Institute of Living Systems, Immanuel Kant Baltic Federal University, A. Nevskogo Street 14, Kaliningrad 236016, Russia.
Natural Nutraceutical Biotesting Laboratory, Kemerovo State University, Krasnaya Street 6, Kemerovo 650043, Russia.
Molecules. 2022 Mar 31;27(7):2276. doi: 10.3390/molecules27072276.
Maintaining quality of life with an increase in life expectancy is considered one of the global problems of our time. This review explores the possibility of using natural plant compounds with antioxidant, anti-inflammatory, anti-glycation, and anti-neurodegenerative properties to slow down the onset of age-related changes. Age-related changes such as a decrease in mental abilities, the development of inflammatory processes, and increased risk of developing type 2 diabetes have a significant impact on maintaining quality of life. Herbal preparations can play an essential role in preventing and treating neurodegenerative diseases that accompany age-related changes, including Alzheimer's and Parkinson's diseases. Medicinal plants have known sedative, muscle relaxant, neuroprotective, nootropic, and antiparkinsonian properties. The secondary metabolites, mainly polyphenolic compounds, are valuable substances for the development of new anti-inflammatory and hypoglycemic agents. Understanding how mixtures of plants and their biologically active substances work together to achieve a specific biological effect can help develop targeted drugs to prevent diseases associated with aging and age-related changes. Understanding the mechanisms of the biological activity of plant complexes and mixtures determines the prospects for using metabolomic and biochemical methods to prolong active longevity.
随着预期寿命的延长,维持生活质量被认为是当今全球面临的问题之一。本综述探讨了使用具有抗氧化、抗炎、抗糖基化和抗神经退行性特性的天然植物化合物来减缓与年龄相关的变化的可能性。与年龄相关的变化,如智力下降、炎症过程的发展以及 2 型糖尿病风险的增加,对维持生活质量有重大影响。草药制剂在预防和治疗伴随与年龄相关的变化的神经退行性疾病方面可以发挥重要作用,包括阿尔茨海默病和帕金森病。药用植物具有镇静、肌肉松弛、神经保护、益智和抗帕金森特性。次生代谢物,主要是多酚类化合物,是开发新的抗炎和降血糖药物的有价值物质。了解植物混合物及其生物活性物质如何协同作用以达到特定的生物学效果,可以帮助开发针对与衰老和与年龄相关的变化相关的疾病的靶向药物。了解植物复合物和混合物的生物活性机制决定了使用代谢组学和生化方法延长活跃寿命的前景。