Zhao Weijie, Chen Lvshuang, Tan Weihao, Li Yongxiang, Sun Lijuan, Zhu Xiaotong, Wang Songbo, Gao Ping, Zhu Canjun, Shu Gang, Wang Lina, Jiang Qingyan
Guangdong Provincial Key Laboratory of Animal Nutrition Control, College of Animal Science, South China Agricultural University, Guangzhou 510642, China.
National Engineering Research Center for Breeding Swine Industry, South China Agricultural University, Guangzhou 510642, China.
Foods. 2023 Jan 12;12(2):357. doi: 10.3390/foods12020357.
Mannan oligosaccharides (MOSs) have been implicated in the animal growth rate, health indices, and lipid oxidative stability. MOSs have been indicated to maintain intestinal health and anti-inflammatory effects via modulation of gut microbiota. Furthermore, the role of MOSs in modulating skeletal muscle function is largely unknown. Here, this study aimed to investigate the effects of MOS supplementation on muscle function and muscle mass in mice. Additionally, the possible underlying mechanisms, including the contributions of gut microbiota and microbial metabolites, were explored. In our study, 3-week-old C57BL/6J male mice (body weight of approximately 10.7 ± 1.1 g) were given pure water or pure water with 1% MOS. To study the effect of MOSs on gut-microbiota-derived metabolites, serum metabolic profiles were analyzed through untargeted metabolomic profiling. Moreover, we detected the downstream signals of differential metabolites, and decanoic acid (DA) was selected as our target spot. Then, DA was used to treat C2C12 cells, and we found that DA promotes C2C12 cell differentiation via the GPR84 and PI3K/AKT signaling pathways. In conclusion, these results showed that MOS supplementation improves muscle function and muscle mass. Additionally, gut microbiome and microbial metabolites were regulated by MOSs, and DA may be one of the most important links between the gut microbiome and skeletal muscle function regulation.
甘露寡糖(MOSs)与动物生长速度、健康指标和脂质氧化稳定性有关。研究表明,MOSs可通过调节肠道微生物群来维持肠道健康并发挥抗炎作用。此外,MOSs在调节骨骼肌功能方面的作用在很大程度上尚不清楚。在此,本研究旨在探讨补充MOS对小鼠肌肉功能和肌肉质量的影响。此外,还探索了可能的潜在机制,包括肠道微生物群和微生物代谢产物的作用。在我们的研究中,给3周龄的C57BL/6J雄性小鼠(体重约10.7±1.1 g)提供纯水或含1% MOS的纯水。为了研究MOSs对肠道微生物群衍生代谢产物的影响,通过非靶向代谢组学分析血清代谢谱。此外,我们检测了差异代谢产物的下游信号,并选择癸酸(DA)作为我们的目标靶点。然后,用DA处理C2C12细胞,我们发现DA通过GPR84和PI3K/AKT信号通路促进C2C12细胞分化。总之,这些结果表明补充MOS可改善肌肉功能和肌肉质量。此外,MOSs可调节肠道微生物群和微生物代谢产物,DA可能是肠道微生物群与骨骼肌功能调节之间最重要的联系之一。