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首页> 外文期刊>Medicinal chemistry >Effects of systemic administration of saxitoxin on serotonin levels in some discrete rat brain regions.
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Effects of systemic administration of saxitoxin on serotonin levels in some discrete rat brain regions.

机译:全身性沙门毒素对一些离散大鼠脑区域中5-羟色胺水平的影响。

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The present study is related with the toxicity of Saxitoxin (STX), a neurotoxic compound, produced by certain dinoflagellates. Its main toxicological activity is observed through the blockage of the sodium channels. It might originate a reduction of the amplitude and speed of conduction of the action potentials by the peripheral and central nerves, as well as weakening of the skeletal muscular contraction. The aim of this study was to analyze the effect of STX on serotonin (5-HT) levels in some discrete rat brain regions after acute intraperitoneal (i.p.) administration of 5 and 10 microg Kg(-1) STX body weight. 5-HT levels were analyzed at 30, 60 and 120 min after the administration of 5 microg Kg(-1) of STX, and 30 min after administration of 10 microg K(-1) of the toxin. Animals were sacrificed by cervical dislocation and the brains were removed and dissected in seven regions. Tissue samples were analyzed by using a chromatographic technique with electrochemical detection (HPLC/ED). Our results suggest that systemic administration of the STX reaches the brain producing alterations in neurotransmission increasing the levels of 5-HT in all the brain regions studied. With respect to the serotonin metabolite, 5-hidroxiindoleacetic acid (5-HIAA), we observed an increase in its levels in all the brain regions studied with the high dose of toxin, whereas different alterations were observed with the low dose of toxin.
机译:本研究与由某些鞭毛鞭毛虫产生的神经毒性化合物Saxitoxin(STX)的毒性有关。通过钠通道的阻塞可以观察到它的主要毒理活性。它可能导致周围和中枢神经动作电位传导的幅度和速度降低,以及骨骼肌收缩减弱。这项研究的目的是分析STX对急性腹膜内(i.p.)给予5和10 microg Kg(-1)STX体重后某些离散大鼠脑区域中5-羟色胺(5-HT)水平的影响。在服用5 microg Kg(-1)的STX后30分钟,60分钟和120分钟以及服用10 microg K(-1)的毒素30分钟后分析5-HT水平。通过颈脱位法处死动物,取出大脑并在七个区域解剖。通过使用具有电化学检测的色谱技术(HPLC / ED)分析组织样品。我们的结果表明,STX的全身性给药到达大脑后会产生神经传递改变,从而增加了研究的所有大脑区域中5-HT的水平。关于5-羟色胺代谢产物5-hidroxiindoleacetic乙酸(5-HIAA),我们观察到在研究高剂量毒素的所有大脑区域中其含量都增加了,而在低剂量毒素下观察到了不同的变化。

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