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多氯联苯对多巴胺及其他神经递质摄入大鼠脑突触小泡的影响。

The effect of polychlorinated biphenyls on the uptake of dopamine and other neurotransmitters into rat brain synaptic vesicles.

作者信息

Mariussen E, Morch Andersen J, Fonnum F

机构信息

Norwegian Defence Research Establishment, Kjeller, 2027, Norway.

出版信息

Toxicol Appl Pharmacol. 1999 Dec 15;161(3):274-82. doi: 10.1006/taap.1999.8806.

Abstract

Studies have shown that polychlorinated biphenyls may affect cognitive functions both in human and also in experimental animals. One of the neurochemical parameters that is changed after exposure to these compounds is a reduction in the dopamine level in the brain, although the mechanism behind this reduction is not known. We have therefore investigated whether this reduction could be caused by an effect on vesicular uptake. ortho-Chlorinated biphenyls are found to be competitive inhibitors of dopamine transport into synaptic vesicles from rat brain with K(i) concentrations as low as 4 microM. In contrast, several nonortho-chlorinated biphenyls did not inhibit vesicular uptake. The inhibition was specific for dopamine, in that the uptake of glutamate and GABA was inhibited at higher PCB concentrations under identical conditions. The vesicular Mg-ATPase proton pump was also inhibited at higher concentrations of PCBs than the dopamine transport. Uptake of methylamine gave no indication of any disruption of the vesicular proton gradient. The inhibition of dopamine vesicular uptake by PCBs was competitive. Several of the ortho-PCBs also inhibited the binding of tetrabenazine, which is known to bind to a site close to the dopamine binding site, at the vesicular transporter. The results show that inhibition of vesicular uptake may contribute to the decrease of dopamine reported in nervous tissue after exposure to PCBs under different conditions.

摘要

研究表明,多氯联苯可能会影响人类和实验动物的认知功能。接触这些化合物后发生变化的神经化学参数之一是大脑中多巴胺水平的降低,尽管这种降低背后的机制尚不清楚。因此,我们研究了这种降低是否可能是由对囊泡摄取的影响引起的。发现邻氯联苯是多巴胺从大鼠脑转运到突触囊泡的竞争性抑制剂,其K(i)浓度低至4 microM。相比之下,几种非邻氯联苯并不抑制囊泡摄取。这种抑制对多巴胺具有特异性,因为在相同条件下,较高的多氯联苯浓度会抑制谷氨酸和GABA的摄取。与多巴胺转运相比,在更高浓度的多氯联苯下,囊泡Mg-ATP酶质子泵也受到抑制。甲胺的摄取没有显示出囊泡质子梯度有任何破坏的迹象。多氯联苯对多巴胺囊泡摄取的抑制是竞争性的。几种邻位多氯联苯还抑制了丁苯那嗪的结合,已知丁苯那嗪在囊泡转运体上与靠近多巴胺结合位点的一个位点结合。结果表明,在不同条件下接触多氯联苯后,囊泡摄取的抑制可能导致神经组织中报道的多巴胺减少。

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