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摇头丸对脑血清素神经元的神经毒性作用:来自神经化学和放射性配体结合研究的证据。

Neurotoxic effect of MDMA on brain serotonin neurons: evidence from neurochemical and radioligand binding studies.

作者信息

De Souza E B, Battaglia G, Insel T R

机构信息

Laboratory of Neurobiology, National Institute on Drug Abuse, Baltimore, Maryland 21224.

出版信息

Ann N Y Acad Sci. 1990;600:682-97; discussion 697-8. doi: 10.1111/j.1749-6632.1990.tb16918.x.

Abstract

In summary, the data from both neurochemical and neuroanatomical studies demonstrate widespread and long-lasting degeneration of serotonin neurons in brain without any major or consistent effects on catecholamine neurons following in vivo administration of MDMA in both rats and rhesus monkeys. A detailed examination of the parameters involved in the neurotoxic and neurodegenerative effects of MDMA on brain serotonin neurons indicate that the severity of the lesion is dependent on the dose of drug administered with the drug being more potent in rhesus monkeys than in rats. Furthermore, the neurodegenerative effects of the drug are long-lasting (up to one year) with respect to neuronal regeneration (i.e. recovery of serotonin uptake sites) while functional recovery may be permanently impaired since serotonin content remains markedly (40-50%) below levels in age-matched controls for as long as one year after drug administration. The neurochemical and autoradiographic data suggest that there are some regional differences and morphological specificity to the neurodegenerative effects of MDMA as demonstrated by greater reductions in serotonin uptake sites in brain regions containing primarily terminals while regions containing axons of passage and cell bodies are relatively unaffected.

摘要

总之,神经化学和神经解剖学研究的数据表明,在大鼠和恒河猴体内给予摇头丸后,脑内5-羟色胺能神经元出现广泛且持久的退化,而对儿茶酚胺能神经元没有任何重大或持续的影响。对摇头丸对脑5-羟色胺能神经元的神经毒性和神经退行性变作用所涉及参数的详细检查表明,损伤的严重程度取决于给药剂量,该药物对恒河猴的作用比对大鼠更强。此外,就神经元再生(即5-羟色胺摄取位点的恢复)而言,该药物的神经退行性变作用是持久的(长达一年),而功能恢复可能会永久受损,因为在给药后长达一年的时间里,5-羟色胺含量仍比年龄匹配的对照组水平显著低(40 - 50%)。神经化学和放射自显影数据表明,摇头丸的神经退行性变作用存在一些区域差异和形态学特异性,主要含有终末的脑区中5-羟色胺摄取位点的减少更为明显,而含有传导轴突和细胞体的区域相对未受影响。

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