| Title : Mechanistic investigation of carotenoid effects on lipid digestion-related processes: Pancreatic lipase inhibition and bile salt-mediated emulsion destabilization - Pan_2026_Food.Chem_523_150130 |
| Author(s) : Pan J , Nawaz M , Feng K , Li C , Liu J , Liu H , Lv Z , Yang W , Zhang Q , Jiao Z |
| Ref : Food Chem , 523 :150130 , 2026 |
|
Abstract :
Modulation of lipid digestion by food-derived compounds has attracted increasing interest. This study explored the effects of four common carotenoids (lutein, zeaxanthin, lycopene, and beta-carotene) on lipid digestion using simplified in vitro model systems from biochemical and interfacial perspectives. Lutein showed noncompetitive inhibition of pancreatic lipase, whereas zeaxanthin, lycopene, and beta-carotene exhibited mixed-type inhibition. Spectroscopy and molecular simulation showed that these carotenoids can directly interact with pancreatic lipase, altering its structure and reducing activity. At the oil-water interface, the presence of carotenoids significantly decreased the release of free fatty acids, destabilized bile salt-stabilized emulsions, increased interfacial tension, and reduced emulsion viscosity, phenomena largely arising from interactions between carotenoids and bile salts. Isothermal titration calorimetry combined with oil-water interface dynamics simulation revealed carotenoids binding to bile salts, with lutein and zeaxanthin displaying stronger affinities than lycopene and beta-carotene. These findings indicate that carotenoids may modulate lipid digestion through two possible mechanisms. |
| PubMedSearch : Pan_2026_Food.Chem_523_150130 |
| PubMedID: 42330614 |
Pan J, Nawaz M, Feng K, Li C, Liu J, Liu H, Lv Z, Yang W, Zhang Q, Jiao Z (2026)
Mechanistic investigation of carotenoid effects on lipid digestion-related processes: Pancreatic lipase inhibition and bile salt-mediated emulsion destabilization
Food Chem
523 :150130
Pan J, Nawaz M, Feng K, Li C, Liu J, Liu H, Lv Z, Yang W, Zhang Q, Jiao Z (2026)
Food Chem
523 :150130