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June 3, 2024Journal of Agricultural and Food Chemistry16 citations

Molecular Mechanism of Pasteurized Akkermansia muciniphila in Alleviating Type 2 Diabetes Symptoms

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HNHuifang NiuMZMinfeng ZhouAJAnying Ji

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Abstract

Type 2 diabetes (T2DM) significantly diminishes people's quality of life and imposes a substantial economic burden. This pathological progression is intimately linked with specific gut microbiota, such as Akkermansia muciniphila. Pasteurized A. muciniphila (P-AKK) has been defined as a novel food by the European Food Safety Authority and exhibited significant hypoglycemic activity. However, current research on the hypoglycemic activity of P-AKK is limited to the metabolic level, neglecting systematic exploration at the pathological level. Consequently, its material basis and mechanism of action for hypoglycemia remain unclear. Drawing upon this foundation, we utilized high-temperature killed A. muciniphila (H-K-AKK) with insignificant hypoglycemic activity as the control research object. Assessments were conducted at pathological levels to evaluate the hypoglycemic functions of both P-AKK and H-K-AKK separately. Our study unveiled for the first time that P-AKK ameliorated symptoms of T2DM by enhancing the generation of glucagon-Like Peptide 1 (GLP-1), with pasteurized A. muciniphila total proteins (PP) being a pivotal component responsible for this activity. Utilizing SDS-PAGE, proteomics, and molecular docking techniques, we deeply analyzed the material foundation of PP. We scientifically screened and identified a protein weighing 77.85 kDa, designated as P5. P5 enhanced GLP-1 synthesis and secretion by activating the G protein-coupled receptor (GPCR) signaling pathway, with free fatty acid receptor 2 (FFAR-2) being identified as the pivotal target protein for P5′s physiological activity. These findings further promote the widespread application of P-AKK in the food industry, laying a solid theoretical foundation for its utilization as a beneficial food ingredient or functional component.

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Cite This Study

Niu et al. (2024) studied this question.

synapsesocial.com/papers/68e665f2b6db6435875f210chttps://doi.org/10.1021/acs.jafc.4c01188
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Pasteurized <i>Akkermansia muciniphila</i> <scp>AKK PROBIO</scp> ameliorates inflammation and metabolic disorder in <i>db/db</i> mice with alterations in gut microbiota and hepatic <scp>TLR4</scp> / <scp>NF</scp> ‐ <scp>κB</scp> and <scp>SREBP2</scp> / <scp>HMGCR</scp> signaling2026
  2. 2Effect of pasteurized <i>Akkermansia muciniphila</i> MucT on insulin sensitivity, body composition, and GLP-1 production in subjects with metabolic syndrome: impact of low baseline gut <i>Akkermansia</i> levels2026
  3. 3Improve effect of Akkermansia muciniphila ONE on lipid metabolism of type 2 diabetes mice through regulating the AMPK/PPAR-α signaling pathway2026 · 2 citations
  4. 4Live and Pasteurized Akkermansia muciniphila Mechanisms of Action and Its Potential Use as an Aid in the Treatment of Non-communicable Diseases2024 · 1 citations
  5. 5Effect of Akkermansia muciniphila on pancreatic islet β-cell function in rats with prediabetes mellitus induced by a high-fat diet2024 · 7 citations