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Impact of Cranberries on Gut Microbiota and Cardiometabolic Health: Proceedings of the Cranberry Health Research Conference 2015

机译:蔓越莓对肠道菌群和心脏代谢健康的影响:2015蔓越莓健康研究会议论文集

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摘要

Recent advances in cranberry research have expanded the evidence for the role of this Vaccinium berry fruit in modulating gut microbiota function and cardiometabolic risk factors. The A-type structure of cranberry proanthocyanidins seems to be responsible for much of this fruit’s efficacy as a natural antimicrobial. Cranberry proanthocyanidins interfere with colonization of the gut by extraintestinal pathogenic Escherichia coli in vitro and attenuate gut barrier dysfunction caused by dietary insults in vivo. Furthermore, new studies indicate synergy between these proanthocyanidins, other cranberry components such as isoprenoids and xyloglucans, and gut microbiota. Together, cranberry constituents and their bioactive catabolites have been found to contribute to mechanisms affecting bacterial adhesion, coaggregation, and biofilm formation that may underlie potential clinical benefits on gastrointestinal and urinary tract infections, as well as on systemic anti-inflammatory actions mediated via the gut microbiome. A limited but growing body of evidence from randomized clinical trials reveals favorable effects of cranberry consumption on measures of cardiometabolic health, including serum lipid profiles, blood pressure, endothelial function, glucoregulation, and a variety of biomarkers of inflammation and oxidative stress. These results warrant further research, particularly studies dedicated to the elucidation of dose-response relations, pharmacokinetic/metabolomics profiles, and relevant biomarkers of action with the use of fully characterized cranberry products. Freeze-dried whole cranberry powder and a matched placebo were recently made available to investigators to facilitate such work, including interlaboratory comparability.
机译:蔓越莓研究的最新进展扩展了这种越橘浆果在调节肠道菌群功能和心脏代谢危险因素中作用的证据。蔓越莓原花色素的A型结构似乎是这种水果作为天然抗菌剂的大部分功效。蔓越莓原花青素可在体外干扰肠道外病原性大肠杆菌对肠道的定殖,并减轻体内饮食损害引起的肠道屏障功能障碍。此外,新的研究表明这些原花色素,其他蔓越莓成分(如类异戊二烯和木葡聚糖)和肠道菌群之间具有协同作用。共同发现,蔓越莓成分及其生物活性分解代谢物有助于影响细菌粘附,共聚集和生物膜形成的机制,这些机制可能对胃肠道和泌尿道感染以及通过肠道介导的全身性抗炎作用具有潜在的临床益处微生物组。来自随机临床试验的有限但不断增加的证据表明,食用蔓越莓对心脏代谢健康的测量有良好的作用,包括血清脂质分布,血压,内皮功能,糖调节以及炎症和氧化应激的多种生物标志物。这些结果值得进一步研究,尤其是致力于阐明剂量反应关系,药代动力学/代谢组学概况以及使用特征充分的蔓越莓产品的相关生物标志物的研究。冷冻干燥的整个蔓越莓粉和配套的安慰剂最近已提供给研究人员,以促进此类工作,包括实验室间的可比性。

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