微藻作为功能性食品在线粒体保护和促进健康衰老中的应用潜力

L. Zanella, F. Vianello
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引用次数: 3

摘要

西方国家人口的迅速老龄化使得越来越有必要促进健康的生活方式,以预防/延缓与年龄有关的疾病的发生。使用功能性食品可以显著地帮助实现这一目标,这要归功于生物活性化合物的贡献,这些化合物适合保护细胞和代谢稳态免受应激因素造成的损害。事实上,不正确的饮食和行为习惯导致活性氧(ROS)的过量产生,被认为是氧化应激的原因,而氧化应激反过来又有利于组织和生物体衰老。微藻具有浓缩omega-3多不饱和脂肪酸、甾醇、酚类化合物、类胡萝卜素等多种活性物质的能力,是一种方便、适宜的功能性食品。在细胞内,线粒体是受氧化应激产生的分子损伤积累影响最大的细胞器。由于线粒体除了为细胞代谢产生化学能外,还控制着许多细胞周期调节过程,包括固有凋亡、对炎症信号的反应和其他生化途径,因此它们的功能障碍被认为是许多病理的决定性因素。其中还发现了神经系统、心血管系统、肾功能等退行性疾病,甚至癌症。从这个角度来看,微藻的生物活性化合物除了具有高抗氧化性能外,还可以通过调节多种保护因子和酶的表达来增强线粒体功能,从而调节一些必要的生化途径,以保持细胞的功能完整性。本文就微藻化合物在调节线粒体生命周期、保护和修复酶的表达、内在凋亡的调节以及一些关键生化途径方面的作用进行综述。特别注意的是一些可培养的微藻菌株的组成,因为它们富含保护和改善线粒体功能的活性化合物。
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Potential of Microalgae as Functional Foods Applied to Mitochondria Protection and Healthy Aging Promotion
The rapid aging of the Western countries’ populations makes increasingly necessary the promotion of healthy lifestyles in order to prevent/delay the onset of age-related diseases. The use of functional foods can significantly help to achieve this aim, thanks to the contribution of biologically active compounds suitable to protect cellular and metabolic homeostasis from damage caused by stress factors. Indeed, the excessive production of reactive oxygen species (ROS), favored by incorrect eating and behavioral habits, are considered causal elements of oxidative stress, which in turn favors tissue and organism aging. Microalgae represent a convenient and suitable functional food because of their extraordinary ability to concentrate various active compounds, comprising omega-3 polyunsaturated fatty acids, sterols, phenolic compounds, carotenoids and others. Within cells, mitochondria are the cellular organelles most affected by the accumulation of molecular damage produced by oxidative stress. Since, in addition to producing the chemical energy for cellular metabolism, mitochondria control numerous cell cycle regulation processes, including intrinsic apoptosis, responses to inflammatory signals and other biochemical pathways, their dysfunction is considered decisive for many pathologies. Among these, some degenerative diseases of the nervous system, cardiovascular system, kidney function and even cancer are found. From this viewpoint, bioactive compounds of microalgae, in addition to possessing high antioxidant properties, can enhance mitochondrial functionality by modulating the expression of numerous protective factors and enzymes, which in turn regulate some essential biochemical pathways for the preservation of the functional integrity of the cell. Here, we summarize the current knowledge on the role played by microalgal compounds in the regulation of the mitochondrial life cycle, expression of protective and reparative enzymes, regulation of intrinsic apoptosis and modulation of some key biochemical pathways. Special attention was paid to the composition of some cultivable microalgae strains selected for their high content of active compounds suitable to protect and improve mitochondrial functions.
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