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Does the ATSM-Cu(II) Biomarker Integrate into the Human Cellular Copper Cycle?

机译:ATSM-Cu(II)生物标记物是否整合到人类细胞铜循环中?

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Hypoxia is commonly encountered in the tumor microenvironment and drives proliferation, angiogenesis, and resistance to therapy. Imaging of hypoxia is important in many disease states in oncology, cardiology, and neurology. Finding clinically approved imaging biomarkers for hypoxia has proved challenging. Candidate biomarkers have shown low uptake into tumors and low signal to background ratios that adversely affect imaging quality. Copper complexes have been identified as potential biomarkers for hypoxia owing to their redox ability. Active uptake of copper complexes into cells could ensure selectivity and high sensitivity. We explored the reactivity and selectivity of the ATSM-Cu(II) biomarker to proteins that are involved in the copper cycle using electron paramagnetic resonance (EPR) spectroscopy and UV–vis measurements. We show that the affinity of the ATSM-Cu(II) complex to proteins in the copper cycle is low and the cell probably does not actively uptake ATSM-Cu(II).
机译:缺氧通常在肿瘤微环境中发生,并驱动增殖,血管生成和对治疗的抵抗力。缺氧的影像学在肿瘤,心脏病和神经病学的许多疾病状态中都很重要。寻找临床认可的低氧影像生物标志物已证明具有挑战性。候选生物标志物已显示出对肿瘤的低摄取以及对成像质量产生不利影响的低信噪比。铜配合物由于其氧化还原能力已被鉴定为缺氧的潜在生物标记。铜络合物向细胞中的主动摄取可以确保选择性和高灵敏度。我们使用电子顺磁共振(EPR)光谱和UV-vis测量技术探索了ATSM-Cu(II)生物标记物对参与铜循环的蛋白质的反应性和选择性。我们显示,ATSM-Cu(II)复合物对蛋白质在铜循环中的亲和力很低,并且细胞可能不会主动摄取ATSM-Cu(II)。

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