Nakayama Yasunori, Kawasaki Naoko, Tamiya Taiga, Anzai Sayuri, Toyohara Kiyotsuna, Nishiyama Akira, Kitazono Eiichi
Healthcare New Business Division, Teijin Limited , Hino, Japan.
Department of Pharmacology, Faculty of Medicine, Kagawa University , Kagawa, Japan.
Biosci Biotechnol Biochem. 2020 Jul;84(7):1486-1496. doi: 10.1080/09168451.2020.1749553. Epub 2020 Apr 11.
Inulin-type fructans are known to exert different effects on the fermentation profile depending on the average and range of the degree of polymerization (DP). Here, swine fecal cultures were used to investigate the prebiotic properties of native chicory inulin (NIN), extracted from the chicory root, and synthetic inulin (SIN), which has a narrower DP distribution than NIN. Both NIN and SIN showed prebiotic effects, but NIN exhibited a significant decrease in pH and increase in the production of propionate and butyrate compared to SIN. There were also differences in the production of succinate and lactate, the precursors of propionate and butyrate, and the relative abundance of associated genes. Furthermore, NIN induced the growth of certain species of and more strongly than SIN. These results suggest that NIN and SIN exhibit different prebiotic properties due to differences in DP, and that NIN might be more beneficial to host health.
已知菊粉型果聚糖根据聚合度(DP)的平均值和范围对发酵谱产生不同影响。在此,使用猪粪便培养物来研究从菊苣根中提取的天然菊苣菊粉(NIN)和聚合度分布比NIN更窄的合成菊粉(SIN)的益生元特性。NIN和SIN均显示出益生元效应,但与SIN相比,NIN的pH值显著降低,丙酸和丁酸产量增加。琥珀酸和乳酸(丙酸和丁酸的前体)的产量以及相关基因的相对丰度也存在差异。此外,NIN比SIN更强烈地诱导某些 和 物种的生长。这些结果表明,由于聚合度不同,NIN和SIN表现出不同的益生元特性,并且NIN可能对宿主健康更有益。