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Dietary Polyphenols Targeting Arterial Stiffness: Interplay of Contributing Mechanisms and Gut Microbiome-Related Metabolism

机译:饮食多酚靶向动脉僵硬:相互作用的相互作用机制和肠道微生物组相关的代谢。

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摘要

Increased arterial stiffness is a degenerative vascular process, progressing with age that leads to a reduced capability of arteries to expand and contract in response to pressure changes. This progressive degeneration mainly affects the extracellular matrix of elastic arteries and causes loss of vascular elasticity. Recent studies point to significant interference of dietary polyphenols with mechanisms involved in the pathophysiology and progression of arterial stiffness. This review summarizes data from epidemiological and interventional studies on the effect of polyphenols on vascular stiffness as an illustration of current research and addresses possible etiological factors targeted by polyphenols, including pathways of vascular functionality, oxidative status, inflammation, glycation, and autophagy. Effects can either be inflicted directly by the dietary polyphenols or indirectly by metabolites originated from the host or microbial metabolic processes. The composition of the gut microbiome, therefore, determines the resulting metabolome and, as a consequence, the observed activity. On the other hand, polyphenols also influence the intestinal microbial composition, and therefore the metabolites available for interaction with relevant targets. As such, targeting the gut microbiome is another potential treatment option for arterial stiffness.
机译:动脉僵硬度的增加是一种退化的血管过程,随着年龄的增长而发展,导致动脉响应压力变化而扩张和收缩的能力降低。这种进行性变性主要影响弹性动脉的细胞外基质,并引起血管弹性的丧失。最近的研究表明,饮食中的多酚对病理生理和动脉僵硬发展的机制有重大干扰。这篇综述总结了流行病学和干预研究中有关多酚对血管僵硬的影响的数据,作为当前研究的例证,并探讨了多酚靶向的可能病因,包括血管功能,氧化状态,炎症,糖基化和自噬的途径。饮食中的多酚可以直接引起这种作用,也可以由宿主或微生物代谢过程产生的代谢产物间接引起这种作用。因此,肠道微生物组的组成决定了产生的代谢组,并因此决定了所观察到的活性。另一方面,多酚也会影响肠道微生物的组成,从而影响与相关靶标相互作用的代谢产物。因此,靶向肠道微生物组是动脉僵硬度的另一种潜在治疗选择。

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