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Oxygen supply maps for hypoxic microenvironment visualization in prostate cancer

机译:氧供应图用于低氧微环境可视化前列腺癌

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Background&58; Intratumoral hypoxia plays an important role with regard to tumor biology and susceptibility to radio. and chemotherapy. For further investigation of hypoxia.related changes, areas of certain hypoxia must be reliably detected within cancer tissues. Pimonidazole, a 2.nitroimindazole, accumulates in hypoxic tissue and can be easily visualized using immunohistochemistry. Materials and Methods&58; To improve detection of highly hypoxic versus normoxic areas in prostate cancer, immunoreactivity of pimonidazole and a combination of known hypoxia.related proteins was used to create computational oxygen supply maps of prostate cancer. Pimonidazole was intravenously administered before radical prostatectomy in n &61; 15 patients, using the da Vinci robot.assisted surgical system. Prostatectomy specimens were immediately transferred into buffered formaldehyde, fixed overnight, and completely embedded in paraffin. Pimonidazole accumulation and hypoxia.related protein expression were visualized by immunohistochemistry. Oxygen supply maps were created using the normalized information from pimonidazole and hypoxia.related proteins. Results&58; Based on pimonidazole staining and other hypoxia.related proteins (osteopontin, hypoxia.inducible factor 1.alpha, and glucose transporter member 1) oxygen supply maps in prostate cancer were created. Overall, oxygen supply maps consisting of information from all hypoxia.related proteins showed high correlation and mutual information to the golden standard of pimonidazole. Here, we describe an improved computer.based ex vivo model for an accurate detection of oxygen supply in human prostate cancer tissue. Conclusions&58; This platform can be used for precise colocalization of novel candidate hypoxia.related proteins in a representative number of prostate cancer cases, and improve issues of single marker correlations. Furthermore, this study provides a source for further in situ tests and biochemical investigations.
机译:背景&58;肿瘤内缺氧在肿瘤生物学和放射敏感性方面起着重要作用。和化学疗法。为了进一步研究与缺氧有关的变化,必须在癌症组织内可靠地检测出某些缺氧区域。吡莫尼唑是一种2.硝基咪唑,在缺氧组织中积累,可以使用免疫组织化学轻松观察。材料与方法&58;为了改善对前列腺癌中高氧血症和常氧血症区域的检测,吡莫硝唑的免疫反应性和已知的低氧相关蛋白的组合被用于创建前列腺癌的计算供氧图。根治性前列腺切除术前n&61静脉注射吡莫尼唑。使用达芬奇机器人辅助手术系统的15名患者。前列腺切除术标本立即转移到缓冲的甲醛中,固定过夜,并完全包埋在石蜡中。通过免疫组织化学观察吡莫尼唑的积累和缺氧相关蛋白的表达。使用来自pimonidazole和缺氧相关蛋白的标准化信息创建供氧图。结果&58;基于pimonidazole染色和其他缺氧相关蛋白(骨桥蛋白,缺氧诱导因子1.α和葡萄糖转运蛋白1),绘制了前列腺癌的供氧图。总体而言,由所有缺氧相关蛋白信息组成的供氧图显示了与吡莫硝唑的黄金标准高度相关和相互信息。在这里,我们描述了一种改进的基于计算机的离体模型,用于精确检测人前列腺癌组织中的氧气供应。结论&58;该平台可用于在代表性前列腺癌病例中精确定位新型候选缺氧相关蛋白,并改善单个标记物相关性的问题。此外,该研究为进一步的原位测试和生化研究提供了来源。

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