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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Isodomoic acids A and C exhibit low KA receptor affinity and reduced in vitro potency relative to domoic acid in region CAI of rat hippocampus
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Isodomoic acids A and C exhibit low KA receptor affinity and reduced in vitro potency relative to domoic acid in region CAI of rat hippocampus

机译:在大鼠海马区CAI区域,异十二酸A和C的KA受体亲和力较低,体外效能相对于十二酸低

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Several natural isomers of the seizurogenic neurotoxin domoic acid (DA) have been found to occur at up to mg/kg levels in shellfish. The aim of the current study was to assess the neurotoxic potency of isodomoic acids A and C (Iso-A and Iso-C), recently isolated from commercial shellfish. Hippocampal slices were obtained from young adult rats and maintained in a tissue recording chamber. Synaptically evoked population spikes were recorded in region CA1 before and after exposure to DA or its isomers. Both Iso-A and Iso-C produced transient neuronal hyperexcitability followed by a dose-dependent suppression of population spikes, but were, respectively, 4- and 20-fold less potent than DA (spike area: EC50 DA = 237 nM; Iso-A 939 nM; Iso-C = 4.6 mu M). In the hippocampus, DA preconditioning induces tolerance to subsequent DA toxicity. However, in the present study neither Iso-A nor Iso-C were effective as preconditioning agents. Competitive binding studies using homomeric GluR6 kainate (kainic acid, KA) receptors showed the affinity of Iso-A to be 40-fold lower than DA (K-i DA = 3.35 nM; Iso-A = 130 nM). Together with earlier work showing Iso-C affinity at GluR6 receptors to be 240-fold lower than DA, our results suggest that neuroexcitatory effects of Iso-A in CA1 may involve both alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionate (AMPA) and KA receptors, while Iso-C likely involves the activation of AMPA receptors alone. (c) 2007 Elsevier Ltd. All rights reserved.
机译:已发现在贝类中,seizurogenic神经毒素多摩酸(DA)的几种天然异构体的含量高达mg / kg。本研究的目的是评估最近从商业贝类中分离出的异碘酸A和C(Iso-A和Iso-C)的神经毒性。从幼年成年大鼠获得海马切片,并将其保存在组织记录室中。在暴露于DA或其异构体之前和之后,CA1区记录了突触诱发的种群高峰。 Iso-A和Iso-C均会产生短暂的神经元过度兴奋,随后剂量依赖性抑制种群峰值,但其效力分别比DA低4到20倍(峰值面积:EC50 DA = 237 nM; Iso- A 939 nM; Iso-C = 4.6μM。在海马中,DA预处理可诱导对随后的DA毒性的耐受性。但是,在本研究中,Iso-A和Iso-C都不是有效的预处理剂。使用同质的GluR6海藻酸酯(海藻酸,KA)受体进行的竞争性结合研究表明,Iso-A的亲和力比DA低40倍(K-1 DA = 3.35 nM; Iso-A = 130 nM)。连同较早的研究表明在GluR6受体上的Iso-C亲和力比DA低240倍,我们的结果表明,Iso-A在CA1中的神经兴奋作用可能涉及α-氨基-3-羟基-5-甲基-4-异恶唑丙酸酯(AMPA)和KA受体,而Iso-C可能仅涉及AMPA受体的活化。 (c)2007 Elsevier Ltd.保留所有权利。

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