Department of Medicine and Science of Aging, University "G. d'Annunzio" of Chieti Pescara, 66100 Chieti, Italy.
Department of Biosciences and Nutrition, Karolinska Institutet, SE-141 57 Huddinge, Sweden.
Molecules. 2022 Jan 23;27(3):738. doi: 10.3390/molecules27030738.
Like other organs, brain functions diminish with age. Furthermore, for a variety of neurological disorders-including Alzheimer's disease-age is one of the higher-risk factors. Since in many Western countries the average age is increasing, determining approaches for decreasing the effects of aging on brain function is taking on a new urgency. Neuroinflammation and oxidative stress are two convoluted key factors in brain aging and chronic neurodegenerative diseases. The diverseness of factors, causing an age-related decrease in brain functions, requires identifying small molecules that have multiple biological activities that can affect all these factors. One great source of these small molecules is related to polyphenolic flavonoids. Recently, 3,3',4',7-tetrahydroxyflavone (fisetin) has been reported as a potent senotherapeutic capable of extending lifespan by reducing peroxidation levels and enhancing antioxidant cell responses. The neuroprotective effects of fisetin have been shown in several in vitro and in vivo models of neurological disorders due to its actions on multiple pathways associated with different neurological disorders. The present work aims to collect the most recent achievements related to the antioxidant and neuroprotective effects of fisetin. Moreover, in silico pharmacokinetics, pharmacodynamics, and toxicity of fisetin are also comprehensively described along with emerging novel drug delivery strategies for the amelioration of this flavonol bioavailability and chemical stability.
与其他器官一样,大脑功能会随着年龄的增长而衰退。此外,对于包括阿尔茨海默病在内的各种神经退行性疾病,年龄是较高的风险因素之一。由于在许多西方国家,平均年龄正在增加,因此寻找减少衰老对大脑功能影响的方法变得更加紧迫。神经炎症和氧化应激是大脑衰老和慢性神经退行性疾病的两个复杂关键因素。导致与年龄相关的大脑功能下降的因素多种多样,这就需要确定具有多种生物活性的小分子,这些小分子可以影响所有这些因素。这些小分子的一个重要来源与多酚类黄酮有关。最近,3,3',4',7-四羟基黄酮(漆黄素)被报道为一种有效的衰老治疗剂,能够通过降低过氧化水平和增强抗氧化细胞反应来延长寿命。由于其对与不同神经退行性疾病相关的多种途径的作用,漆黄素在几种神经退行性疾病的体外和体内模型中显示出神经保护作用。本研究旨在收集与漆黄素的抗氧化和神经保护作用相关的最新成果。此外,还全面描述了漆黄素的计算药代动力学、药效学和毒性,以及新兴的新型药物输送策略,以改善这种类黄酮的生物利用度和化学稳定性。