School of Life Sciences, Ningxia University, Yinchuan 750021, China.
College of Resource and Environment and Life Science, Ningxia Normal University, Guyuan 756000, China.
Nutrients. 2023 Nov 20;15(22):4843. doi: 10.3390/nu15224843.
This study aims to evaluate the prebiotic potential of polysaccharides derived from Stellariae Radix (SRPs) and explore their influence on the gut microbiota composition in mice. and were cultivated in an MRS medium, while their growth kinetics, clumping behavior, sugar utilization, pH variation, growth density, and probiotic index were meticulously monitored. Additionally, the impact of crude Stellariae Radix polysaccharides (CSRP) on the richness and diversity of gut microbiota in mice was assessed via 16S rDNA sequencing. The results demonstrated the remarkable ability of CSRPs to stimulate the proliferation of and . Moreover, the oral administration of CSRPs to mice led to a noticeable increase in beneficial bacterial populations and a concurrent decrease in detrimental bacterial populations within the intestinal flora. These findings provided an initial validation of CSRPs as a promising agent in maintaining the equilibrium of gut microbiota in mice, thereby offering a substantial theoretical foundation for developing Stellariae Radix as a prebiotic ingredient in various applications, including food, healthcare products, and animal feed. Furthermore, this study presented novel insights for the exploration and utilization of Stellariae Radix resources.
本研究旨在评估来源于繁缕(SRPs)的多糖的益生元潜力,并探讨其对小鼠肠道微生物组成的影响。 和 被培养在 MRS 培养基中,同时仔细监测它们的生长动力学、聚集行为、糖利用、pH 值变化、生长密度和益生菌指数。此外,通过 16S rDNA 测序评估了粗繁缕多糖(CSRP)对小鼠肠道微生物群落丰富度和多样性的影响。结果表明,CSRPs 具有显著刺激 和 增殖的能力。此外,CSRPs 经口给予小鼠后,可显著增加有益菌的数量,同时减少肠道菌群中有害菌的数量。这些发现为 CSRPs 作为维持小鼠肠道微生物群落平衡的有前途的药物提供了初步验证,为将繁缕开发为食品、保健品和动物饲料等各种应用中的益生元成分提供了重要的理论基础。此外,本研究为繁缕资源的探索和利用提供了新的见解。