首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Arsenic promotes the COX2/PGE2–SOX2 COX2/PGE2–SOX2 axis to increase the malignant stemness properties of urothelial cells
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Arsenic promotes the COX2/PGE2–SOX2 COX2/PGE2–SOX2 axis to increase the malignant stemness properties of urothelial cells

机译:砷促进COX2 / PGE2-SOX2 COX2 / PGE2-SOX2轴以增加尿液细胞的恶性肿瘤性能

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摘要

Chronic arsenic exposure is associated with the development of urothelial carcinoma of the bladder (UCB). To elucidate the contribution of arsenic exposure to urothelial cancer stem cell (CSC) generation, we established an in vitro stepwise malignant model transformed by chronically exposing human urothelial cells to arsenic. Using this model, we found that chronic arsenic exposure endows urothelial cells with malignant stemness properties including increased expression of stemness‐related factors such as SOX2, sphere formation, self‐renewal, invasion and chemoresistance. SOX2 was gradually and irreversibly overexpressed in line with acquired sphere‐forming and self‐renewal abilities. Following gene set enrichment analyses of arsenic‐exposed and arsenic‐unexposed cells, we found COX2 as an enriched gene for oncogenic signature. Mechanistically, arsenic‐induced COX2/PGE2 increases SOX2 expression that eventually promotes malignant stem cell generation and repopulation. In urine samples from 90 subjects exposed to arsenic and 91 control subjects, we found a significant linear correlation between SOX2 and COX2 expression and the potential of SOX2 and COX2 expression as urinary markers to detect subjects exposed to arsenic. Furthermore, the combination marker yielded a high sensitivity for UCB detection in a separate cohort. Finally, our in vitro model exhibits basal‐type molecular features and dual inhibition of EGFR and COX2 attenuated stem cell enrichment more efficiently than an EGFR inhibitor alone. In conclusion, the COX2/PGE2‐SOX2 axis promotes arsenic‐induced malignant stem cell transformation. In addition, our findings indicate the possible use of SOX2 and COX2 expression as urinary markers for the risk stratification and detection of UCB.
机译:慢性砷暴露与膀胱尿路上皮癌(UCB)的发展有关。为了阐明砷暴露于尿液癌干细胞(CSC)的产生的贡献,我们通过长期暴露于砷的体外逐步恶性模型进行了转化为砷。使用该模型,我们发现慢性砷暴露赋予尿液细胞具有恶性茎,包括茎与茎相关因子的表达增加,例如SOX2,球形形成,自我更新,侵袭和化学性。 SOX2逐渐和不可逆转地过表达,符合获得的球形形成和自我更新能力。在基因设定砷暴露和未曝光细胞的富集分析之后,我们发现COX2作为致癌签名的富集基因。机械地,砷诱导的COX2 / PGE2增加了SOX2表达,最终促进恶性干细胞产生和重新掺杂。在暴露于砷和91个对照对象的90个受试者的尿液中,我们发现SOx2和COX2表达与SOX2和COX2表达为尿标记物的显着线性相关性,以检测暴露于砷的受试者。此外,组合标记物在单独的队列中对UCB检测产生高灵敏度。最后,我们的体外模型表现出基础型分子特征和EGFR和COX2的双重抑制比单独的EGFR抑制剂更有效地减毒干细胞富集。总之,COX2 / PGE2-SOX2轴促进砷诱导的恶性干细胞转化。此外,我们的研究结果表明SOX2和COX2表达作为UCB的风险分层和检测的尿标志物。

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