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靶向氯离子通道:海洋毒素azaspiracid 作用机制的新见解。

Targeting Chloride Ion Channels: New Insights into the Mechanism of Action of the Marine Toxin Azaspiracid.

机构信息

Departamento de Farmacología, Farmacia y Tecnología Farmacéutica, Facultad de Veterinaria, Universidad de Santiago de Compostela, Campus Universitario s/n, 27002 Lugo, España.

出版信息

Chem Res Toxicol. 2021 Mar 15;34(3):865-879. doi: 10.1021/acs.chemrestox.0c00494. Epub 2021 Jan 29.

Abstract

Azaspiracids (AZAs) are marine toxins produced by dinoflagellates belonging to the genera and that caused human intoxications after consumption of contaminated fishery products, such as mussels. However, the exact mechanism for the AZA induced cytotoxic and neurotoxic effects is still unknown. In this study several pharmacological approaches were employed to evaluate the role of anion channels on the AZA effects that demonstrated that cellular anion dysregulation was involved in the toxic effects of these compounds. The results presented here demonstrated that volume regulated anion channels (VRACs) are affected by this group of toxins, and, because there is not any specific activator of VRACs besides the intracellular application of GTPγ-S molecule, this group of natural compounds could represent a powerful tool to analyze the role of these channels in cellular homeostasis. In addition to this, in this work, a detailed pharmacological approach was performed in order to elucidate the anion channels present in human HEK293 cells as well as their regulation by the marine toxins azaspiracids. Altogether, the data presented here demonstrated that the effect of azaspiracids in human cells was completely dependent on ATP-regulated anion channels, whose upregulation by these toxins could lead to regulatory volume decrease and underlie the reported toxicity of these compounds.

摘要

海兔毒素(AZAs)是由甲藻属和属的双鞭毛藻类产生的海洋毒素,这些藻类污染了贝类等渔业产品,导致人类中毒。然而,AZA 诱导细胞毒性和神经毒性的确切机制仍不清楚。在这项研究中,采用了几种药理学方法来评估阴离子通道在 AZA 作用中的作用,结果表明细胞阴离子失调参与了这些化合物的毒性作用。本研究结果表明,体积调节阴离子通道(VRACs)受到这组毒素的影响,因为除了细胞内应用 GTPγ-S 分子之外,没有任何 VRACs 的特异性激活剂,因此这组天然化合物可能成为分析这些通道在细胞内稳态中的作用的有力工具。此外,在这项工作中,还进行了详细的药理学研究,以阐明人 HEK293 细胞中存在的阴离子通道及其被海洋毒素 AZAs 的调节。总之,本文的数据表明,AZAs 对人细胞的作用完全依赖于 ATP 调节的阴离子通道,这些毒素对这些通道的上调可能导致调节性体积减少,并构成了这些化合物报道的毒性的基础。

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