Dual-Loaded Quercetin–Resveratrol Niosomes: Sustained In Vitro Release and Retained Bioactivity in Hummus During Simulated Gastrointestinal Digestion
Jade Alejandra Miramontes-Piedra, Miguel Ángel Robles-García, Alejandra Vázquez-Aguilar, Brenda Vega-Ruiz, Carmen Lizette Del-Toro-Sánchez, Fridha Viridiana Villalpando-Vargas, Sergio Yair Rodríguez-Preciado, Mariana Díaz-Zaragoza, Juan Carlos Barrera-de-León, Ernesto Ramírez-Briones, Ricardo Iván González-VegaQuercetin (QUE) and resveratrol (RES) have complementary bioactivities but limited aqueous solubility and oral bioavailability. This study developed dual-loaded quercetin–resveratrol niosomes (QR-NIOs) for incorporation into hummus and screened quercetin:resveratrol molar ratios using antioxidant, erythroprotective, and enzyme-inhibition assays. The 50:50 formulation showed the broadest activity profile and produced vesicles with 90.63 ± 3.63% overall encapsulation efficiency, 149 ± 13 nm diameter, 0.21 ± 0.02 polydispersity index, and −34 ± 2 mV ζ-potential. After 24 h, dialysis passage was 51.63%, compared with 80.35% for the unencapsulated mixture. Following simulated intestinal digestion, enriched hummus yielded 5.8 milligrams of gallic acid equivalents per gram of dry weight (mg GAE/g D.W.) and 4.7 milligrams of quercetin equivalents per gram of dry weight (mg QE/g D.W.) in the dialyzable phenolic and flavonoid fractions, respectively, exceeding both controls while retaining antioxidant and enzyme-inhibitory activities. Over 28 days at 4 °C, microbial counts remained below detection limits and the tested pathogens were absent. Overall acceptability (8.23/9) did not differ significantly from commercial hummus. QR-NIO-enriched hummus represents a sensory-compatible functional-food prototype with sustained apparent release and increased intestinal recovery of assay-reactive phenolic and flavonoid compounds; compound-specific and in vivo validation remains necessary.