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Low-energy electrons transform the nimorazole molecule into a radiosensitiser

机译:低能电子将尼莫拉唑分子转化为放射增敏剂

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摘要

While matter is irradiated with highly-energetic particles, it may become chemically modified. Thereby, the reactions of free low-energy electrons (LEEs) formed as secondary particles play an important role. It is unknown to what degree and by which mechanism LEEs contribute to the action of electron-affinic radiosensitisers applied in radiotherapy of hypoxic tumours. Here we show that LEEs effectively cause the reduction of the radiosensitiser nimorazole via associative electron attachment with the cross-section exceeding most of known molecules. This supports the hypothesis that nimorazole is selectively cytotoxic to tumour cells due to reduction of the molecule as prerequisite for accumulation in the cell. In contrast, dissociative electron attachment, commonly believed to be the source of chemical activity of LEEs, represents only a minor reaction channel which is further suppressed upon hydration. Our results show that LEEs may strongly contribute to the radiosensitising effect of nimorazole via associative electron attachment.
机译:当物质被高能粒子照射时,它可能会发生化学修饰。因此,作为次级粒子形成的自由低能电子(LEE)的反应起着重要作用。尚不清楚LEE在何种程度上和通过何种机制对缺氧肿瘤放疗中应用的电子亲和性放射增敏剂的作用作出贡献。在这里,我们表明,LEES通过缔合电子附着有效地引起了放射增敏剂尼莫拉唑的减少,其横截面超过了大多数已知分子。这支持了以下假设:由于分子的减少,尼莫拉唑对肿瘤细胞具有选择性的细胞毒性,这是细胞中积累的先决条件。相比之下,通常被认为是LEEs的化学活性来源的离解性电子附着仅代表一个较小的反应通道,该通道在水合后会进一步受到抑制。我们的研究结果表明,LEES可能通过缔合电子附着强烈促进了尼莫拉唑的放射增敏作用。

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