Journal of Functional Foods · 2021 · 36 citations · 23 references
Ampk Signaling PathwaysMetabolic SyndromeBiosynthesisLipid AccumulationMetabolic SignalingHuman MetabolismCell SignalingHealth SciencesBiochemistryLipid NutritionMetabolomicsNon-viable CellsCell BiologyMetabolic HealthCell FractionsMetabolic RegulationMicrobiologyMetabolismMedicineLipid Synthesis
Paraprobiotics are non-viable cells or cell fractions that have beneficial effects on the host; they may help in overcoming the limitations of probiotics and expanding their benefits. Here, we aimed to investigate their effects on lipid accumulation and the underlying mechanisms in 3T3-L1 preadipocytes. A novel paraprobiotic, LAB-P, prepared from the live cells of Lactobacillus plantarum K8, effectively inhibited lipid accumulation during adipogenesis via downregulation of the key activators PPARγ and C/EBPα. LAB-P-mediated reduction of lipid accumulation regulated early adipogenic factors, including downregulation of C/EBPβ, KLF4, KLF5, KROX20, and C/EBPδ, and upregulation of DLK1. Western blotting analysis revealed that these inhibitory effects of LAB-P on adipogenesis were associated with regulating JAK-STAT and AMPKα signaling pathways. This study highlights the potential of paraprobiotics as a functional food material to control obesity or obesity-related diseases, and provides valuable groundwork for utilizing LAB-P as a functional ingredient to alleviate obesity or lipid accumulation.
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Li Yu, Shanqin Xu, Maria M. Mihaylova et al. · Cell Metabolism · 2011 · 1.7K citations · Full text
Metabolic Syndrome, Inhibits Srebp Activity, Insulin Signaling +15
Natália de Melo Nasser Fava, Rodrigo Martins Soares, Luana Araújo Macedo Scalia et al. · BioMed Research International · 2013 · 601 citations · Full text