探索类黄酮对大脑功能的潜能:三种酚类化合物对脑电活动的影响

Hilal ÖZTÜRK, Harun BAŞOĞLU, Selcen ABİDİN, İsmail ABİDİN
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引用次数: 0

摘要

背景:生物体通过食物链吸收的最常见的多酚类化合物是类黄酮。众所周知,7,8- dhf、l -茶氨酸和非塞酮可以穿过血脑屏障,据报道,它们对神经元有影响,对神经退行性疾病也有治疗潜力。然而,人们对它们对神经元功能的急性影响知之甚少。本研究旨在描述上述黄酮类化合物对健康小鼠ECoG总活性和条带分析的影响。材料与方法:以黄酮类化合物为研究对象,每组7人,设3组。基线电生理记录后,进行黄酮给药并确定急性效应。结果:7.8-DHF增加了θ、α和β带活性,降低了ECoG总功率。l -茶氨酸和非瑟酮对ECoG总活性没有显著影响。然而,l -茶氨酸在统计上增加了θ、α和β带的活性。结论:综上所述,黄酮类化合物对大鼠脑电反应具有明显的调节作用。它们可以作为中枢神经系统疾病药物发现研究的候选分子。
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Flavonoidlerin Beyin Fonksiyonu Üzerindeki Potansiyellerini Keşfetmek: Üç Fenolik Bileşiğin Beyin Elektriksel Aktivitesi Üzerindeki Etkileri
Background: The most common polyphenolic compounds taken up by the organism through the food chain are flavonoids. Known to cross the blood-brain barrier, 7,8-DHF, L-theanine and Fisetin are re-ported to have neuronal effects as well as therapeutic potential for neurodegenerative diseases. How-ever, little is known on their acute effects of neuronal function. This study aims to describe the effects of the mentioned flavonoids on the total ECoG activities and band analyzes of healthy mice. Materials and Methods: For this purpose, 3 different groups consisting of 7 subjects were created for each flavonoid administration. After the baseline electrophysiological recordings, flavonoid administra-tion was performed and acute effects were determined. Results: 7.8-DHF increased the theta, alpha and beta band activities while decreasing the total ECoG power. L-theanine and Fisetin did not significantly alter the total ECoG activity. However, L-theanine statistically increased theta, alpha and beta band activities. Conclusions: In conclusion, our data showed that flavonoids could acutely modulate the ECoG respons-es in a band specific manner. They can be considered as candidate molecules for drug discovery studies for central nervous system disorders.
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