Zixing Chen
Postdoctoral AssociateAbout
Research
Publications
2026
Alpha-lipoic acid improves intestinal homeostasis and ameliorates colitis through modulation of gut microbiota and production of short chain fatty acids in mice
Huang S, Ding H, Su Y, Chen Z, He W, Chen Z, Zhu H. Alpha-lipoic acid improves intestinal homeostasis and ameliorates colitis through modulation of gut microbiota and production of short chain fatty acids in mice. Food Research International 2026, 230: 118582. PMID: 41794466, DOI: 10.1016/j.foodres.2026.118582.Peer-Reviewed Original Research
2025
Tributyrin is more effective than tripropionin in reducing plasma cholesterol in hypercholesterolemic hamsters
Huang S, Yan C, Ding H, Chen Z, Zhu H, He W, Lei L, Chen Z. Tributyrin is more effective than tripropionin in reducing plasma cholesterol in hypercholesterolemic hamsters. Food Science And Human Wellness 2025, 14: 9250425. DOI: 10.26599/fshw.2024.9250425.Peer-Reviewed Original ResearchPhytosterols Inhibit ACAT2-Catalyzed Cholesteryl Esterification in Caco‑2 Cells without Affecting Cholesterol Transporter Genes
Chen Z, Chau C, Erickson A, Ding H, Huang S, He W, Zhu H, Chen Z. Phytosterols Inhibit ACAT2-Catalyzed Cholesteryl Esterification in Caco‑2 Cells without Affecting Cholesterol Transporter Genes. Journal Of Agricultural And Food Chemistry 2025, 73: 19823-19833. PMID: 40767348, DOI: 10.1021/acs.jafc.5c03798.Peer-Reviewed Original ResearchSynthesis of tributyrin and tripropionin and their alleviative effects on colitis and gut microbiota in mice
Huang S, He W, Yang H, Yan C, Ding H, Chen Z, Zhu H, Hu K, Chen Z. Synthesis of tributyrin and tripropionin and their alleviative effects on colitis and gut microbiota in mice. Chemical Engineering Journal 2025, 516: 164178. DOI: 10.1016/j.cej.2025.164178.Peer-Reviewed Original Research
2024
Synthesis of cholesterol analogues and comparison on their effect on plasma cholesterol with β-Sitosterol
Zhu H, Chen L, Chen Z, Lin H, Liu J, Kwek E, Ma K, He W, Wang G, Chen Z. Synthesis of cholesterol analogues and comparison on their effect on plasma cholesterol with β-Sitosterol. Food Chemistry 2024, 461: 140820. PMID: 39153376, DOI: 10.1016/j.foodchem.2024.140820.Peer-Reviewed Original ResearchDietary supplementation with capsaicinoids alleviates obesity in mice fed a high-fat-high-fructose diet
Chen Z, Liu J, Ding H, Yan C, Zhu H, Huang S, Chen Z. Dietary supplementation with capsaicinoids alleviates obesity in mice fed a high-fat-high-fructose diet. Food & Function 2024, 15: 8572-8585. PMID: 39073607, DOI: 10.1039/d4fo02102a.Peer-Reviewed Original ResearchAdditional mechanism for selective absorption of cholesterol and phytosterols
Chen Z, Ding H, Zhu H, Huang S, Yan C, Chen Z. Additional mechanism for selective absorption of cholesterol and phytosterols. Food Chemistry 2024, 458: 140300. PMID: 38964108, DOI: 10.1016/j.foodchem.2024.140300.Peer-Reviewed Original ResearchProtocatechuic acid alleviates TMAO-aggravated atherosclerosis via mitigating inflammation, regulating lipid metabolism, and reshaping gut microbiota
Ding H, Liu J, Chen Z, Huang S, Yan C, Kwek E, He Z, Zhu H, Chen Z. Protocatechuic acid alleviates TMAO-aggravated atherosclerosis via mitigating inflammation, regulating lipid metabolism, and reshaping gut microbiota. Food & Function 2024, 15: 881-893. PMID: 38165856, DOI: 10.1039/d3fo04396g.Peer-Reviewed Original Research
2023
Adverse effect of oxidized cholesterol exposure on colitis is mediated by modulation of gut microbiota
Yan C, Huang S, Ding H, Kwek E, Liu J, Chen Z, Ma K, Chen Z. Adverse effect of oxidized cholesterol exposure on colitis is mediated by modulation of gut microbiota. Journal Of Hazardous Materials 2023, 459: 132057. PMID: 37467611, DOI: 10.1016/j.jhazmat.2023.132057.Peer-Reviewed Original ResearchCombination of untargeted and targeted proteomics for secretome analysis of L-WRN cells
Chen Z, Leung T, Lui Y, Ngai S, Chung H. Combination of untargeted and targeted proteomics for secretome analysis of L-WRN cells. Analytical And Bioanalytical Chemistry 2023, 415: 1465-1476. PMID: 36656349, DOI: 10.1007/s00216-023-04534-9.Peer-Reviewed Original Research
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