Nutrigenomics Research Group, Departament de Bioquímica i Biotecnología, Universitat Rovira i Virgili, 43007 Tarragona, Spain.
Technological Unit of Nutrition and Health, EURECAT-Technology Centre of Catalonia, 43204 Reus, Spain.
Nutrients. 2019 Oct 30;11(11):2602. doi: 10.3390/nu11112602.
Biological rhythms can influence the activity of bioactive compounds, and at the same time, the intake of these compounds can modulate biological rhythms. In this context, chrononutrition has appeared as a research field centered on the study of the interactions among biological rhythms, nutrition, and metabolism. This review summarizes the role of phenolic compounds in the modulation of biological rhythms, focusing on their effects in the treatment or prevention of chronic diseases. Heterotrophs are able to sense chemical cues mediated by phytochemicals such as phenolic compounds, promoting their adaptation to environmental conditions. This is called xenohormesis. Hence, the consumption of fruits and vegetables rich in phenolic compounds exerts several health benefits, mainly attributed to the product of their metabolism. However, the profile of phenolic compounds present in plants differs among species and is highly variable depending on agricultural and technological factors. In this sense, the seasonal consumption of polyphenol-rich fruits could induce important changes in the regulation of physiology and metabolism due to the particular phenolic profile that the fruits contain. This fact highlights the need for studies that evaluate the impact of these specific phenolic profiles on health to establish more accurate dietary recommendations.
生物节律会影响生物活性化合物的活性,而同时,这些化合物的摄入也可以调节生物节律。在这种背景下,时间营养作为一个研究领域出现了,它主要集中于研究生物节律、营养和代谢之间的相互作用。本综述总结了酚类化合物在调节生物节律方面的作用,重点关注它们在治疗或预防慢性疾病方面的影响。异养生物能够感知由植物化学物质(如酚类化合物)介导的化学信号,从而促进它们适应环境条件。这被称为异源激素作用。因此,食用富含酚类化合物的水果和蔬菜可以带来多种健康益处,主要归因于其代谢产物。然而,植物中存在的酚类化合物的种类在不同物种之间存在差异,并且高度依赖于农业和技术因素。在这个意义上,由于水果中所含的特殊酚类成分,季节性食用富含多酚的水果可能会导致生理和代谢调节的重要变化。这一事实突出了需要进行研究来评估这些特定酚类成分对健康的影响,以便制定更准确的饮食建议。