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合成卡西酮对单胺转运体的电生理作用。

Electrophysiological Actions of Synthetic Cathinones on Monoamine Transporters.

作者信息

Solis Ernesto

机构信息

In Vivo Electrophysiology Unit, Behavioral Neuroscience Research Branch, National Institute on Drug Abuse - Intramural Research Program, National Institutes of Health, Triad Technology Center, 333 Cassell Drive, Suite 2200, Baltimore, MD, 21224, USA.

出版信息

Curr Top Behav Neurosci. 2017;32:73-92. doi: 10.1007/7854_2016_39.

Abstract

Products containing psychoactive synthetic cathinones, such as mephedrone and 3,4-methylenedioxypyrovalerone (MDPV) are prevalent in our society. Synthetic cathinones are structurally similar to methamphetamine, and numerous synthetics have biological activity at dopamine, serotonin, and norepinephrine transporters. Importantly, monoamine transporters co-transport sodium ions along with their substrate, and movement of substrates and ions through the transporter can generate measurable ionic currents. Here we review how electrophysiological information has enabled us to determine how synthetic cathinones affect transporter-mediated currents in cells that express these transporters. Specifically, drugs that act as transporter substrates induce inward depolarizing currents when cells are held near their resting membrane potential, whereas drugs that act as transporter blockers induce apparent outward currents by blocking an inherent inward leak current. We have employed the two-electrode voltage-clamp technique in Xenopus laevis oocytes overexpressing monoamine transporters to determine whether synthetic cathinones found in the so-called bath salts products behave as blockers or substrates. We also examined the structure-activity relationships for synthetic cathinone analogs related to the widely abused compound MDPV, a common constituent in "bath salts" possessing potent actions at the dopamine transporter.

摘要

含有精神活性合成卡西酮的产品,如甲麻黄碱和3,4-亚甲基二氧吡咯戊酮(MDPV),在我们的社会中很普遍。合成卡西酮在结构上与甲基苯丙胺相似,并且许多合成物在多巴胺、5-羟色胺和去甲肾上腺素转运体上具有生物活性。重要的是,单胺转运体与其底物共同转运钠离子,底物和离子通过转运体的移动会产生可测量的离子电流。在这里,我们回顾了电生理信息如何使我们能够确定合成卡西酮如何影响表达这些转运体的细胞中由转运体介导的电流。具体而言,当细胞保持在其静息膜电位附近时,作为转运体底物起作用的药物会诱导内向去极化电流,而作为转运体阻滞剂起作用的药物会通过阻断固有内向泄漏电流来诱导明显的外向电流。我们在过表达单胺转运体的非洲爪蟾卵母细胞中采用双电极电压钳技术,以确定在所谓的浴盐产品中发现的合成卡西酮是作为阻滞剂还是底物起作用。我们还研究了与广泛滥用的化合物MDPV相关的合成卡西酮类似物的构效关系,MDPV是“浴盐”中的常见成分,对多巴胺转运体具有强效作用。

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Neurotoxicology of Synthetic Cathinone Analogs.合成卡西酮类似物的神经毒理学
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Neuropharmacology of Synthetic Cathinones.合成卡西酮的神经药理学
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本文引用的文献

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Chloride requirement for monoamine transporters.单胺转运体对氯离子的需求。
Pflugers Arch. 2016 Mar;468(3):503-11. doi: 10.1007/s00424-015-1783-4. Epub 2016 Jan 22.
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Synthetic cathinones ("bath salts").合成卡西酮(“浴盐”)。
J Emerg Med. 2014 May;46(5):632-42. doi: 10.1016/j.jemermed.2013.11.104. Epub 2014 Feb 22.
8
Designer psychostimulants: pharmacology and differences.设计型精神兴奋剂:药理学及差异
Neuropharmacology. 2014 Dec;87:59-65. doi: 10.1016/j.neuropharm.2014.01.015. Epub 2014 Jan 20.
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Khat and synthetic cathinones: a review.阿拉伯茶和合成卡西酮:综述。
Arch Toxicol. 2014 Jan;88(1):15-45. doi: 10.1007/s00204-013-1163-9. Epub 2013 Dec 8.

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