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Reactive Oxygen Species Generation in Human Cells by a Novel Magnetic Resonance Imaging Contrast Agent

机译:新型磁共振成像造影剂在人体细胞中产生活性氧

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摘要

The novel positive-contrast magnetic resonance imaging (MRI) marker C4 consists of an aqueous solution of cobalt chloride (CoCl2) complexed with the chelator N-acetylcysteine (NAC). We evaluated whether the presence of C4 or its components would produce reactive oxygen species (ROS, including hydroxyl, peroxyl, or other reactive oxygen species) in cultured cells. Human cancer or normal cells were incubated with 1% (w/v) CoCl2·6H2O or 2% NAC or a combination of both (1% CoCl2·6H2O : 2% NAC in an aqueous solution, abbreviated as Co : NAC) in the presence or absence of H2O2. Intracellular ROS levels were measured and quantified by change in relative fluorescence units. Student's t-tests were used. In all cell lines exposed to 1000 μM H2O2, the Co : NAC led to ≥94.7% suppression of ROS at 5 minutes and completely suppressed ROS at 60 and 90 minutes; NAC suppressed ROS by ≥76.6% at 5 minutes and by ≥94.5% at 90 minutes; and CoCl2·6H2O suppressed ROS by ≥37.2% at 30 minutes and by ≥48.6% at 90 minutes. These results demonstrate that neither Co : NAC nor its components generated ROS; rather, they suppressed ROS production in cultured cells, suggesting that C4 would not enhance ROS production in clinical use.
机译:新型的正对比度磁共振成像(MRI)标记C4由与螯合剂N-乙酰半胱氨酸(NAC)络合的氯化钴(CoCl2)水溶液组成。我们评估了C4或其成分的存在是否会在培养细胞中产生活性氧(ROS,包括羟基,过氧或其他活性氧)。将人类癌症或正常细胞与1%(w / v)CoCl2·6H2O或2%NAC或两者的组合(水溶液中的1%CoCl2·6H2O3:2%NAC,缩写为Co:NAC)一起孵育。是否存在过氧化氢。通过相对荧光单位的变化来测量和定量细胞内ROS水平。使用学生的t检验。在所有暴露于1000μmH2O2的细胞系中,Co:NAC在5分钟时抑制ROS≥94.7%,并在60分钟和90分钟时完全抑制ROS。 NAC在5分钟时抑制ROS≥76.6%,在90分钟时抑制≥94.5%; CoCl2·6H2O在30分钟时抑制ROS≥37.2%,在90分钟时抑制≥48.6%。这些结果表明,Co:NAC或其组分均不产生ROS。相反,它们抑制了培养细胞中ROS的产生,表明C4在临床使用中不会提高ROS的产生。

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