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评估新型Kv2.1阻滞剂Zj7923在体外和体内对缺血性中风的神经保护作用。

Evaluating the neuroprotective effects of the novel Kv2.1 blocker Zj7923 against ischemic stroke in vitro and in vivo.

作者信息

Yang Tianjiao, Wang Weiping, Li Zhuo, Cai Jie, Feng Nan, Xu Shaofeng, Wang Ling, Wang Xiaoliang

机构信息

State Key Laboratory of Bioactive Substances and Functions of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.

State Key Laboratory of Bioactive Substances and Functions of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.

出版信息

Neuropharmacology. 2025 Nov 1;278:110537. doi: 10.1016/j.neuropharm.2025.110537. Epub 2025 May 29.

Abstract

The voltage-dependent potassium channel Kv2.1 correlates closely to the regulation of neuronal excitability and cellular apoptosis. Ischemia or oxidative treatment were known to stimulate the surge of Kv2.1-mediated current to activate neuronal apoptosis pathways, while inhibiting excessive Kv2.1 K current efflux could reduce neuronal apoptosis and exhibit neuroprotective effects. Here, we found a novel Kv2.1 selective blocker Zj7923 and investigated whether it produces neuroprotective function after ischemic stroke animal model. We demonstrate that Zj7923 potently inhibits Kv2.1 current with an IC of 0.12 μM. Zj7923 had no obvious effect on the activation process of Kv2.1 channels, but could significantly accelerate the inactivation process of Kv2.1 channels. The mutations at Y380 and K356 in the outer vestibule of Kv2.1 channels weakened the inhibitory effect of Zj7923, and the IC value of Zj7923 on the mutation channels increased to 3.66 μM and 3.20 μM, respectively, indicating that the compound may act on the above two positions. Zj7923 could increase the spontaneous firing rate of normal hippocampal pyramidal neurons and ameliorate OGD-induced impairment of neuronal excitability. Kv2.1 channel inhibition by Zj7923 provides protection against DTDP-induced apoptosis and its mechanism might be related to the modulation of the expression of apoptosis-related proteins, such as Bcl-2, Bax and cleaved caspase-3 proteins. In vivo pharmacodynamics evaluation, intravenous administration of Zj7923 in rats following transient middle cerebral artery occlusion significantly reduced infarct volume and improved neurological deficits. Our results indicate that Zj7923 exerts a neuronal protection from cerebral ischemia in vitro and in vivo by inhibiting Kv2.1 current and validate the potential value of developing drugs targeting Kv2.1 for ischemic stroke.

摘要

电压依赖性钾通道Kv2.1与神经元兴奋性调节和细胞凋亡密切相关。已知缺血或氧化处理会刺激Kv2.1介导的电流激增,从而激活神经元凋亡途径,而抑制Kv2.1钾电流的过度外流可减少神经元凋亡并发挥神经保护作用。在此,我们发现了一种新型的Kv2.1选择性阻滞剂Zj7923,并研究了其在缺血性脑卒中动物模型后是否具有神经保护功能。我们证明Zj7923能有效抑制Kv2.1电流,IC50为0.12μM。Zj7923对Kv2.1通道的激活过程没有明显影响,但能显著加速Kv2.1通道的失活过程。Kv2.1通道外前庭的Y380和K356位点的突变削弱了Zj7923的抑制作用,Zj7923对突变通道的IC50值分别增加到3.66μM和3.20μM,表明该化合物可能作用于上述两个位点。Zj7923可提高正常海马锥体细胞的自发放电频率,并改善氧糖剥夺诱导的神经元兴奋性损伤。Zj7923抑制Kv2.1通道可提供针对3,3'-二硫代二丙酸诱导的细胞凋亡的保护作用,其机制可能与调节凋亡相关蛋白如Bcl-2、Bax和裂解的caspase-3蛋白的表达有关。在体内药效学评价中,短暂性大脑中动脉闭塞后给大鼠静脉注射Zj7923可显著减少梗死体积并改善神经功能缺损。我们的结果表明,Zj7923通过抑制Kv2.1电流在体外和体内发挥对脑缺血的神经保护作用,并验证了开发针对Kv2.1的缺血性脑卒中药物的潜在价值。

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