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Immunological Mechanism of the Low-Dose Radiation-Induced Suppression of Cancer Metastases in a Mouse Model

机译:低剂量辐射诱导的小鼠模型中癌症转移抑制的免疫机制。

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According to the doctrine underlying the current radiation protection regulations each, no matter how small, exposure to ionizing radiation may be carcinogenic. However, numerous epidemiological observations demonstrate that cancer incidence and/or mortality are not elevated among inhabitants of the high- versus low-natural-background radiation areas and homes. Results of our own and other authors’ studies described in this paper bear testimony to the possibility that stimulation of the anti-neoplastic immune surveillance mediated by NK lymphocytes and activated macrophages explains, at least partially, the accumulating epidemiological and experimental evidence indicating that low-level exposures to the low-linear energy transfer (LET) radiation inhibit the development of spontaneous and artificial metastases in humans and laboratory animals, respectively. The results presented also suggest the possibility of using low-level X- and gamma-ray exposures to cure cancer and to prevent cancer metastases. For a broader perspective, the results presented may help towards relaxing the current radiation protection regulations, especially as they apply to diagnostic and therapeutic exposures of patients to the indicated forms of radiation.
机译:根据当前辐射防护法规的基本原理,无论辐射量多么小,暴露于电离辐射中都可能致癌。然而,大量的流行病学观察表明,高自然背景辐射和低自然背景辐射区及家庭居民的癌症发病率和/或死亡率并未升高。本文描述的我们自己和其他作者的研究结果证明,由NK淋巴细胞和活化的巨噬细胞介导的抗肿瘤免疫监视的刺激至少部分地解释了累积的流行病学和实验证据,表明低低水平能量转移(LET)辐射的低水平暴露分别抑制了人类和实验动物的自发和人工转移的发展。提出的结果还暗示了使用低水平的X射线和伽马射线暴露来治愈癌症和预防癌症转移的可能性。从更广泛的角度来看,呈现的结果可能有助于放宽当前的辐射防护法规,尤其是因为它们适用于患者接受指定辐射形式的诊断和治疗性照射。

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