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Fabrication of Fructooligosaccharide-<i>Larimichthys crocea</i> Peptide Copolymer by Wet-Heating for Enhanced Calcium Delivery and Bone-Lipid Metabolism Regulation.


ABSTRACT: Calcium delivery systems based on food-derived peptides and polysaccharides offer a promising strategy for improving calcium bioavailability while preserving peptide bioactivity. In this study, a fructooligosaccharide-Larimichthys crocea peptide (FOS-LCP) copolymer was fabricated by wet-heating and evaluated as a multifunctional calcium carrier. FOS-LCP showed improved calcium-binding capacity, digestive stability, and resistance to dietary inhibitors, thus increasing Ca2+ uptake and transport in intestinal models in vitro. Bone marrow mesenchymal stem cells isolated from calcium-deficient mice were used to assess bone-lipid regulation in vitro. In the presence of Ca2+, FOS-LCP promoted osteogenic differentiation and osteogenic marker expression, suppressed adipogenic differentiation, activated the Wnt/β-catenin pathway, inhibited PPARγ/C/EBPα-driven lipogenesis, reduced adipokine secretion, and enhanced lipolytic gene expression. These findings indicate that FOS-LCP coordinately enhances calcium absorption and rebalances bone-lipid metabolism at the cellular level, supporting wet-heating-derived peptide-polysaccharide copolymers as promising functional calcium delivery systems.

SUBMITTER: Liu C 

PROVIDER: S-EPMC12759107 | biostudies-literature | 2026 Jan

REPOSITORIES: biostudies-literature

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Fabrication of Fructooligosaccharide-&lt;i&gt;Larimichthys crocea&lt;/i&gt; Peptide Copolymer by Wet-Heating for Enhanced Calcium Delivery and Bone-Lipid Metabolism Regulation.

Liu Chunlei C   Wu Xiaoping X   Guo Yihang Y   Li Dan D  

Food science & nutrition 20260102 1


Calcium delivery systems based on food-derived peptides and polysaccharides offer a promising strategy for improving calcium bioavailability while preserving peptide bioactivity. In this study, a fructooligosaccharide-<i>Larimichthys crocea</i> peptide (FOS-LCP) copolymer was fabricated by wet-heating and evaluated as a multifunctional calcium carrier. FOS-LCP showed improved calcium-binding capacity, digestive stability, and resistance to dietary inhibitors, thus increasing Ca<sup>2+</sup> upta  ...[more]

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