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从紫苏(Perilla frutescens(L.)Britt.)的果实中分离得到的木樨草素和芹菜素对单胺转运体的功能激活作用。

Functional activation of monoamine transporters by luteolin and apigenin isolated from the fruit of Perilla frutescens (L.) Britt.

机构信息

Cell Star Bio-Technologies Co., Limited, Shanghai, PR China.

出版信息

Neurochem Int. 2010 Jan;56(1):168-76. doi: 10.1016/j.neuint.2009.09.015. Epub 2009 Oct 6.

Abstract

Monoamine transporters playing major roles in regulating normal and abnormal synaptic activity are associated with various neuropsychological disorders. In spite of the discovery of a series of structurally different monoamine transporter antagonists for the therapy approach, no practical pharmaceutical can act as a transporter activator. Here, we isolated luteolin and apigenin from the fruit of Perilla frutescens (L.) Britt by using an activity-guided extraction technique, and proved that the two compounds possess actions of enhancing monoamine uptake either upon monoamine-transporter transgenic Chinese hamster ovary (CHO) cells or upon wild dopaminergic cell lines, with higher specificity for dopamine (DA) uptake than for norepinephrine (NE)- and serotonin (5HT)-uptake, as well as with more potency and greater efficacy for luteolin than for apigenin. Further, in the transgenic cells, the principal NE/DA uptake activation by luteolin was significantly prevented by respective transporter inhibitor, and the transmitter-uptake-enhancing action was independent of its ligands, which is in support of the compounds as monoamine transporter activators. Furthermore, luteolin evoked a marked disinhibition of cocaine-targeted effect in CHO cells overexpressing dopamine transporter. Thus, luteolin and apigenin function as monoamine transporter activators, which would improve several hypermonoaminergic neuropsychological disorders, especially cocaine dependence, through up-regulating monoamine transporter activity.

摘要

单胺转运体在调节正常和异常突触活动中起着重要作用,与各种神经心理障碍有关。尽管已经发现了一系列结构不同的单胺转运体拮抗剂用于治疗方法,但没有实际的药物可以作为转运体激活剂。在这里,我们通过活性导向提取技术从紫苏果实中分离出木犀草素和芹菜素,并证明这两种化合物具有增强单胺摄取的作用,无论是在单胺转运体转基因中国仓鼠卵巢(CHO)细胞上,还是在野生多巴胺能细胞系上,对多巴胺(DA)摄取的特异性高于去甲肾上腺素(NE)和 5-羟色胺(5HT)摄取,并且木犀草素的效力和功效均高于芹菜素。此外,在转基因细胞中,木犀草素对主要 NE/DA 摄取的激活作用被相应的转运体抑制剂显著阻止,而递质摄取增强作用与其配体无关,这支持了这些化合物作为单胺转运体激活剂的作用。此外,木犀草素可明显抑制过表达多巴胺转运体的 CHO 细胞中可卡因的靶向作用。因此,木犀草素和芹菜素作为单胺转运体激活剂,通过上调单胺转运体活性,可改善多种高单胺能神经心理障碍,特别是可卡因依赖。

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