Cutler Brett Ronald, Petersen Chrissa, Anandh Babu Pon Velayutham
Department of Nutrition and Integrative Physiology, College of Health, University of Utah, Salt Lake City, Utah, USA.
Mol Nutr Food Res. 2017 Jun;61(6). doi: 10.1002/mnfr.201600271. Epub 2016 Oct 10.
Cardiovascular disease is the leading cause of death in the United States. Dietary habits influence a variety of cardiovascular complications such as peripheral artery disease, heart failure, and kidney disease. We along with others have previously reported the cardiovascular beneficial effects of dietary flavonoids. Anthocyanins, one class of flavonoids widely available in berries, have recently drawn wide scientific attention because of their diverse health benefits. Epidemiological, clinical, and animal studies indicate that blueberry anthocyanins exert protection against cardiovascular complications by acting on multiple targets in the vascular system. These include activating endothelial nitric oxide synthase signaling, reducing oxidative stress, improving inflammatory pathways, and ameliorating dyslipidemia. Anthocyanins are extensively metabolized in humans suggesting that their vascular benefits are likely mediated by their circulating metabolites. However, the bioactivities of blueberry metabolites are unknown. Evaluating the bioactivities of metabolites, analyzing their structure-activity relationship, and well-designed human trials are needed to understand the potential vascular effects of blueberries and their metabolites. Understanding the vascular effects will provide a solid scientific foundation to recommend blueberries to improve vascular health. This review highlights the recent developments in the understanding of the vascular effects of blueberries with special emphasis on the molecular mechanisms involved.
心血管疾病是美国的主要死因。饮食习惯会影响多种心血管并发症,如外周动脉疾病、心力衰竭和肾脏疾病。我们和其他人之前已经报道了膳食类黄酮对心血管有益的作用。花青素是一类在浆果中广泛存在的类黄酮,由于其多样的健康益处,最近受到了广泛的科学关注。流行病学、临床和动物研究表明,蓝莓花青素通过作用于血管系统中的多个靶点,对心血管并发症起到保护作用。这些靶点包括激活内皮型一氧化氮合酶信号传导、减轻氧化应激、改善炎症途径以及改善血脂异常。花青素在人体内会被广泛代谢,这表明它们对血管的益处可能是由其循环代谢产物介导的。然而,蓝莓代谢产物的生物活性尚不清楚。需要评估代谢产物的生物活性、分析其构效关系以及精心设计的人体试验,以了解蓝莓及其代谢产物潜在的血管效应。了解这些血管效应将为推荐食用蓝莓以改善血管健康提供坚实的科学基础。这篇综述重点介绍了在理解蓝莓血管效应方面的最新进展,特别强调了其中涉及的分子机制。