饮食中的硝酸盐是否能促进热量限制对大脑健康的影响?潜在的生理机制和对未来研究的启示。

IF 3.9 2区 医学 Q2 NUTRITION & DIETETICS
Mushari Alharbi, Blossom Cm Stephan, Oliver M Shannon, Mario Siervo
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引用次数: 0

摘要

痴呆症是一种高度流行且代价高昂的疾病,其特征是由于大脑功能和结构的变化而导致认知和身体能力下降。鉴于痴呆症缺乏有效的治疗选择,饮食和其他生活方式方法被认为是减轻这种疾病负担的潜在策略。保持最佳的营养状态对保持大脑功能和结构至关重要。一些研究已经认识到营养因素在保护和增强代谢、脑血管和神经认知功能方面的重要作用。热量限制(CR)通过调节线粒体效率、内皮功能、神经炎症、抗氧化和自噬反应对大脑功能产生积极影响。膳食硝酸盐是普遍存在的气体传输型一氧化氮(NO)的底物,已被确定为一种有前途的营养干预措施,通过影响氧化代谢、ROS产生以及内皮和神经元完整性,在改善血管和代谢性大脑调节方面发挥重要作用。最近只有一项研究测试了这两种干预措施的综合效果,并显示出初步的、积极的结果——认知功能。本文探讨了基于CR和高硝酸盐饮食联合给药的营养策略的潜在协同效应,作为一种潜在且更有效(比单独干预更有效)的策略来保护大脑健康和降低痴呆风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Does dietary nitrate boost the effects of caloric restriction on brain health? Potential physiological mechanisms and implications for future research.

Does dietary nitrate boost the effects of caloric restriction on brain health? Potential physiological mechanisms and implications for future research.

Dementia is a highly prevalent and costly disease characterised by deterioration of cognitive and physical capacity due to changes in brain function and structure. Given the absence of effective treatment options for dementia, dietary and other lifestyle approaches have been advocated as potential strategies to reduce the burden of this condition. Maintaining an optimal nutritional status is vital for the preservation of brain function and structure. Several studies have recognised the significant role of nutritional factors to protect and enhance metabolic, cerebrovascular, and neurocognitive functions. Caloric restriction (CR) positively impacts on brain function via a modulation of mitochondrial efficiency, endothelial function, neuro-inflammatory, antioxidant and autophagy responses. Dietary nitrate, which serves as a substrate for the ubiquitous gasotransmitter nitric oxide (NO), has been identified as a promising nutritional intervention that could have an important role in improving vascular and metabolic brain regulation by affecting oxidative metabolism, ROS production, and endothelial and neuronal integrity. Only one study has recently tested the combined effects of both interventions and showed preliminary, positive outcomes cognitive function. This paper explores the potential synergistic effects of a nutritional strategy based on the co-administration of CR and a high-nitrate diet as a potential and more effective (than either intervention alone) strategy to protect brain health and reduce dementia risk.

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来源期刊
Nutrition & Metabolism
Nutrition & Metabolism 医学-营养学
CiteScore
8.40
自引率
0.00%
发文量
78
审稿时长
4-8 weeks
期刊介绍: Nutrition & Metabolism publishes studies with a clear focus on nutrition and metabolism with applications ranging from nutrition needs, exercise physiology, clinical and population studies, as well as the underlying mechanisms in these aspects. The areas of interest for Nutrition & Metabolism encompass studies in molecular nutrition in the context of obesity, diabetes, lipedemias, metabolic syndrome and exercise physiology. Manuscripts related to molecular, cellular and human metabolism, nutrient sensing and nutrient–gene interactions are also in interest, as are submissions that have employed new and innovative strategies like metabolomics/lipidomics or other omic-based biomarkers to predict nutritional status and metabolic diseases. Key areas we wish to encourage submissions from include: -how diet and specific nutrients interact with genes, proteins or metabolites to influence metabolic phenotypes and disease outcomes; -the role of epigenetic factors and the microbiome in the pathogenesis of metabolic diseases and their influence on metabolic responses to diet and food components; -how diet and other environmental factors affect epigenetics and microbiota; the extent to which genetic and nongenetic factors modify personal metabolic responses to diet and food compositions and the mechanisms involved; -how specific biologic networks and nutrient sensing mechanisms attribute to metabolic variability.
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