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VU0606170,一种选择性缝隙连接抑制剂,降低培养皮质神经元中的钙振荡。

VU0606170, a Selective Slack Channels Inhibitor, Decreases Calcium Oscillations in Cultured Cortical Neurons.

机构信息

Department of Pharmacology, Vanderbilt University, Nashville, Tennessee 37232, United States.

Department of Pharmaceutical Sciences, UNT System College of Pharmacy, University of North Texas Health Science Center, Fort Worth, Texas 76107, United States.

出版信息

ACS Chem Neurosci. 2020 Nov 4;11(21):3658-3671. doi: 10.1021/acschemneuro.0c00583. Epub 2020 Oct 14.

Abstract

Malignant migrating partial seizures of infancy is a rare, devastating form of epilepsy most commonly associated with gain-of-function mutations in the potassium channel, Slack. Not only is this condition almost completely pharmacoresistant, there are not even selective drug-like tools available to evaluate whether inhibition of these overactivated, mutant Slack channels may represent a viable path forward toward new antiepileptic therapies. Therefore, we used a high-throughput thallium flux assay to screen a drug-like, 100 000-compound library in search of inhibitors of both wild-type and a disease-associated mutant Slack channel. Using this approach, we discovered VU0606170, a selective Slack channel inhibitor with low micromolar potency. Critically, VU0606170 also proved effective at significantly decreasing the firing rate in overexcited, spontaneously firing cortical neuron cultures. Taken together, our data provide compelling evidence that selective inhibition of Slack channel activity can be achieved with small molecules and that inhibition of Slack channel activity in neurons produces efficacy consistent with an antiepileptic effect. Thus, the identification of VU0606170 provides a much-needed tool for advancing our understanding of the role of the Slack channel in normal physiology and disease as well as its potential as a target for therapeutic intervention.

摘要

婴儿移行性部分性癫痫发作是一种罕见的、破坏性的癫痫形式,最常与钾通道 Slack 的功能获得性突变相关。这种情况不仅几乎完全对药物有抗药性,甚至没有可用的选择性药物样工具来评估抑制这些过度激活的突变 Slack 通道是否可能代表新抗癫痫治疗的可行途径。因此,我们使用高通量铊通量测定法筛选了一个类似药物的、包含 10 万个化合物的文库,以寻找野生型和疾病相关突变型 Slack 通道的抑制剂。使用这种方法,我们发现了 VU0606170,一种对野生型和疾病相关突变型 Slack 通道都具有低微摩尔效力的选择性 Slack 通道抑制剂。至关重要的是,VU0606170 还被证明在过度兴奋、自发放电的皮质神经元培养物中显著降低放电率方面非常有效。总之,我们的数据提供了令人信服的证据,表明可以使用小分子选择性抑制 Slack 通道活性,并且抑制神经元中的 Slack 通道活性产生与抗癫痫作用一致的疗效。因此,VU0606170 的鉴定为我们理解 Slack 通道在正常生理和疾病中的作用以及它作为治疗干预靶点的潜力提供了急需的工具。

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