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缓慢延迟整流钾电流(IKs)-体外抑制数据的分析及预测模型的建立。

Slow delayed rectifying potassium current (IKs ) - analysis of the in vitro inhibition data and predictive model development.

机构信息

Department of Toxicology, Faculty of Pharmacy, Medical College, Jagiellonian University, Cracow, Poland.

出版信息

J Appl Toxicol. 2013 Aug;33(8):723-39. doi: 10.1002/jat.2719. Epub 2012 Feb 14.

Abstract

The excitable cell membranes contain ion channels that allow the ions passage through the specific pores via a passive process. Assessment of the inhibition of the IKr (hERG) current is considered to be the main target during the drug development process, although there are other ionic currents for which drug-triggered modification can either potentiate or mask hERG channel blockade. Information describing the results of in vitro studies investigating the chemical-IKs current interactions has been developed in the current study. Based on the publicly available data sources, 145 records were collected. The final list of publications consists of 64 positions and refers to 106 different molecules connected with IKs current inhibition, with at least one IC50 value measured. Ultimately, 98 of the IC50 values expressed as absolute values were gathered. For 36 records the IC50 was expressed as a relative value. For the 11 remaining records, the inhibition was not clearly expressed. Based on the collected data the predictive models for the IC50 estimation were developed with the use of various algorithms. The extended Quantitative Structure-Activity Relationships (QSAR) methodology was applied and the in vitro research settings were included as independent variables, apart from the physico-chemical descriptors calculated with the use of the Marvin Calculator Plugins. The root mean squared error and normalized root mean squared error values for the best model (an expert system based on two independent artificial neural networks) were 0.86 and 14.04%, respectively. The model was further built into the ToxComp system, the ToxIVIVE tool specialized for cardiotoxicity assessment of drugs.

摘要

兴奋细胞的细胞膜包含离子通道,允许离子通过特定的孔道进行被动转运。在药物开发过程中,评估 IKr(hERG)电流的抑制作用被认为是主要目标,尽管还有其他离子电流,药物触发的修饰可以增强或掩盖 hERG 通道阻断。本研究旨在描述体外研究中化学-IKs 电流相互作用的结果信息。基于公开的数据源,共收集了 145 条记录。最终的出版物列表包括 64 个位置,涉及与 IKs 电流抑制相关的 106 个不同分子,至少有一个 IC50 值被测量。最终,共收集到 98 个以绝对值表示的 IC50 值。对于 36 个记录,IC50 值以相对值表示。对于其余 11 个记录,抑制作用未明确表达。基于收集的数据,使用各种算法开发了用于 IC50 估计的预测模型。应用了扩展的定量构效关系(QSAR)方法,并将体外研究设置作为独立变量,除了使用 Marvin Calculator Plugins 计算的物理化学描述符。最佳模型(基于两个独立人工神经网络的专家系统)的均方根误差和归一化均方根误差值分别为 0.86 和 14.04%。该模型进一步构建到 ToxComp 系统中,该系统是专门用于药物心脏毒性评估的 ToxIVIVE 工具。

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