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摄入微藻对代谢性疾病的潜在益处:超越螺旋藻——动物研究的系统综述

Potential benefits of microalgae intake against metabolic diseases: beyond spirulina-a systematic review of animal studies.

作者信息

Tejero Pérez Adrian, Kapravelou Garyfallia, Porres Foulquie Jesús María, López Jurado Romero de la Cruz María, Martínez Martínez Rosario

机构信息

Faculty of Chemical Sciences and Technologies, Universidad de Castilla-La Mancha, Ciudad Real, Spain.

Faculty of Medicine, Centro Regional de Investigaciones Biomédicas, Universidad de Castilla-La Mancha, Ciudad Real, Spain.

出版信息

Nutr Rev. 2024 Jul 1;82(7):872-891. doi: 10.1093/nutrit/nuad098.

Abstract

CONTEXT

Microalgae are a diverse source of bioactive molecules, such as polyphenols, carotenoids, and omega-3 fatty acids, with beneficial properties in biomarkers of metabolic diseases. Unlike the rest of the microalgae genera, Arthrospira sp., commonly called spirulina, has been widely studied.

OBJECTIVE

This review aims to describe the current knowledge about microalgae, besides spirulina, focusing on their beneficial properties against metabolic diseases.

DATA SOURCES

A systematic research of MEDLINE (via PubMed), Cochrane, and Scopus databases was conducted to identify relevant studies published after January 2012. In vivo animal studies including microalgae consumption, except for spirulina, that significantly improved altered biomarkers related to metabolic diseases were included. These biomarkers included body weight/composition, glucose metabolism, lipid metabolism, oxidative damage, inflammation markers, and gut microbiota.

DATA EXTRACTION

After the literature search and the implementation of inclusion and exclusion criteria, 37 studies were included in the revision out of the 132 results originally obtained after the application of the equation on the different databases.

DATA ANALYSIS

Data containing 15 microalgae genera were included reporting on a wide range of beneficial results at different levels, including a decrease in body weight and changes in plasma levels of glucose and lipoproteins due to molecular alterations such as those related to gene expression regulation. The most reported beneficial effects were related to gut microbiota and inflammation followed by lipid and glucose metabolism and body weight/composition.

CONCLUSIONS

Microalgae intake improved different altered biomarkers due to metabolic diseases and seem to have potential in the design of enriched foodstuffs or novel nutraceuticals. Nevertheless, to advance to clinical trials, more thorough/detailed studies should be performed on some of the microalgae genera included in this review to collect more information on their molecular mechanisms of action.

摘要

背景

微藻是生物活性分子的多样来源,如多酚、类胡萝卜素和ω-3脂肪酸,对代谢性疾病的生物标志物具有有益特性。与其他微藻属不同,节旋藻属(通常称为螺旋藻)已得到广泛研究。

目的

本综述旨在描述除螺旋藻外有关微藻的现有知识,重点关注其对代谢性疾病的有益特性。

数据来源

对MEDLINE(通过PubMed)、Cochrane和Scopus数据库进行了系统检索,以识别2012年1月以后发表的相关研究。纳入了体内动物研究,这些研究涉及除螺旋藻外食用微藻后显著改善了与代谢性疾病相关的改变的生物标志物。这些生物标志物包括体重/组成、葡萄糖代谢、脂质代谢、氧化损伤、炎症标志物和肠道微生物群。

数据提取

在文献检索并实施纳入和排除标准后,在最初应用公式于不同数据库后获得的132个结果中,有37项研究被纳入修订。

数据分析

纳入了包含15个微藻属的数据,这些数据报告了在不同水平上的广泛有益结果,包括体重减轻以及由于分子改变(如与基因表达调控相关的改变)导致的血浆葡萄糖和脂蛋白水平变化。报告最多的有益作用与肠道微生物群和炎症有关,其次是脂质和葡萄糖代谢以及体重/组成。

结论

摄入微藻改善了因代谢性疾病而改变的不同生物标志物,并且在设计强化食品或新型营养保健品方面似乎具有潜力。然而,要推进到临床试验阶段,应对本综述中包括的一些微藻属进行更全面/详细的研究,以收集更多关于其作用分子机制的信息。

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