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[低温对大鼠辐射抗性的影响]

[The effect of hypothermia on the rat radioresistance].

作者信息

Ignat'ev D A, Fialkovskaia L A, Perepelkina N I, Markevich L N, Kraev I V, Kolomiĭtseva I K

出版信息

Radiats Biol Radioecol. 2006 Nov-Dec;46(6):706-12.

Abstract

The cooling of Wistar rats up to 15-19 degrees C under a condition hypoxia-hypercapnia increased the radioresistance with a dose reduction factor (DRF) of 1.4. To elucidate the mechanisms of hypothermia radioprotective effect was evaluated the functional state of rat neocortex using a electroencephalogram (EEG) as well as was studied the lipid composition of neocortex under the conditions of both normothermia and hypothermia. At 19-20 degrees C the activity within a wide range of frequencies in EEG was suppressed; the nonregular slow waves were recorded against a background of "silence". The reduction of EEG spectrum with increasing temperature began with the low frequencies. At 26-28 egresC the contribution of theta-rhythm (an indicator of brain activity level) in EEG reaches the normothermia value, from this point the rat brain starts to functionate as a whole system. At normothermia the similarity of neocortex lipid composition in nonhibernators (rats) and hibernators (ground squirrels) mammalians was noted. The difference is only in a higher content of phosphatidylinositol in rats. Rats falling into hypothermia state as well as ground squirrels into torpor is followed by a decrease of cholesterol content and the absence of significant changes of the phospholipid composition in neocortex tissues.

摘要

在低氧高碳酸血症条件下将Wistar大鼠冷却至15 - 19摄氏度,可使辐射抗性增加,剂量降低因子(DRF)为1.4。为阐明低温辐射防护作用的机制,使用脑电图(EEG)评估大鼠新皮质的功能状态,并研究了正常体温和低温条件下新皮质的脂质组成。在19 - 20摄氏度时,EEG中广泛频率范围内的活动受到抑制;在“寂静”背景下记录到不规则慢波。随着温度升高,EEG频谱的降低从低频开始。在26 - 28摄氏度时,EEG中θ节律(脑活动水平指标)的贡献达到正常体温值,从这一点开始,大鼠大脑开始作为一个整体系统发挥功能。在正常体温下,观察到非冬眠动物(大鼠)和冬眠动物(地松鼠)哺乳动物新皮质脂质组成的相似性。区别仅在于大鼠中磷脂酰肌醇的含量较高。进入低温状态的大鼠以及进入蛰伏状态的地松鼠,其新皮质组织中的胆固醇含量会降低,磷脂组成无显著变化。

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