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Mouse Models for Radiation-Induced Breast Cancer

机译:辐射诱发乳腺癌的小鼠模型

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Radiation is a widely known, and prototypical, inducer of genotoxic damage. With every moment of exposure to ionizing radiation, lesions and breaks are induced in the DNA, increasing an individual’s lifetime risk of developing cancer. At the same time, radiation therapy is a key part of the effective treatment of the very same disease. Radiation therapy is effective, capable of shrinking and even eliminating tumors. In conjunction with surgery, its use is extremely common for the treatment of breast cancer. Even when radiation is our ally, however, the risks remain. Therapeutic use to treat existing cancers paradoxically leads to the incidence of secondary, radiation-induced neoplasias. One strategy to reduce this secondary risk while still encouraging the use of radiotherapy to its full potential would be the development co-administered therapeutic compounds or strategies designed to preferentially protect healthy cells while leaving cancer cells vulnerable. The development and efficacy testing such agents would require not only extensive in vitro testing, but also a well investigated set of in vivo models to actively recapitulate the complex nature of radiation-induced carcinogenesis. The laboratory mouse Mus musculus is probably the best choice for this endeavor. As a cancer model it possesses a combination of favorable attributes: a well annotated genome, molecular and physiological similarities with man and other mammals, and a small size and high breeding rate for ease of use. This work will focus on the description of m. musculus inbred and F1 hybrid animal models of radiation-induced breast cancers and their associated molecular pathologies.
机译:辐射是遗传毒性损害的众所周知的原型。暴露于电离辐射的每时每刻,都会在DNA中诱发损伤和断裂,从而增加了个体终生罹患癌症的风险。同时,放射疗法是有效治疗同一疾病的关键部分。放射疗法是有效的,能够缩小甚至消除肿瘤。结合手术,其在乳腺癌的治疗中极为普遍。但是,即使辐射是我们的盟友,风险仍然存在。用于治疗现有癌症的疗法自相矛盾地导致了继发性辐射诱发的瘤形成的发生。在降低这种继发风险的同时仍鼓励充分利用放射疗法的一种策略是开发共同给药的治疗化合物或旨在优先保护健康细胞而又使癌细胞易受伤害的策略。这种药物的开发和功效测试不仅需要广泛的体外测试,而且还需要经过充分研究的体内模型集,以主动概括辐射诱导的致癌作用的复杂性质。实验小鼠小家鼠可能是这项工作的最佳选择。作为一种癌症模型,它具有以下优点:良好的基因组注释,与人和其他哺乳动物的分子和生理相似性,以及易于使用的小尺寸和高繁殖率。这项工作将集中于对m的描述。辐射诱导的乳腺癌的小肌肉近交和F1杂种动物模型及其相关的分子病理学。

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