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Propofol inhibits pancreatic cancer progress under hypoxia via ADAM8

机译:Proofol通过Adam8抑制缺氧下的胰腺癌进展

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Background To investigate the potential anti-tumoral properties of propofol in pancreatic cancer and elucidate the underlying mechanisms. Methods The relative expression of ADAM metallopeptidase domain 8 (ADAM8) in response to hypoxia in Panc1 cells was analyzed by western blotting. The enzymatic activity was determined by fluorescence release from PEPDAB013 decomposition. Cell growth was measured via cell counting and cell viability was measured using CCK-8 kit. Cell migrative capacity was evaluated by transwell and adhesion assay. The relative abundance of angiogenesis-related markers including platelet-derived growth factor AA, angiogenin, endothelin-1 and vascular endothelial growth factor were determined by real-time polymerase chain reaction and western blotting. The anti-tumoral activity of propofol was investigated with Panc1-derived xenograft mice model. Results ADAM8 was significantly induced by hypoxia and efficiently inhibited by co-treatment with propofol. Propofol suppressed proliferation and compromised viability of Panc1 cells. In addition, the migrative capacity was greatly inhibited by propofol dosage. Comprehensive profiling of angiogenesis-related markers demonstrated that propofol remarkably suppressed neovascularization response in Panc1 cells under hypoxia. We further uncovered that propofol administration via subcutaneous injection delayed xenograft tumor progression. Conclusion Propofol specifically inhibited ADAM8 expression and activation in response to hypoxia in pancreatic cancer, and held great value for therapeutic effects.
机译:背景技术探讨胰腺癌中异丙酚的潜在抗肿瘤性质,阐明潜在机制。方法采用蛋白质印迹分析了ADAM金属肽酶结构域8(ADAM8)响应于PANC1细胞缺氧的相对表达。通过蛋白酶013分解的荧光释放测定酶活性。通过细胞计数测量细胞生长,使用CCK-8试剂盒测量细胞活力。通过Transwell和粘附测定评估细胞迁移能力。通过实时聚合酶链式反应和蛋白质印迹测定包括血小板衍生的生长因子AA,血管生成素,内皮素-1和血管内皮生长因子,包括血管生成相关标记物的相对丰度。用PANC1衍生的异种移植小鼠模型研究了异丙酚的抗肿瘤活性。结果Adam8被缺氧显着诱导,并通过用异丙酚共处理有效地抑制。异丙酚抑制了PanC1细胞的增殖和受损的活力。此外,通过异丙酚剂量大大抑制迁移能力。血管生成相关标志物的综合性谱证明了缺氧下PanC1细胞中的异丙酚显着抑制了新生血管反应。我们进一步揭示了通过皮下注射延迟异种移植肿瘤进展的异丙酚给药。结论异丙酚特异性抑制胰腺癌缺氧的表达和活化,对治疗效果的巨大价值。

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