1. Fu, T., Zhou, L., Fu, Z., Zhang, B., Li, Q., Pan, L., Zhou, C., Zhao, Q., Shang, Q. *, & Yu, G. *Enterotype-specific effect of human gut microbiota on the fermentation of marine algae oligosaccharides: A preliminary proof-of-concept in vitro study. Polymers, 2022, 14(4): 770.
2. Pan, L., Fu, T.,Cheng H., Mi J.,Shang, Q. *, & Yu, G. *Polysaccharide from edible alga Gloiopeltisfurcata attenuates intestinal mucosal damage by therapeutically remodeling the interactions between gut microbiota and mucin O-glycans. Carbohydrate Polymers, 2022, 278: 118921. 3. Pan, L., Ai, X., Fu, T., Ren, L., Shang, Q. *, Li, G.*, & Yu, G.* In vitro fermentation of hyaluronan by human gut microbiota: Changes in microbiota community and potential degradation mechanism. Carbohydrate Polymers, 2021,269: 118313. 4. Fu, T., Pan, L., Shang, Q. *, & Yu, G.* Fermentation of alginate and its derivatives by different enterotypes of human gut microbiota: Towards personalized nutrition using enterotype-specific dietary fibers. International Journal of Biological Macromolecules, 2021, 183, 1649-1659. 5. Wei, J., Zhao, Y., Zhou, C., Zhao, Q., Zhong, H., Zhu, X., Fu, T., Pan, L., Shang, Q. *, & Yu, G. * Dietary Polysaccharide from Enteromorpha clathrataattenuates obesity and increases the intestinal abundance of butyrate-producing bacterium, Eubacterium xylanophilum, in mice fed a high-fat diet.Polymers, 2021, 13, 3286. 6. Shang, Q., Jiang, H., Cai, C., Hao, J., Li, G. and Yu, G.*, Gut microbiota fermentation of marine polysaccharides and its effects on intestinal ecology: An overview. Carbohydrate Polymers, 2018, 179, pp.173-185. 7. Shang, Q., Shi, J., Song, G., Zhang, M., Cai, C., Hao, J., Li, G. and Yu, G.*, Structural modulation of gut microbiota by chondroitin sulfate and its oligosaccharide. International Journal of Biological Macromolecules, 2016, 89, pp.489-498. 8. Shang, Q., Yin, Y., Zhu, L., Li, G., Yu, G.* and Wang, X.*, Degradation of chondroitin sulfate by the gut microbiota of Chinese individuals. International Journal of Biological Macromolecules, 2016, 86, pp.112-118. 9. Shang, Q., Shan, X., Cai, C., Hao, J., Li, G. and Yu, G.*, Dietary fucoidan modulates the gut microbiota in mice by increasing the abundance of Lactobacillus and Ruminococcaceae. Food & Function, 2016, 7(7), pp.3224-3232. 10. Shang, Q., Song, G., Zhang, M., Shi, J., Xu, C., Hao, J., Li, G. and Yu, G.*, Dietary fucoidan improves metabolic syndrome in association with increased Akkermansia population in the gut microbiota of high-fat diet-fed mice. Journal of Functional Foods, 2017, 28, pp.138-146. 11. Shang, Q., Sun, W., Shan, X., Jiang, H., Cai, C., Hao, J., Li, G. and Yu, G.*, Carrageenan-induced colitis is associated with decreased population of anti-inflammatory bacterium, Akkermansiamuciniphila, in the gut microbiota of C57BL/6J mice. Toxicology Letters, 2017, 279, pp.87-95. 12. Shang, Q., Li, Q., Zhang, M., Song, G., Shi, J., Jiang, H., Cai, C., Hao, J., Li, G. and Yu, G.*, Dietary keratan sulfate from shark cartilage modulates gut microbiota and increases the abundance of Lactobacillus spp. Marine Drugs, 2016, 14(12), p.224. 13. Shang, Q., Wang, Y., Pan, L., Niu, Q., Li, C., Jiang, H., Cai, C., Hao, J., Li, G. and Yu, G.*, Dietary polysaccharide from Enteromorpha Clathratamodulates gut microbiota and promotes the growth of Akkermansiamuciniphila, Bifidobacterium spp. and Lactobacillus spp. 2018, Marine Drugs, 16(5), p.167. 14. Shang, Q.*,From correlation to causation: The missing point in the study of functional foods and gut microbiota. Journal of Functional Foods, 2019, 61, 103466. 15. Shang, Q.*, Revisit the effects of fucoidan on gut microbiota in health and disease: What do we know and what do we need to know? Bioactive Carbohydrates and Dietary Fibre, 2020, 23, 100221. 16. Li, M., Shang, Q., Li, G., Wang, X.* and Yu, G.*, Degradation of marine algae-derived carbohydrates by Bacteroidetes isolated from human gut microbiota. Marine Drugs, 2017, 15(4), p.92. 17. Li, M., Li, G., Shang, Q., Chen, X., Liu, W., Zhu, L., Yin, Y., Yu, G.* and Wang, X.*, In vitro fermentation of alginate and its derivatives by human gut microbiota. Anaerobe, 2016, 39, pp.19-25. 18. Liu, Y., Lin, H., Jiang, L., Shang, Q., Yin, L., Lin, J.D., Wu, W.S. and Rui, L.*, Hepatic Slug epigenetically promotes liver lipogenesis, fatty liver disease, and type 2 diabetes. Journal of Clinical Investigation. 2020, 130(6), 2992-3004. 19. Pan, L., Sun, W., Shang, Q., Niu, Q., Liu, C., Li, G.*, & Yu, G.*In Vitro Fermentation and Isolation of Heparin-degrading Bacteria from Human Gut Microbiota. Anaerobe, 2020, 102289.
|