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Radioprotection effect of low level preirradiation on mammals: modeling and experimental investigations.

机译:低水平预辐射对哺乳动物的辐射防护作用:建模和实验研究。

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This paper is devoted to experimental and theoretical studies of low level preirradiation effects on radiosensitivity of mammals. It is shown experimentally that a priming exposure to a low dose can induce radioresistance in mice in two (early and late) periods after preirradiation. The manifestation of such effects is reduced mortality of preexposed specimens after challenge acute irradiation, the reason of the animal death being the hematopoietic subsyndrome of the acute radiation syndrome. Therefore, proceeding from the radiobiological concept of critical system, the theoretical investigation of the influence of preirradiation on mammalian radiosensitivity is conducted by making use of the mathematical models of the vital body system, hematopoiesis. Modeling results obtained make it possible to elucidate the mechanisms of the radioprotection effect of low level priming irradiation on mammals. Specifically, the state of acquired radioresistance in mice is caused by reduced radiosensitivity of lymphopoietic and thrombocytopoietic systems in the early period and by reduced radiosensitivity of granulocytopoietic system, which is accompanied by slightly reduced or close to the normal level radiosensitivity of lymphopoietic system, in the late period after preirradiation. In turn, reduced radiosensitivity of above-noted hematopoietic lines is the consequence of hypercompensation of radiation damages of certain cell pools during the recovering processes running in these systems after priming irradiation. It is important to emphasize that the evaluations of the duration of the early and late periods of postirradiation radioresistance in mice, carried out on the basis of the modeling and experimental investigations, practically coincide. All this demonstrates the effectiveness of joint modeling and experimental investigations of such complicated radiobiological problems as acquired radioresistance.
机译:本文致力于低水平预辐照对哺乳动物放射敏感性的实验和理论研究。实验表明,低剂量的初次暴露可以在预辐照后的两个(早期和晚期)时期诱导小鼠的抗辐射性。这种影响的表现是急性放射线激发后预先暴露的标本的死亡率降低,动物死亡的原因是急性放射线综合征的造血亚综合征。因此,从关键系统的放射生物学概念出发,利用活体系统血细胞生成的数学模型对预辐照对哺乳动物放射敏感性的影响进行了理论研究。获得的建模结果可以阐明低水平启动辐射对哺乳动物的辐射防护作用机理。具体而言,小鼠的获得性放射抗性状态是由于早期淋巴细胞和血小板生成系统的放射敏感性降低以及颗粒细胞生成系统的放射敏感性降低引起的,其伴随着淋巴细胞生成系统的放射敏感性略有降低或接近正常水平。预照射后的后期。继而,上述造血细胞系的放射敏感性降低是在引发辐射后在这些系统中进行的恢复过程中某些细胞池辐射损伤过度补偿的结果。需要强调的是,在建模和实验研究的基础上,对小鼠辐射后抗辐射早期和晚期持续时间的评估实际上是一致的。所有这些都证明了联合建模和实验研究对诸如获得性放射抗性这样的复杂放射生物学问题的有效性。

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