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暴露于高能铁颗粒后大鼠尾状核中3-甲氧基酪胺浓度的降低:多巴胺能神经元功能缺陷的证据。

Reduction of 3-methoxytyramine concentrations in the caudate nucleus of rats after exposure to high-energy iron particles: evidence for deficits in dopaminergic neurons.

作者信息

Hunt W A, Dalton T K, Joseph J A, Rabin B M

机构信息

Behavioral Sciences Department, Armed Forces Radiobiology Research Institute, Bethesda, Maryland 20814-5145.

出版信息

Radiat Res. 1990 Feb;121(2):169-74.

PMID:2305034
Abstract

Exposure to low doses of high-energy iron particles can alter motor behavior. The ability of rats to hang from a wire has been reported to be significantly degraded after exposure to doses as low as 0.5 Gy. In addition, deficits in the ability of acetylcholine to regulate dopamine release in the caudate nucleus (an area in the brain important for motor function) have been found. The concentrations of 3-methoxytyramine (3-MT), a metabolite of dopamine whose concentrations reflect dopamine release in vivo, were measured after rats were exposed to different doses of high-energy iron particles to gain further information about the effect of radiation on the dopaminergic system. Concentrations of 3-MT were significantly reduced 3 days after exposure to 5 Gy but returned to control values by 8 days. After 6 months, concentrations were again less than control values. Exposure to 5 Gy of high-energy electrons or gamma photons had no effect 3 days after exposure. Very high doses of electrons were needed to alter 3-MT concentrations. One hundred grays of electrons decreased 3-MT 30 min after irradiation but levels returned to control values by 60 min. Gamma photons had no effect after doses up to 200 Gy. These results provide further evidence that exposure to heavy particles can degrade motor behavior through an action on dopaminergic mechanisms and that this can occur after doses much lower than those needed for low-LET radiation.

摘要

暴露于低剂量的高能铁粒子会改变运动行为。据报道,大鼠暴露于低至0.5戈瑞的剂量后,其从铁丝上悬挂的能力会显著下降。此外,还发现乙酰胆碱调节尾状核(大脑中对运动功能很重要的一个区域)中多巴胺释放的能力存在缺陷。在大鼠暴露于不同剂量的高能铁粒子后,测量了3-甲氧基酪胺(3-MT)的浓度,3-MT是多巴胺的一种代谢产物,其浓度反映体内多巴胺的释放情况,以获取有关辐射对多巴胺能系统影响的更多信息。暴露于5戈瑞后3天,3-MT的浓度显著降低,但在8天时恢复到对照值。6个月后,浓度再次低于对照值。暴露于5戈瑞的高能电子或γ光子后3天没有影响。需要非常高剂量的电子才能改变3-MT的浓度。100戈瑞的电子在照射后30分钟会使3-MT降低,但在60分钟时水平恢复到对照值。剂量高达200戈瑞的γ光子没有影响。这些结果提供了进一步的证据,表明暴露于重粒子会通过对多巴胺能机制的作用而降低运动行为,并且这种情况在比低线性能量传递辐射所需剂量低得多的剂量后就会发生。

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