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Oxidized Starch-Chitosan-Mg2+ Gel Enhances Colonic Mg2+ Absorption in Deficient Mice with Associated SCFAs and
Qiyong Guo1, Weihang Cao1, Ling Chen1
1School of Food Science and Engineering, Guangdong Province Key Laboratory for Green Processing of Natural Products and Product Safety, Engineering Research Center of Starch and Vegetable Protein Processing Ministry of Education, South China University of Technology, Guangzhou510640, China.
Abstract:
Conventional magnesium supplementation relies on passive diffusion in the small intestine, resulting in poor bioavailability. To address this, we developed an oxidized starch-chitosan-Mg2+ composite gel that directs more Mg2+ to the colon, where resistant polysaccharides are fermented to SCFAs that may actively enhance absorption. Mg2+ incorporation increased the gel's resistant component to 52.42 ± 0.63%. Increasing Mg2+ from 0.5% to 2% reduced cumulative upper gastrointestinal release from 70.61 ± 0.79% to 43.62 ± 1.01% (p < 0.05), with higher concentrations showing no further improvement. In Mg2+-deficient mice, the gel dose-dependently restored serum Mg2+ to healthy levels. Comparison at equal Mg2+ doses revealed that the polysaccharide carrier independently contributed to enhanced absorption. Mechanistically, resistant polysaccharides were associated with upregulation of SCFAs receptors (FFAR2/FFAR3/HCAR2) and Mg2+ transporters (TRPM6/TRPM7/CNNM4), with immunofluorescence indicating TRPM7 upregulation. This work provides proof-of-concept evidence for a paradigm shift from passive supplementation to active regulation via SCFAs-associated transporter modulation.