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碘-125及其他俄歇电子发射放射性核素的放射毒性:治疗背景

Radiotoxicity of iodine-125 and other auger-electron-emitting radionuclides: background to therapy.

作者信息

Adelstein S James, Kassis Amin I, Bodei Lisa, Mariani Giuliano

机构信息

Experimental Nuclear Medicine, Department of Radiology, Harvard Medical School, Boston, Massachusetts, USA.

出版信息

Cancer Biother Radiopharm. 2003 Jun;18(3):301-16. doi: 10.1089/108497803322285062.

Abstract

Auger-electron cascades with their ability to deposit energy in extremely small volumes, typically in the range of cubic nanometers, have served as valuable probes of radiobiologic phenomena. Results from their experimental use form part of the evidence that nuclear DNA is the most radiosensitive cell element; that chromosomal aberrations and large scale double-strand breaks are correlated with reproductive survival; that neoplastic transformation and also mutagenesis are greatest at low doses with high specific ionization; and that, like high linear-energy-transfer radiation, Auger-electron cascades can lead to bystander effects. We have also learned that radiobiologic responses to Auger-electron emission are particularly sensitive to the site of decay, not only within the cell but also in the nucleus within the fine structure of chromatin.

摘要

俄歇电子级联能够在极小的体积内沉积能量,通常在立方纳米范围内,它已成为放射生物学现象的重要探针。其实验应用结果构成了以下证据的一部分:核DNA是最放射敏感的细胞成分;染色体畸变和大规模双链断裂与生殖存活相关;肿瘤转化和诱变在低剂量高比电离时最为显著;并且,与高传能线密度辐射一样,俄歇电子级联可导致旁观者效应。我们还了解到,对俄歇电子发射的放射生物学反应对衰变位点特别敏感,不仅在细胞内,而且在染色质精细结构内的细胞核中也是如此。

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