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蔓越莓及其两个分离部分可通过不同方式改变肠道微生物群,改善代谢功能,降低高脂饮食喂养的 ApoE-/- 小鼠肠道炎症特性,并改善大脑功能。

Lingonberries and their two separated fractions differently alter the gut microbiota, improve metabolic functions, reduce gut inflammatory properties, and improve brain function in ApoE-/- mice fed high-fat diet.

机构信息

Department of Food Technology, Engineering and Nutrition, Lund University, Lund, Sweden.

Food for Health Science Center, Lund University, Lund, Sweden.

出版信息

Nutr Neurosci. 2020 Aug;23(8):600-612. doi: 10.1080/1028415X.2018.1536423. Epub 2018 Oct 24.

Abstract

Lingonberries (LB) have been shown to have beneficial metabolic effects, which is associated with an altered gut microbiota. This study investigated whether the LB-induced improvements were associated with altered gut- and neuroinflammatory markers, as well as cognitive performance in ApoE-/- mice fed high-fat (HF) diets. Whole LB, as well as two separated fractions of LB were investigated. Eight-week-old male ApoE-/- mice were fed HF diets (38% kcal) containing whole LB (wLB), or the insoluble (insLB) and soluble fractions (solLB) of LB for 8 weeks. Inclusion of wLB and insLB fraction reduced weight gain, reduced fat deposition and improved glucose response. Both wLB and insLB fraction also changed the caecal microbiota composition and reduced intestinal S100B protein levels. The solLB fraction mainly induced weight loss in the mice. There were no significant changes in spatial memory, but significant increases in synaptic density in the hippocampus were observed in the brain of mice-fed wLB and insLB. Thus, this study shows that all lingonberry fractions counteracted negative effects of HF feedings on metabolic parameters. Also, wLB and insLB fraction showed to potentially improve brain function in the mice.

摘要

越橘已被证明具有有益的代谢作用,这与肠道微生物群的改变有关。本研究旨在探讨 LB 诱导的改善是否与改变肠道和神经炎症标志物以及喂食高脂肪 (HF) 饮食的 ApoE-/- 小鼠的认知表现有关。本研究调查了全越橘(wLB)以及越橘的两个分离部分对 ApoE-/- 雄性小鼠的影响。8 周龄雄性 ApoE-/- 小鼠喂食高脂肪(38%卡路里)饮食,其中含有全越橘(wLB)或越橘的不溶性部分(insLB)和可溶性部分(solLB),共 8 周。wLB 和 insLB 部分的摄入可减少体重增加,减少脂肪沉积,并改善葡萄糖反应。wLB 和 insLB 部分均改变了盲肠微生物群组成,并降低了肠道 S100B 蛋白水平。solLB 部分主要引起小鼠体重减轻。空间记忆没有明显变化,但喂食 wLB 和 insLB 的小鼠大脑中海马体的突触密度显著增加。因此,本研究表明,所有越橘部分都能抵抗 HF 喂养对代谢参数的负面影响。此外,wLB 和 insLB 部分可能改善了小鼠的大脑功能。

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