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Selective Interactions of Valeriana officinalis Extracts and Valerenic Acid with [3H]Glutamate Binding to Rat Synaptic Membranes

机译:缬草提取物和缬草酸与[3H]谷氨酸结合到大鼠突触膜的选择性相互作用。

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摘要

Although GABA neurotransmission has been suggested as a mechanism for Valeriana officinalis effects, CNS depression can also be evoked by inhibition of ionotropic (iGluR) and metabotropic glutamate receptors (mGluR). In this study, we examined if aqueous valerian extract interacted with glutamatergic receptors. Freshly prepared aqueous valerian extract was incubated with rat cortical synaptic membranes in presence of 20 nM [3H]Glutamate. Aqueous valerian extract increased [3H]Glutamate binding from 1 × 10−7 to 1 × 10−3 mg/mL. In the presence of (2S,1′S,2′S)-2-(Carboxycyclopropyl)glycine (LCCG-I) and (2S,2′R,3′R)-2-(2′,3′-Dicarboxycyclopropyl)glycine (DCG-IV), Group II mGluR agents, valerian extract markedly decreased [3H]Glutamate binding, while (2S)-2-amino-3-(3,5-dioxo-1,2,4-oxadiazolidin-2-yl) propanoic acid) (quisqualic acid, QA), Group I mGluR agonist, increased [3H]Glutamate binding. At 0.05 mg/mL aqueous valerian extract specifically interacted with kainic acid NMDA and AMPA receptors. Valerenic acid, a marker compound for Valeriana officinalis, increased the [3H]Glutamate binding after 1.6 × 10−2 mg/mL, and at 0.008 mg/mL it interacted only with QA (Group I mGluR). The selective interactions of valerian extract and valerenic acid with Group I and Group II mGluR may represent an alternative explanation for the anxiolytic properties of this plant.
机译:尽管已建议将GABA神经传递作为缬草作用的机制,但中枢神经系统抑制也可以通过抑制离子型(iGluR)和代谢型谷氨酸受体(mGluR)引起。在这项研究中,我们检查了缬草提取物是否与谷氨酸能受体相互作用。将新鲜制备的缬草提取物与大鼠皮层突触膜在20?nM [3H]谷氨酸的存在下孵育。缬草提取物将[3H]谷氨酸的结合从1×10-7增加到1×10-3−mg / mL。在(2S,1'S,2'S)-2-(羧基环丙基)甘氨酸(LCCG-1)和(2S,2'R,3'R)-2-(2',3'-二羧基环丙基)存在下)甘氨酸(DCG-IV),第II组mGluR药物,缬草提取物显着降低了[3H]谷氨酸的结合,而(2S)-2-氨基-3-(3,5-二氧代-1,2,4-4-恶二唑烷-2 -yl)丙酸)(喹尿酸,QA),第I组mGluR激动剂,增加了[3H]谷氨酸的结合。在0.05 mg / mL的缬草提取物与海藻酸NMDA和AMPA受体特异性相互作用。缬草的标志化合物缬草酸在1.6×10-2 mg / mL后增加了[3H]谷氨酸的结合,而在0.008 mg / mL时它仅与QA相互作用(I组mGluR)。缬草提取物和缬草酸与I组和II组mGluR的选择性相互作用可能代表了该植物抗焦虑特性的另一种解释。

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