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解码癫痫:Prickle2与多方面分子通路联系

Decoding Epilepsy: Prickle2 and Multifaceted Molecular Pathway Connections.

作者信息

Liu Yuhang, Peng Fan, Shu Jie, Li Xiaolan, Yuan Chengfu

机构信息

Hubei Key Laboratory of Tumor Microenvironment and Immunotherapy, China Three Gorges University, Yichang, Hubei, China.

College of Basic Medical Science, China Three Gorges University, Yichang 443002, China.

出版信息

Curr Pharm Des. 2025;31(14):1130-1145. doi: 10.2174/0113816128333500241031100623.

Abstract

BACKGROUND

The Prickle2 (Pk2) gene shows promising potential in uncovering the underlying causes of epilepsy, a neurological disorder that is currently not well understood. This paper utilizes the online tool PubMed to gather and condense information on the involvement of PCP channels and the associated roles of PCP pathway molecules in the onset of epilepsy. These findings are significant for advancing epilepsy treatment. Additionally, the paper discusses future directions for clinical trials and outlines potential therapeutic targets.

METHODS

This review systematically analyzes the biological functions and mechanisms of the Prickle2 gene in epilepsy. Studies were retrieved from PubMed using keywords such as "Prickle2", "epilepsy", and "PCP pathway", focusing on research published between 2000 and 2023 in English. Inclusion criteria included original studies and reviews on Prickle2's role in epilepsy. Studies unrelated to these topics or lacking sufficient data were excluded. Key data on Prickle2's functions and its link to epilepsy were extracted, and findings were summarized after a quality assessment of the literature.

RESULTS

Although there are currently conflicting results regarding the possibility that Prickle2 may cause epilepsy in different organisms, we believe that as more cases involving Prickle2 mutations are reported and more related animal experiments are conducted, the findings will become clearer.

CONCLUSION

Due to the biological functions and mechanisms associated with the Prickle2 protein, it may serve as a useful biomarker or potential therapeutic target for epilepsy treatment.

摘要

背景

棘状蛋白2(Pk2)基因在揭示癫痫的潜在病因方面显示出有前景的潜力,癫痫是一种目前尚未被充分理解的神经系统疾病。本文利用在线工具PubMed收集并浓缩了有关PCP通道的参与情况以及PCP通路分子在癫痫发作中的相关作用的信息。这些发现对推进癫痫治疗具有重要意义。此外,本文还讨论了临床试验的未来方向并概述了潜在的治疗靶点。

方法

本综述系统分析了Prickle2基因在癫痫中的生物学功能和机制。使用“Prickle2”、“癫痫”和“PCP通路”等关键词从PubMed检索研究,重点关注2000年至2023年以英文发表的研究。纳入标准包括关于Prickle2在癫痫中作用的原始研究和综述。排除与这些主题无关或缺乏足够数据的研究。提取了关于Prickle2功能及其与癫痫联系的关键数据,并在对文献进行质量评估后总结了研究结果。

结果

尽管目前关于Prickle2在不同生物体中是否可能导致癫痫存在相互矛盾的结果,但我们认为随着更多涉及Prickle2突变的病例被报道以及更多相关动物实验的开展,结果将变得更加清晰。

结论

由于与Prickle2蛋白相关的生物学功能和机制,它可能成为癫痫治疗的有用生物标志物或潜在治疗靶点。

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