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中枢神经系统中的N-乙酰血清素。

N-Acetylserotonin in the central nervous system.

作者信息

Brown G M, Pulido O, Grota L J, Niles L P

出版信息

Prog Neuropsychopharmacol Biol Psychiatry. 1984;8(4-6):475-80. doi: 10.1016/0278-5846(84)90003-4.

Abstract

N-acetylserotonin has been identified by immunohistochemistry in specific brain areas separate from melatonin and serotonin. N-acetylserotonin is widely distributed within the brain stem, cerebellum and hippocampus and in the brain stem it is contained within the reticular formation nuclei and motor nuclei. Like serotonin, N-acetylserotonin appears to be derived from tryptophan as tryptophan hydroxylase inhibition leads to a lowering in immunoreactive N-acetylserotonin in brain and blood. Beta adrenergic drugs influence N-acetylserotonin neurons with beta adrenergic agonists causing a rise in immunoreactive N-acetylserotonin. The presence of N-acetylserotonin in brain has been confirmed by gas chromatography, mass spectrometry and radioimmunoassay. At this point little is known of the possible role of N-acetylserotonin in the brain. In the hippocampus N-acetylserotonin is present in granule cells and its appearance parallels the appearance of those cells. High affinity binding of tritiated N-acetylserotonin is found in brain and in various brain areas and this radioligand appears to label serotonergic receptors. Preliminary iontophoretic studies performed on hippocampal slices indicate an inhibitory action of N-acetylserotonin on glutamate induced firing of pyramidal cells. Taken together these findings suggest that N-acetylserotonin may have a role in the central nervous system distinct from that of being a precursor for melatonin. If this hypothesis is correct it would suggest that indoleamines have certain similarities to catecholamines. Thus for the catecholamines, dopamine, norepinephrine and epinephrine form a synthetic sequence and yet have independent roles as neurotransmitters and/or hormones. The three indoleamines serotonin, N-acetylserotonin and melatonin also form a synthetic sequence and these three substances may also have independent roles as neurotransmitters and/or hormones.

摘要

通过免疫组织化学方法已在与褪黑素和血清素不同的特定脑区中鉴定出N - 乙酰血清素。N - 乙酰血清素广泛分布于脑干、小脑和海马体中,在脑干中它存在于网状结构核和运动核内。与血清素一样,N - 乙酰血清素似乎也源自色氨酸,因为抑制色氨酸羟化酶会导致脑和血液中免疫反应性N - 乙酰血清素水平降低。β - 肾上腺素能药物会影响N - 乙酰血清素神经元,β - 肾上腺素能激动剂会使免疫反应性N - 乙酰血清素水平升高。脑内N - 乙酰血清素的存在已通过气相色谱法、质谱法和放射免疫测定法得到证实。目前对N - 乙酰血清素在脑内可能发挥的作用知之甚少。在海马体中,N - 乙酰血清素存在于颗粒细胞中,其出现与这些细胞的出现情况相似。在脑及各个脑区发现了氚标记的N - 乙酰血清素的高亲和力结合,这种放射性配体似乎标记了血清素能受体。对海马体切片进行的初步离子电泳研究表明,N - 乙酰血清素对谷氨酸诱导的锥体细胞放电具有抑制作用。综合这些发现表明,N - 乙酰血清素在中枢神经系统中可能具有与作为褪黑素前体不同的作用。如果这一假设正确,那就意味着吲哚胺类物质与儿茶酚胺类物质有某些相似之处。因此,对于儿茶酚胺类物质来说,多巴胺、去甲肾上腺素和肾上腺素形成一个合成序列,但它们作为神经递质和/或激素却具有独立的作用。血清素、N - 乙酰血清素和褪黑素这三种吲哚胺类物质也形成一个合成序列,这三种物质可能同样作为神经递质和/或激素具有独立的作用。

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