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甘氨酸转运蛋白-1 抑制剂伊克立亭(BI 425809)对与精神分裂症相关的动物模型中的感觉处理、神经网络功能和认知的影响。

Effects of the Glycine Transporter-1 Inhibitor Iclepertin (BI 425809) on Sensory Processing, Neural Network Function, and Cognition in Animal Models Related to Schizophrenia.

机构信息

Department of CNS Discovery Research (H.R., C.D.-C., N.S.), Department of Medicinal Chemistry (R.G.), and Department of Drug Discovery Sciences (B.S.), Boehringer Ingelheim Pharma GmbH & Co. KG, Biberach an der Riss, Germany

Department of CNS Discovery Research (H.R., C.D.-C., N.S.), Department of Medicinal Chemistry (R.G.), and Department of Drug Discovery Sciences (B.S.), Boehringer Ingelheim Pharma GmbH & Co. KG, Biberach an der Riss, Germany.

出版信息

J Pharmacol Exp Ther. 2022 Aug;382(2):223-232. doi: 10.1124/jpet.121.001071. Epub 2022 Jun 5.

Abstract

-methyl-D-aspartate (NMDA) receptor hypofunction leading to neural network dysfunction is thought to play an important role in the pathophysiology of cognitive impairment associated with schizophrenia (CIAS). Increasing extracellular concentrations of the NMDA receptor co-agonist glycine through inhibition of glycine transporter-1 (GlyT1) has the potential to treat CIAS by improving cortical network function through enhanced glutamatergic signaling. Indeed, the novel GlyT1 inhibitor iclepertin (BI 425809) improved cognition in a recent clinical study in patients with schizophrenia. The present study tested the ability of iclepertin to reverse deficits in auditory sensory processing and cortical network function induced by the uncompetetive NMDA receptor antagonist, MK-801, using electroencephalography (EEG) to measure auditory event-related potentials (AERPs) and 40 Hz auditory steady-state response (ASSR). In addition, improvements in memory performance with iclepertin were evaluated using the T-maze spontaneous alternation test in MK-801-treated mice and the social recognition test in naïve rats. Iclepertin reversed MK-801-induced deficits in the AERP readouts N1 amplitude and N1 gating, as well as reversing deficits in 40 Hz ASSR power and intertrial coherence. Additionally, iclepertin significantly attenuated an MK-801-induced increase in basal gamma power. Furthermore, iclepertin reversed MK-801-induced working memory deficits in mice and improved social recognition memory performance in rats. Overall, this study demonstrates that inhibition of GlyT1 is sufficient to attenuate MK-801-induced deficits in translatable EEG parameters relevant to schizophrenia. Moreover, iclepertin showed memory-enhancing effects in rodent cognition tasks, further demonstrating the potential for GlyT1 inhibition to treat CIAS. SIGNIFICANCE STATEMENT: Despite the significant patient burden caused by cognitive impairment associated with schizophrenia, there are currently no approved pharmacotherapies. In this preclinical study, the novel glycine transporter inhibitor iclepertin (BI 425809) reversed sensory processing deficits and neural network dysfunction evoked by inhibition of -methyl-D-aspartate receptors and enhanced working memory performance and social recognition in rodents. These findings support previous clinical evidence for the procognitive effects of iclepertin.

摘要
  • 甲基-D-天冬氨酸 (NMDA) 受体功能低下导致神经网络功能障碍被认为在与精神分裂症相关的认知障碍 (CIAS) 的病理生理学中发挥重要作用。通过抑制甘氨酸转运体-1 (GlyT1) 增加 NMDA 受体共激动剂甘氨酸的细胞外浓度,有可能通过增强谷氨酸能信号来改善皮质网络功能,从而治疗 CIAS。事实上,新型 GlyT1 抑制剂 iclepertin (BI 425809) 在最近一项针对精神分裂症患者的临床研究中改善了认知。本研究使用脑电图 (EEG) 测量听觉事件相关电位 (AERP) 和 40 Hz 听觉稳态反应 (ASSR),测试 iclepertin 逆转非竞争性 NMDA 受体拮抗剂 MK-801 诱导的听觉感觉处理和皮质网络功能缺陷的能力。此外,使用 MK-801 处理的小鼠的 T 迷宫自发交替测试和大鼠的社会识别测试评估了 iclepertin 对记忆表现的改善。Iclepertin 逆转了 MK-801 诱导的 AERP 读出 N1 幅度和 N1 门控的缺陷,以及逆转了 40 Hz ASSR 功率和试验间相干性的缺陷。此外,Iclepertin 显著减弱了 MK-801 诱导的基础伽马功率的增加。此外,Iclepertin 逆转了 MK-801 诱导的小鼠工作记忆缺陷,并改善了大鼠的社会识别记忆表现。总体而言,这项研究表明抑制 GlyT1 足以减轻与精神分裂症相关的可翻译 EEG 参数中 MK-801 诱导的缺陷。此外,Iclepertin 在啮齿动物认知任务中表现出增强记忆的作用,进一步证明了抑制 GlyT1 治疗 CIAS 的潜力。

意义声明

尽管与精神分裂症相关的认知障碍给患者带来了巨大的负担,但目前尚无批准的药物治疗方法。在这项临床前研究中,新型甘氨酸转运体抑制剂 iclepertin (BI 425809) 逆转了由抑制 - 甲基 - D - 天冬氨酸受体引起的感觉处理缺陷和神经网络功能障碍,并增强了啮齿动物的工作记忆表现和社会识别。这些发现支持了 iclepertin 以前的临床认知效应证据。

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