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The Role of Nutri(epi)genomics in Achieving the Body’s Full Potential in Physical Activity

机译:Nutri(epi)基因组学在实现身体在体育活动中的全部潜能中的作用

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摘要

Physical activity represents a powerful tool to achieve optimal health. The overall activation of several molecular pathways is associated with many beneficial effects, mainly converging towards a reduced systemic inflammation. Not surprisingly, regular activity can contribute to lowering the “epigenetic age”, acting as a modulator of risk toward several diseases and enhancing longevity. Behind this, there are complex molecular mechanisms induced by exercise, which modulate gene expression, also through epigenetic modifications. The exercise-induced epigenetic imprint can be transient or permanent and contributes to the muscle memory, which allows the skeletal muscle adaptation to environmental stimuli previously encountered. Nutrition, through key macro- and micronutrients with antioxidant properties, can play an important role in supporting skeletal muscle trophism and those molecular pathways triggering the beneficial effects of physical activity. Nutrients and antioxidant food components, reversibly altering the epigenetic imprint, have a big impact on the phenotype. This assigns a role of primary importance to nutri(epi)genomics, not only in optimizing physical performance, but also in promoting long term health. The crosstalk between physical activity and nutrition represents a major environmental pressure able to shape human genotypes and phenotypes, thus, choosing the right combination of lifestyle factors ensures health and longevity.
机译:体育锻炼是实现最佳健康的有力工具。几种分子途径的整体活化与许多有益作用有关,主要趋于减少全身性炎症。毫不奇怪,经常性活动可以有助于降低“表观遗传年龄”,从而调节多种疾病的风险并延长寿命。在此背后,有运动引起的复杂分子机制,这些机制还通过表观遗传修饰来调节基因表达。运动诱发的表观遗传印记可以是短暂的或永久的,并有助于肌肉记忆,从而使骨骼肌适应先前遇到的环境刺激。通过具有抗氧化特性的关键的宏观和微量营养素,营养可以在支持骨骼肌营养和那些触发身体活动有益作用的分子途径中发挥重要作用。营养和抗氧化食品成分可逆地改变表观遗传的烙印,对表型有很大影响。这对营养基因组学具有最重要的作用,不仅在优化体能方面,而且在促进长期健康方面。身体活动与营养之间的相互影响代表了一种主要的环境压力,能够塑造人类的基因型和表型,因此,选择正确的生活方式因素组合可以确保健康和长寿。

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