Therapeutic Potential of Quercetin and its Derivatives in Epilepsy: Evidence from Preclinical Studies.

IF 3.3 4区 医学 Q2 NEUROSCIENCES
Chandra Prakash, Jyoti Tyagi, Shyam Sunder Rabidas, Vijay Kumar, Deepak Sharma
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引用次数: 3

Abstract

Quercetin is a polyphenolic bioactive compound highly enriched in dietary fruits, vegetables, nuts, and berries. Quercetin and its derivatives like rutin and hyperoside are known for their beneficial effects in various neurological conditions including epilepsy. The clinical studies of quercetin and its derivatives in relation to epilepsy are limited. This review provides the evidence of most recent knowledge of anticonvulsant properties of quercetin and its derivatives on preclinical studies. Additionally, the studies demonstrating antiseizure potential of various plants extracts enriched with quercetin and its derivatives has been included in this review. Herein, we have also discussed neuroprotective effect of these bioactive compound and presented underlying mechanisms responsible for anticonvulsant properties in brief. Finally, limitations of quercetin and its derivatives as antiseizure compounds as well as possible strategies to enhance efficacy have also been discussed.

Abstract Image

槲皮素及其衍生物治疗癫痫的潜力:来自临床前研究的证据。
槲皮素是一种多酚类生物活性化合物,富含水果、蔬菜、坚果和浆果。槲皮素及其衍生物,如芦丁和金丝桃苷,因其对包括癫痫在内的各种神经系统疾病的有益作用而闻名。槲皮素及其衍生物与癫痫的临床研究有限。本文综述了槲皮素及其衍生物在临床前研究中抗惊厥特性的最新进展。此外,本文还对各种富含槲皮素及其衍生物的植物提取物抗癫痫作用的研究进行了综述。在此,我们还讨论了这些生物活性化合物的神经保护作用,并简要介绍了抗惊厥特性的潜在机制。最后,本文还讨论了槲皮素及其衍生物作为抗癫痫化合物的局限性以及提高其疗效的可能策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
NeuroMolecular Medicine
NeuroMolecular Medicine 医学-神经科学
CiteScore
7.10
自引率
0.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: NeuroMolecular Medicine publishes cutting-edge original research articles and critical reviews on the molecular and biochemical basis of neurological disorders. Studies range from genetic analyses of human populations to animal and cell culture models of neurological disorders. Emerging findings concerning the identification of genetic aberrancies and their pathogenic mechanisms at the molecular and cellular levels will be included. Also covered are experimental analyses of molecular cascades involved in the development and adult plasticity of the nervous system, in neurological dysfunction, and in neuronal degeneration and repair. NeuroMolecular Medicine encompasses basic research in the fields of molecular genetics, signal transduction, plasticity, and cell death. The information published in NEMM will provide a window into the future of molecular medicine for the nervous system.
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