Zhuang Haining, Dong Huayue, Zhang Xiaowei, Feng Tao
School of Food and Tourism, Shanghai Urban Construction Vocational College, Shanghai 201415, China.
School of Perfume and Aroma Technology, Shanghai Institute of Technology, Shanghai 201418, China.
Polymers (Basel). 2023 Oct 20;15(20):4165. doi: 10.3390/polym15204165.
In this study, the digestion and fermentation properties of the bioactive water-soluble polysaccharide (HEP-W), and alkali-soluble polysaccharide (HEP-A) from and the impact on the human colonic microbiota were determined using simulated saliva-gastrointestinal digestion and human fecal fermentation models in vitro. The basic physicochemical properties of HEP-W and HEP-A were determined at the same time. The results showed that the in vitro simulated digestion had almost no effect on the physicochemical properties of HEP-W and HEP-A, indicating that HEP-W and HEP-A were partially degraded. During fermentation, HEP-W and HEP-A increased the relative abundance of the dominant butyric acid-producing genera, the microbial community structure was significantly regulated, the gas production and short-chain fatty acid production in the fermentation broth were significantly increased, and the pH of the fermentation broth was reduced. There were structural and other differences in HEP-W and HEP-A due to different extraction methods, which resulted in different results. These results suggest that HEP-W and HEP-A may be potential gut microbial manipulators to promote gut health by promoting the production of beneficial metabolites by intestinal microorganisms using different butyric acid production pathways.
在本研究中,使用体外模拟唾液-胃肠消化和人体粪便发酵模型,测定了[来源未提及]的生物活性水溶性多糖(HEP-W)和碱溶性多糖(HEP-A)的消化和发酵特性及其对人体结肠微生物群的影响。同时测定了HEP-W和HEP-A的基本理化性质。结果表明,体外模拟消化对HEP-W和HEP-A的理化性质几乎没有影响,表明HEP-W和HEP-A发生了部分降解。在发酵过程中,HEP-W和HEP-A增加了主要产丁酸菌属的相对丰度,显著调节了微生物群落结构,发酵液中产气量和短链脂肪酸产量显著增加,发酵液pH值降低。由于提取方法不同,HEP-W和HEP-A在结构等方面存在差异,导致结果不同。这些结果表明,HEP-W和HEP-A可能是潜在的肠道微生物调节剂,通过利用不同的丁酸产生途径促进肠道微生物产生有益代谢物,从而促进肠道健康。