Spirulina Supplementation Alleviates Intense Exercise-Induced Damage and Modulates Gut Microbiota in Mice.

IF 5 2区 医学 Q1 NUTRITION & DIETETICS Nutrients Pub Date : 2025-01-20 DOI:10.3390/nu17020355
Chunxia Wang, Huijuan Liu, Shuyu Zhang, Chengyi Ren, Jiaming Xu, Juanjuan Chen, Haimin Chen, Wei Wu
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Abstract

Background: Spirulina, which are filamentous cyanobacteria, have gained significant popularity in the food industry, medicine, and aquaculture.

Methods: In this study, our objective was to explore the influence of Spirulina on the gut microbiota and exercise capacity of mice undergoing high-intensity exercise. Twenty-four male BALB/c mice were divided into four groups, with six mice in each group. These groups included the control group (Control, in which the mice received saline gavage and were permitted free movement), the exercise group (Running, in which the mice were gavaged with the same volume of saline and subjected to a structured exercise regimen), and the Spirulina intervention groups (including SpirulinaLow and SpirulinaHigh). In the Spirulina intervention groups, the mice were orally administered with Spirulina at doses of 100 and 300 mg/kg/day for four weeks while simultaneously participating in the exercise protocol.

Results: The results illustrated that the Running group mice subjected to intense exercise exhibited reduced weight and tension, acute damage to muscle and liver tissues, oxidative stress, and an imbalance in the gut microbiota compared with that of the Control group. However, high-concentration Spirulina supplementation was found to increase the tensile strength of the exercise mice by 1.27 ± 0.19 fold (p < 0.05) and ameliorate muscle and liver damage. In the SpirulinaHigh group, the levels of certain indicators related to muscle oxidative stress, including reactive oxygen species, total superoxide dismutase, and catalase, were decreased by 39 ± 5.32% (p < 0.01) and increased by 1.11 ± 0.17 fold and 1.19 ± 0.22 fold (p < 0.01) compared to the Running group. Additionally, a correlation analysis reveals that the alterations in gut microbiota induced by Spirulina might be associated with the indicators of tension and oxidative stress.

Conclusions: Collectively, these findings point to the fact that Spirulina can effectively mitigate the acute damage to muscles and the liver induced by intense exercise in mice by enhancing antioxidant capacity and regulating the gut microbiota, thereby providing novel insights into the mechanism underlying the enhancement of exercise function.

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补充螺旋藻可减轻小鼠剧烈运动引起的损伤并调节肠道微生物群。
背景:螺旋藻是一种丝状蓝藻,在食品工业、医药和水产养殖中得到了广泛的应用。方法:在本研究中,我们的目的是探讨螺旋藻对高强度运动小鼠肠道微生物群和运动能力的影响。24只雄性BALB/c小鼠分为4组,每组6只。这些组包括对照组(对照组,小鼠接受生理盐水灌胃,允许自由活动),运动组(跑步组,小鼠接受相同体积的生理盐水灌胃,并进行结构化的运动方案)和螺旋藻干预组(包括低螺旋藻和高螺旋藻)。在螺旋藻干预组中,小鼠以100和300 mg/kg/天的剂量口服螺旋藻,持续四周,同时参与运动方案。结果:结果表明,与对照组相比,剧烈运动后的跑步组小鼠表现出体重和张力下降,肌肉和肝脏组织急性损伤,氧化应激,肠道菌群失衡。而高浓度螺旋藻可使运动小鼠抗拉强度提高1.27±0.19倍(p < 0.05),改善肌肉和肝脏损伤。与跑步组相比,高螺旋藻组肌肉氧化应激相关指标活性氧、总超氧化物歧化酶、过氧化氢酶水平分别下降了39±5.32% (p < 0.01)和1.11±0.17倍、1.19±0.22倍(p < 0.01)。此外,相关分析显示,螺旋藻诱导的肠道菌群变化可能与紧张和氧化应激指标有关。结论:综上所述,这些发现表明,螺旋藻可以通过增强抗氧化能力和调节肠道菌群,有效减轻小鼠剧烈运动引起的肌肉和肝脏急性损伤,从而为运动功能增强的机制提供了新的见解。
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来源期刊
Nutrients
Nutrients NUTRITION & DIETETICS-
CiteScore
9.20
自引率
15.30%
发文量
4599
审稿时长
16.74 days
期刊介绍: Nutrients (ISSN 2072-6643) is an international, peer-reviewed open access advanced forum for studies related to Human Nutrition. It publishes reviews, regular research papers and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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