药物增强成年海马神经发生改善年轻和老年雄性小鼠的行为模式分离。

IF 4 Q2 NEUROSCIENCES
Biological psychiatry global open science Pub Date : 2024-11-20 eCollection Date: 2025-03-01 DOI:10.1016/j.bpsgos.2024.100419
Wei-Li Chang, Karly Tegang, Benjamin A Samuels, Michael Saxe, Juergen Wichmann, Denis J David, Indira Mendez David, Angélique Augustin, Holger Fischer, Sabrina Golling, Jens Lamerz, Doris Roth, Martin Graf, Sannah Zoffmann, Luca Santarelli, Ravi Jagasia, René Hen
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引用次数: 0

摘要

背景:行为模式分离(BPS)的损伤——区分相似情境或经历的能力——会导致记忆干扰和过度概括,在许多神经精神疾病中都可以看到,包括抑郁、焦虑、创伤后应激障碍、痴呆和与年龄相关的认知衰退。虽然BPS依赖于齿状回,并且对成人海马神经发生的变化敏感,但其作为药理靶点的意义尚未得到验证。方法:在本研究中,我们应用人类神经干细胞高通量筛选级联来鉴定增加人类神经发生的化合物。一种具有良好特征的化合物RO6871135随后在年轻和老年小鼠身上进行了测试,以观察其对BPS和焦虑相关行为的影响。结果:慢性治疗RO6871135 (7.5 mg/kg)增加了幼龄和老年小鼠成年海马神经发生,改善了恐惧辨别任务中的BPS。RO6871135治疗也降低了先天性焦虑样行为,这在暴露于慢性皮质酮的小鼠中更为明显。海马辐照消融成人海马神经发生支持ro6871135诱导的BPS改善的神经发生依赖机制。为了确定可能的作用机制,进行了体外和体内激酶抑制和化学蛋白质组学分析。这些实验表明,RO6871135抑制CDK8、CDK11、CaMKIIa、CaMKIIb、MAP2K6和GSK-3β。一种类似物也显示出对CDK8、CaMKIIa和GSK-3β的高亲和力。结论:这些研究展示了一种可以改善BPS的新型神经源性化合物的经验鉴定和临床前测试方法,并指出了可能的新机制,可以用于开发改善特定内表型(如BPS受损)的新疗法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pharmacological Enhancement of Adult Hippocampal Neurogenesis Improves Behavioral Pattern Separation in Young and Aged Male Mice.

Background: Impairments in behavioral pattern separation (BPS)-the ability to distinguish between similar contexts or experiences-contribute to memory interference and overgeneralization seen in many neuropsychiatric conditions, including depression, anxiety, posttraumatic stress disorder, dementia, and age-related cognitive decline. Although BPS relies on the dentate gyrus and is sensitive to changes in adult hippocampal neurogenesis, its significance as a pharmacological target has not been tested.

Methods: In this study, we applied a human neural stem cell high-throughput screening cascade to identify compounds that increase human neurogenesis. One compound with a favorable profile, RO6871135, was then tested in young and aged mice for effects on BPS and anxiety-related behaviors.

Results: Chronic treatment with RO6871135 (7.5 mg/kg) increased adult hippocampal neurogenesis and improved BPS in a fear discrimination task in both young and aged mice. RO6871135 treatment also lowered innate anxiety-like behavior, which was more apparent in mice exposed to chronic corticosterone. Ablation of adult hippocampal neurogenesis by hippocampal irradiation supported a neurogenesis-dependent mechanism for RO6871135-induced improvements in BPS. To identify possible mechanisms of action, in vitro and in vivo kinase inhibition and chemical proteomics assays were performed. These tests indicated that RO6871135 inhibited CDK8, CDK11, CaMKIIa, CaMKIIb, MAP2K6, and GSK-3β. An analog compound also demonstrated high affinity for CDK8, CaMKIIa, and GSK-3β.

Conclusions: These studies demonstrate a method for empirical identification and preclinical testing of novel neurogenic compounds that can improve BPS and point to possible novel mechanisms that can be interrogated for the development of new therapies to improve specific endophenotypes such as impaired BPS.

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Biological psychiatry global open science
Biological psychiatry global open science Psychiatry and Mental Health
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