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系统药理学方法揭示了小檗胺对抗东莨菪碱诱导的记忆丧失的治疗机制。

Systems pharmacology approach uncovers the therapeutic mechanism of medicarpin against scopolamine-induced memory loss.

机构信息

Science and Technology Innovation Center, Guangzhou University of Chinese Medicine, Guangzhou, 510405, China; The Second Affiliated Hospital, Guangzhou University of Chinese Medicine, Guangzhou, 510404, China.

Division of Data Intelligence, Department of Computer Science, Key Laboratory of Intelligent Manufacturing Technology of Ministry of Education, Shantou University, Shantou, China.

出版信息

Phytomedicine. 2021 Oct;91:153662. doi: 10.1016/j.phymed.2021.153662. Epub 2021 Jul 16.

Abstract

BACKGROUND

Medicarpin is a natural pterocarpan-type phytoalexin widely distributed in many traditional Chinese medicines, such as Astragali Radix. A previous study showed that Astragali Radix demonstrated promising protective effects in neurons. However, there is no reported study on the neuroprotective function and the underlying mechanism of Medicarpin.

PURPOSE

This study aimed to demonstrate the neuroprotective effect of Medicarpin on Alzheimer's disease (AD) and explore the therapeutic mechanisms.

METHOD

First, we carried out animal behavioral tests and biochemical analysis to assess the anti-AD potential of Medicarpin for ameliorating spatial learning and memory and modulating cholinergic metabolism in scopolamine-induced amnesic mice. Subsequently, network proximity prediction was used to measure the network distance between the Medicarpin target network and AD-related endophenotype module. We identified Medicarpin-regulated AD pathological processes and highlighted the key disease targets via network analysis. Finally, experimental approaches including Nissl staining and Western blotting were conducted to validate our network-based findings.

RESULT

In this study, we first observed that Medicarpin can ameliorate cognitive and memory dysfunction and significantly modulate cholinergic metabolism in scopolamine-induced amnesic mice. We then proposed an endophenotype network-based framework to comprehensively explore the AD therapeutic mechanisms of Medicarpin by integrating 25 AD-related endophenotype modules, gold-standard AD seed genes, an experimentally validated drug-target network of Medicarpin, and a global human protein-protein interactome. In silico prediction revealed that the effect of Medicarpin is highly relevant to neuronal apoptosis and synaptic plasticity, which was validated by experimental assays. Network analysis and Western blotting further identified two key targets, GSK-3β and MAPK14 (p38), in the AD-related protein regulatory network, which play key roles in the regulation of neuronal apoptosis and synaptic plasticity by Medicarpin.

CONCLUSIONS

This study presented a powerful endophenotype network-based strategy to explore the mechanisms of action (MOAs) of new AD therapeutics, and first identified Medicarpin as a potential anti-AD candidate by targeting multiple pathways.

摘要

背景

芒柄花素是一种广泛存在于多种中药(如黄芪)中的天然紫檀烷型植物抗毒素。先前的研究表明,黄芪在神经元中表现出有希望的保护作用。然而,目前尚无关于芒柄花素的神经保护功能及其潜在机制的报道。

目的

本研究旨在证明芒柄花素对阿尔茨海默病(AD)的神经保护作用,并探讨其治疗机制。

方法

首先,我们通过动物行为学测试和生化分析,评估芒柄花素通过改善空间学习和记忆以及调节东莨菪碱诱导的健忘型小鼠的胆碱能代谢,来改善 AD 的潜力。随后,使用网络接近预测来测量芒柄花素靶标网络与 AD 相关内表型模块之间的网络距离。我们通过网络分析确定了芒柄花素调节的 AD 病理过程,并突出了关键疾病靶点。最后,通过尼氏染色和 Western blot 实验验证了我们的网络发现。

结果

在本研究中,我们首先观察到芒柄花素可以改善认知和记忆功能障碍,并显著调节东莨菪碱诱导的健忘型小鼠的胆碱能代谢。然后,我们提出了一个内表型网络框架,通过整合 25 个 AD 相关内表型模块、AD 种子基因标准、芒柄花素的实验验证药物靶标网络和全球人类蛋白质-蛋白质相互作用网络,全面探索芒柄花素的 AD 治疗机制。基于计算预测,芒柄花素的作用与神经元凋亡和突触可塑性高度相关,这一结果通过实验验证得到了进一步证实。网络分析和 Western blot 进一步确定了 AD 相关蛋白质调控网络中的两个关键靶点,即 GSK-3β和 MAPK14(p38),它们在芒柄花素调节神经元凋亡和突触可塑性方面发挥关键作用。

结论

本研究提出了一种强大的内表型网络策略,用于探索新型 AD 治疗药物的作用机制(MOA),并首次确定芒柄花素通过靶向多个途径成为一种潜在的抗 AD 候选药物。

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