Department of Food Science, University of Arkansas, Fayetteville, AR, USA.
Department of Surgery, School of Medicine, University of California Davis, Sacramento, CA, USA.
Adv Nutr. 2022 Aug 1;13(4):1279-1309. doi: 10.1093/advances/nmab137.
Blueberries have been extensively studied for the health benefits associated with their high phenolic content. The positive impact of blueberry consumption on human health is associated in part with modulation of proinflammatory molecular pathways and oxidative stress. Here, we review in vitro studies examining the anti-inflammatory and antioxidant effects of blueberry phytochemicals, discuss the results in terms of relevance to disease and health, and consider how different blueberry components modulate cellular mechanisms. The dampening effects of blueberry-derived molecules on inflammation and oxidative stress in cell models have been demonstrated through downregulation of the NF-κB pathway and reduction of reactive oxygen species (ROS) and lipid peroxidation. The modulatory effects of blueberry phytochemicals on the mitogen-activated protein kinase (MAPK) pathway and antioxidant system are not as well described, with inconsistent observations reported on immune cells and between models of endothelial, dermal, and ocular inflammation. Although anthocyanins are often reported as being the main bioactive compound in blueberries, no individual phytochemical has emerged as the primary compound when different fractions are compared; rather, an effect of whole blueberry extracts or synergy between different phenolic and nonphenolic extracts seems apparent. The major molecular mechanisms of blueberry phytochemicals are increasingly defined in cell models, but their relevance in more complex human systems needs further investigation using well-controlled clinical trials, in which systemic exposures to blueberry-associated molecules are measured concurrently with physiologic indices of inflammation and oxidative stress.
蓝莓因其高酚含量而具有多种健康益处,已被广泛研究。蓝莓的消费对人类健康的积极影响部分与炎症分子途径和氧化应激的调节有关。在这里,我们回顾了体外研究,探讨了蓝莓植物化学物质的抗炎和抗氧化作用,并根据与疾病和健康的相关性讨论了这些结果,同时考虑了不同蓝莓成分如何调节细胞机制。蓝莓衍生分子通过下调 NF-κB 途径以及减少活性氧 (ROS) 和脂质过氧化,在细胞模型中对炎症和氧化应激产生了抑制作用。蓝莓植物化学物质对丝裂原活化蛋白激酶 (MAPK) 途径和抗氧化系统的调节作用描述得并不充分,在免疫细胞和内皮、皮肤和眼部炎症模型之间观察到不一致的结果。尽管花青素通常被报道为蓝莓中的主要生物活性化合物,但在比较不同部位时,没有一种单一的植物化学物质成为主要化合物;相反,蓝莓提取物的整体作用或不同酚类和非酚类提取物之间的协同作用似乎很明显。蓝莓植物化学物质的主要分子机制在细胞模型中得到了越来越多的定义,但它们在更复杂的人类系统中的相关性需要通过使用经过良好控制的临床试验进行进一步研究,这些临床试验同时测量与炎症和氧化应激的生理指标相关的蓝莓相关分子的系统暴露。