利用含碘化学物质研究俄歇电子和DNA双链断裂。

Q3 Biochemistry, Genetics and Molecular Biology
Enzymes Pub Date : 2022-01-01 Epub Date: 2022-09-27 DOI:10.1016/bs.enz.2022.08.007
Yuya Higashi, Yue Ma, Kotaro Matsumoto, Ayumi Shiro, Hiroyuki Saitoh, Tetsuya Kawachi, Fuyuhiko Tamanoi
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引用次数: 0

摘要

用单色x射线照射高Z元素,如碘、金、钆,会产生包括俄歇电子释放在内的光电效应。放射性碘如I-123和I-125的衰变也会导致多种事件,其中一些涉及俄歇电子的产生。这些电子能量低,移动距离短,但对DNA损伤有很强的影响,包括双链断裂的产生。在本章中,我们将重点讨论碘,并讨论使用含碘化学物质产生俄歇电子并导致DNA双链断裂的各种研究。首先,使用含有碘的DNA合成前体将碘放置在DNA上。研究了碘Hoechst等DNA结合染料对俄歇电子产生和DNA断裂的影响。最近,含碘纳米颗粒被开发出来。我们描述了我们的研究使用肿瘤球体加载碘纳米粒子和同步加速器产生的单色x射线。这项研究表明,在33.2keV的x射线(刚好高于碘的k边能量)下,对DNA双链断裂的形成有最佳的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Auger electrons and DNA double-strand breaks studied by using iodine-containing chemicals.

Irradiation of high Z elements such as iodine, gold, gadolinium with monochromatic X-rays causes photoelectric effects that include the release of Auger electrons. Decay of radioactive iodine such as I-123 and I-125 also results in multiple events and some involve the generation of Auger electrons. These electrons have low energy and travel only a short distance but have a strong effect on DNA damage including the generation of double-strand breaks. In this chapter, we focus on iodine and discuss various studies that used iodine-containing chemicals to generate Auger electrons and cause DNA double-strand breaks. First, DNA synthesis precursors containing iodine were used to place iodine on DNA. DNA binding dyes such as iodine Hoechst were investigated for Auger electron generation and DNA breaks. More recently, iodine containing nanoparticles were developed. We describe our study using tumor spheroids loaded with iodine nanoparticles and synchrotron-generated monochromatic X-rays. This study led to the demonstration that an optimum effect on DNA double-strand break formation is observed with a 33.2keV X-ray which is just above the K-edge energy of iodine.

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来源期刊
Enzymes
Enzymes Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
4.30
自引率
0.00%
发文量
10
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