The Multifaceted Effects of Flavonoids on Neuroplasticity

Veronica Rivi, Anuradha Batabyal, Ken Lukowiak
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Abstract

There has been a significant increase in the incidence of multiple neurodegenerative and terminal diseases in the human population with life expectancy increasing in the current times. This highlights the urgent need for a more comprehensive understanding of how different aspects of lifestyle, in particular diet, may affect neural functioning and consequently cognitive performance as well as in enhancing overall health. Flavonoids, found in a variety of fruits, vegetables, and derived beverages, provide a new avenue of research that shows a promising influence on different aspects of brain function. However, despite the promising evidence, most bioactive compounds lack strong clinical research efficacy. In the current scoping review, we highlight the effects of Flavonoids on cognition and neural plasticity across vertebrates and invertebrates with special emphasis on the studies conducted in the pond snail, Lymnaea stagnalis, which has emerged to be a functionally dynamic model for studies on learning and memory. In conclusion, we suggest future research directions and discuss the social, cultural, and ethnic dependencies of bioactive compounds that influence how these compounds are used and accepted globally. Bridging the gap between preclinical and clinical studies about the effects of bioactive natural compounds on brain health will surely lead to lifestyle choices such as dietary Flavonoids being used complementarily rather than as replacements to classical drugs bringing about a healthier future.
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黄酮类化合物对神经可塑性的多方面影响
随着人类预期寿命的延长,多种神经退行性疾病和终末期疾病的发病率显著增加。这凸显了迫切需要更全面地了解生活方式的不同方面,特别是饮食,如何影响神经功能,从而影响认知表现,以及增强整体健康。黄酮类化合物存在于各种水果、蔬菜和衍生饮料中,为研究提供了一条新的途径,显示了对大脑功能不同方面的有希望的影响。然而,尽管有良好的证据,大多数生物活性化合物缺乏强大的临床研究功效。在当前的范围综述中,我们重点介绍了黄酮类化合物对脊椎动物和无脊椎动物认知和神经可塑性的影响,并特别强调了对池塘蜗牛(lynaea滞螺)的研究,它已成为学习和记忆研究的功能动态模型。最后,我们提出了未来的研究方向,并讨论了影响生物活性化合物如何在全球范围内使用和接受的社会、文化和民族依赖性。关于生物活性天然化合物对大脑健康的影响的临床前研究和临床研究之间的差距弥合,肯定会导致生活方式的选择,如膳食类黄酮被用作补充,而不是作为经典药物的替代品,带来更健康的未来。
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Erratum to: Flavonoids as an Intervention for Alzheimer's Disease: Progress and Hurdles Towards Defining a Mechanism of Action. Maintaining a Dynamic Brain: A Review of Empirical Findings Describing the Roles of Exercise, Learning, and Environmental Enrichment in Neuroplasticity from 2017-2023. The Multifaceted Effects of Flavonoids on Neuroplasticity Nicotinamide Mononucleotide Prevents Cisplatin-Induced Mitochondrial Defects in Cortical Neurons Derived from Human Induced Pluripotent Stem Cells. Proceedings from the Albert Charitable Trust Inaugural Workshop on 'Understanding the Acute Effects of Exercise on the Brain'.
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