Hang Xiao to Digestion
This is a "connection" page, showing publications Hang Xiao has written about Digestion.
Connection Strength
2.892
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Fu C, Ye K, Qiu Z, Ma G, Chen S, Xiao H. In vitro digestion and fermentation characteristics of Agrocybe cylindracea polysaccharides and their interaction with the gut microbiota. Food Res Int. 2025 Jun; 211:116424.
Score: 0.872
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Fu C, Ye K, Ma S, Du H, Chen S, Liu D, Ma G, Xiao H. Simulated gastrointestinal digestion and gut microbiota fermentation of polysaccharides from Agaricus bisporus. Food Chem. 2023 Aug 30; 418:135849.
Score: 0.189
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Ma G, Xu Q, Du H, Muinde Kimatu B, Su A, Yang W, Hu Q, Xiao H. Characterization of polysaccharide from Pleurotus eryngii during simulated gastrointestinal digestion and fermentation. Food Chem. 2022 Feb 15; 370:131303.
Score: 0.171
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Yang X, Dai J, Zhong Y, Wei X, Wu M, Zhang Y, Huang A, Wang L, Huang Y, Zhang C, Chen X, Xiao H. Characterization of insoluble dietary fiber from three food sources and their potential hypoglycemic and hypolipidemic effects. Food Funct. 2021 Jul 21; 12(14):6576-6587.
Score: 0.167
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Tan Y, Zhang Z, Zhou H, Xiao H, McClements DJ. Factors impacting lipid digestion and ?-carotene bioaccessibility assessed by standardized gastrointestinal model (INFOGEST): oil droplet concentration. Food Funct. 2020 Aug 01; 11(8):7126-7137.
Score: 0.157
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Yuan X, Xiao J, Liu X, McClements DJ, Cao Y, Xiao H. The gastrointestinal behavior of emulsifiers used to formulate excipient emulsions impact the bioavailability of ?-carotene from spinach. Food Chem. 2019 Apr 25; 278:811-819.
Score: 0.140
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Yuan X, Liu X, McClements DJ, Cao Y, Xiao H. Enhancement of phytochemical bioaccessibility from plant-based foods using excipient emulsions: impact of lipid type on carotenoid solubilization from spinach. Food Funct. 2018 Aug 15; 9(8):4352-4365.
Score: 0.137
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Li Q, Li T, Liu C, DeLoid G, Pyrgiotakis G, Demokritou P, Zhang R, Xiao H, McClements DJ. Potential impact of inorganic nanoparticles on macronutrient digestion: titanium dioxide nanoparticles slightly reduce lipid digestion under simulated gastrointestinal conditions. Nanotoxicology. 2017 Nov - Dec; 11(9-10):1087-1101.
Score: 0.131
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Xia Z, McClements DJ, Xiao H. Influence of Lipid Content in a Corn Oil Preparation on the Bioaccessibility of ?-Carotene: A Comparison of Low-Fat and High-Fat Samples. J Food Sci. 2017 Feb; 82(2):373-379.
Score: 0.123
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Zhang R, Zhang Z, Zou L, Xiao H, Zhang G, Decker EA, McClements DJ. Enhancement of carotenoid bioaccessibility from carrots using excipient emulsions: influence of particle size of digestible lipid droplets. Food Funct. 2016 Jan; 7(1):93-103.
Score: 0.115
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Lopez-Pena CL, Zheng B, Sela DA, Decker EA, Xiao H, McClements DJ. Impact of e-polylysine and pectin on the potential gastrointestinal fate of emulsified lipids: In vitro mouth, stomach and small intestine model. Food Chem. 2016 Feb 01; 192:857-64.
Score: 0.111
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Xia Z, McClements DJ, Xiao H. Influence of physical state of ?-carotene (crystallized versus solubilized) on bioaccessibility. J Agric Food Chem. 2015 Jan 28; 63(3):990-7.
Score: 0.107
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Yang Y, Decker EA, Xiao H, McClements DJ. Enhancing vitamin E bioaccessibility: factors impacting solubilization and hydrolysis of a-tocopherol acetate encapsulated in emulsion-based delivery systems. Food Funct. 2015 Jan; 6(1):84-97.
Score: 0.105
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Hu M, Li Y, Decker EA, Xiao H, McClements DJ. Influence of tripolyphosphate cross-linking on the physical stability and lipase digestibility of chitosan-coated lipid droplets. J Agric Food Chem. 2010 Jan 27; 58(2):1283-9.
Score: 0.076
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Chengxiao Y, Dongmei W, Kai Z, Hou L, Xiao H, Ding T, Liu D, Ye X, Linhardt RJ, Chen S. Challenges of pectic polysaccharides as a prebiotic from the perspective of fermentation characteristics and anti-colitis activity. Carbohydr Polym. 2021 Oct 15; 270:118377.
Score: 0.042
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Tan Y, Zhang Z, Liu J, Xiao H, McClements DJ. Factors impacting lipid digestion and nutraceutical bioaccessibility assessed by standardized gastrointestinal model (INFOGEST): oil. Food Funct. 2020 Nov 18; 11(11):9936-9946.
Score: 0.040
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Zhu Z, Dong X, Yan C, Ai C, Zhou D, Yang J, Zhang H, Liu X, Song S, Xiao H, Zhu B. Structural Features and Digestive Behavior of Fucosylated Chondroitin Sulfate from Sea Cucumbers Stichopus japonicus. J Agric Food Chem. 2019 Sep 18; 67(37):10534-10542.
Score: 0.037
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Yao K, McClements DJ, Xiang J, Zhang Z, Cao Y, Xiao H, Liu X. Improvement of carotenoid bioaccessibility from spinach by co-ingesting with excipient nanoemulsions: impact of the oil phase composition. Food Funct. 2019 Sep 01; 10(9):5302-5311.
Score: 0.037
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DeLoid GM, Wang Y, Kapronezai K, Lorente LR, Zhang R, Pyrgiotakis G, Konduru NV, Ericsson M, White JC, De La Torre-Roche R, Xiao H, McClements DJ, Demokritou P. An integrated methodology for assessing the impact of food matrix and gastrointestinal effects on the biokinetics and cellular toxicity of ingested engineered nanomaterials. Part Fibre Toxicol. 2017 10 13; 14(1):40.
Score: 0.032
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Liu X, Bi J, Xiao H, McClements DJ. Enhancement of Nutraceutical Bioavailability using Excipient Nanoemulsions: Role of Lipid Digestion Products on Bioaccessibility of Carotenoids and Phenolics from Mangoes. J Food Sci. 2016 Mar; 81(3):N754-61.
Score: 0.029
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Zou L, Liu W, Liu C, Xiao H, McClements DJ. Designing excipient emulsions to increase nutraceutical bioavailability: emulsifier type influences curcumin stability and bioaccessibility by altering gastrointestinal fate. Food Funct. 2015 Aug; 6(8):2475-86.
Score: 0.028
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Rao J, Decker EA, Xiao H, McClements DJ. Nutraceutical nanoemulsions: influence of carrier oil composition (digestible versus indigestible oil) on ?-carotene bioavailability. J Sci Food Agric. 2013 Oct; 93(13):3175-83.
Score: 0.024
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Qian C, Decker EA, Xiao H, McClements DJ. Nanoemulsion delivery systems: influence of carrier oil on ?-carotene bioaccessibility. Food Chem. 2012 Dec 01; 135(3):1440-7.
Score: 0.022