisms involving early effector genes have yet to be determined. Here, we report that adrenomedullin (ADM) significantly contributes to the carcinogenicity of tobacco-activated AHR. CS and AHR activating ligands induced ADM in vitro and in vivo but not in AHR-deficient fibroblasts and mice. Ectopic transfection of AHR rescued ADM expression in AHR(-/-) fibroblasts whereas AHR blockage with siRNA in wild type cells significantly decreased ADM expression. AHR regulates ADM expression through two intronic xenobiotic response elements located close to the start codon in the ADM gene. Using tissue microarrays we showed that ADM and AHR were coupregulated in lung tumor biopsies from smoker patients. Microarray meta-analysis of 304 independent microarray experiments showed that ADM is elevated in smokers and smokers with cancer. In addition, ADM coassociated with a subset of AHR responsive genes and efficiently differentiated patients with lung cancer from nonsmokers. In a novel preclinical model of CS-induced tumor progression, host exposure to CS extracts significantly elevated tumor ADM although systemic treatment with the ADM antagonist NSC16311 efficiently blocked tobacco-induced tumor growth. In conclusion, ADM significantly contributes the carcinogenic effect of AHR and tobacco combustion products. We suggest that therapeutics targeting the AHR/ADM axis may be of clinical relevance in the treatment of tobacco-induced pulmonary malignancies.

摘要

吸烟(CS)是全球范围内主要的死亡原因之一。芳香烃受体(AHR)部分负责烟草诱导的致癌作用,尽管涉及早期效应基因的潜在机制尚未确定。在这里,我们报告肾上腺髓质素(ADM)对烟草激活的 AHR 的致癌作用有显著贡献。CS 和 AHR 激活配体在体外和体内诱导 ADM,但在缺乏 AHR 的成纤维细胞和小鼠中则没有。AHR 在 AHR(-/-)成纤维细胞中转染恢复 ADM 表达,而在野生型细胞中用 siRNA 阻断 AHR 则显著降低 ADM 表达。AHR 通过位于 ADM 基因起始密码子附近的两个内含子外源性反应元件调节 ADM 表达。使用组织微阵列,我们表明 ADM 和 AHR 在吸烟患者的肺肿瘤活检中共同上调。304 个独立微阵列实验的微阵列荟萃分析显示,ADM 在吸烟者和吸烟者中升高,吸烟者患有癌症。此外,ADM 与一组 AHR 响应基因共同相关,并且能够有效地将肺癌患者与非吸烟者区分开来。在 CS 诱导肿瘤进展的新型临床前模型中,宿主暴露于 CS 提取物显著增加了肿瘤 ADM,尽管全身给予 ADM 拮抗剂 NSC16311 可有效阻断烟草诱导的肿瘤生长。总之,ADM 显著促进了 AHR 和烟草燃烧产物的致癌作用。我们认为,针对 AHR/ADM 轴的治疗方法可能在治疗烟草诱导的肺部恶性肿瘤方面具有临床相关性。

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