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暴露于分次剂量电离辐射和60赫兹圆极化磁场的C57BL/6小鼠中的造血系统肿瘤

Hematopoietic neoplasia in C57BL/6 mice exposed to split-dose ionizing radiation and circularly polarized 60 Hz magnetic fields.

作者信息

Babbitt J T, Kharazi A I, Taylor J M, Bonds C B, Mirell S G, Frumkin E, Zhuang D, Hahn T J

机构信息

Department of Medicine and Department of Radiology, University of California at Los Angeles, Los Angeles, CA 90095, USA.

出版信息

Carcinogenesis. 2000 Jul;21(7):1379-89.

Abstract

This study assessed the effect of chronic exposure to a 60 Hz circularly polarized magnetic field on the occurrence of ionizing radiation-induced lymphoma and other hematopoietic neoplasia in mice. Female C57BL/6 mice received lifetime exposure to either a magnetic field flux density of 1.42 mT for 18 h/day, or an ambient magnetic field of 0.13 microT. Beginning on the first day of magnetic field exposure, 1710 mice were treated with one of three levels of split-dose Cobalt-60 gamma-radiation (cumulative 3.0, 4.0 or 5.1 Gy). The remaining 570 mice received sham irradiation treatment. Sections from 10 lymphoid tissues were evaluated histopathologically for hematopoietic neoplasia. The primary statistical analysis used the Poly3 method to compare lymphoma incidences in magnetic field (MF)-exposed and control mice. Secondary analyses used the Cox proportional hazards model to analyze incidence rates for mortality and development of specific types of neoplasia. The mortality incidence rate was increased by ionizing radiation treatment, and all neoplasms were observed sooner in irradiated mice. However, the lifetime incidence of hematopoietic neoplasia was similar in all experimental groups, including those that were not exposed to ionizing radiation. Chronic exposure to MFs did not affect the mortality incidence rates and did not change the relative incidences of hematopoietic neoplasia in mice that received the same ionizing radiation treatment, with the exception of a marginally significant reduced relative risk of 0.97 (P = 0.05) for lymphoblastic lymphoma in mice exposed to a magnetic field and treated with 5.1 Gy. Lymphomas and histiocytic sarcomas were first observed approximately 50 days sooner in mice that were exposed to magnetic fields but not ionizing radiation, although this comparison was not statistically significant and the incidence of hematopoietic neoplasia in these mice was not different from that of mice in the 0 T/0 Gy group.

摘要

本研究评估了长期暴露于60赫兹圆极化磁场对小鼠电离辐射诱发淋巴瘤及其他造血系统肿瘤发生的影响。雌性C57BL/6小鼠终生暴露于磁通密度为1.42毫特斯拉、每天18小时的磁场中,或暴露于0.13微特斯拉的环境磁场中。从磁场暴露的第一天开始,1710只小鼠接受三种剂量水平的分次钴-60γ射线辐射(累积剂量分别为3.0、4.0或5.1戈瑞)中的一种。其余570只小鼠接受假照射处理。对10个淋巴组织切片进行组织病理学评估,以检测造血系统肿瘤。主要统计分析采用Poly3方法比较磁场暴露组和对照组小鼠的淋巴瘤发病率。次要分析采用Cox比例风险模型分析特定类型肿瘤的死亡率和发病率。电离辐射处理增加了死亡率,并且在受照射小鼠中所有肿瘤出现得更早。然而,包括未暴露于电离辐射的组在内,所有实验组造血系统肿瘤的终生发病率相似。长期暴露于磁场对死亡率无影响,并且在接受相同电离辐射处理的小鼠中,造血系统肿瘤的相对发病率没有变化,但暴露于磁场并接受5.1戈瑞辐射的小鼠中,淋巴母细胞淋巴瘤的相对风险略有显著降低,为0.97(P = 0.05)。在未接受电离辐射但暴露于磁场的小鼠中,淋巴瘤和组织细胞肉瘤的首次观察时间比未暴露于磁场的小鼠提前约50天,尽管这种比较无统计学意义,且这些小鼠的造血系统肿瘤发病率与0特斯拉/0戈瑞组小鼠无差异。

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