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Encapsulation Thermogenic Preadipocytes for Transplantation into Adipose Tissue Depots
Published on: June 2, 2015
Luteolin-Loaded WPI/Pueraria lobata Amylopectin Composite Gel Improves Adipocyte Thermogenesis and Insulin
Yaxin He1, Xin Xie2, Yanghui Chen1
1School of Food and Biological Engineering, Hefei University of Technology, Hefei, Anhui 230009, China.
Abstract:
Adipose tissue metabolic dysfunction plays a central role in the development of obesity and related metabolic disease. Luteolin is a natural flavonoid with antioxidant, anti-inflammatory, antidiabetic, and antiobesity activities, while it is limited by poor solubility, bioavailability, and stability. This study developed a whey protein isolate (WPI)-Pueraria lobata amylopectin (PLA) composite gel, characterized by a dense 3D network and enhanced mechanical strength. The WPI-PLA gel efficiently encapsulated luteolin in a stable amorphous form and exhibited uniform particle size and excellent colloidal stability. This encapsulation improved the light, storage, and thermal stabilities of luteolin; enhanced its antioxidant activity due to improved dispersion; and enabled its preferential intestinal release. Encapsulated luteolin promoted the expression of thermogenic genes UCP1, Pgc-1α, Prdm16, and Cidea and protein levels of UCP1 and catalase in brown-differentiated C3H10T1/2 cells and inhibited the expression of lipopolysaccharide-induced inflammatory cytokines Il-6, Tnf-α, and Il-1β in RAW264.7 macrophages. In differentiated white 3T3-L1 adipocytes, WPI-LU-PLA restored insulin sensitivity impaired by macrophage-conditioned medium. This reversal was indicated by the enhanced expression of the insulin sensitivity-related genes GLUT4 and Irs1, along with increases in GLUT4 and p-Akt protein levels. In conclusion, the WPI-PLA composite gel enhances the stability, bioaccessibility, and bioactivity of luteolin, suggesting potential for functional foods targeting metabolic dysfunction in adipose tissues.

