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Polymerized Whey Protein Concentrate-Based Glutathione Delivery System: Physicochemical Characterization,Bioavailability and Sub-Chronic Toxicity Evaluation
Authors:Siyu Zhang  Cuina Wang  Weigang Zhong  Alyssa H Kemp  Mingruo Guo  Adam Killpartrick
Institution:1.Key Laboratory of Dairy Science of Ministry of Education, Northeast Agricultural University, Harbin 150030, China; (S.Z.); (M.G.);2.Department of Food Science, Jilin University, Changchun 130000, China; (C.W.); (W.Z.);3.Department of Nutrition and Food Sciences, University of Vermont, Burlington, VT 05403, USA;
Abstract:Glutathione (GSH) is a powerful antioxidant, but its application is limited due to poor storage stability and low bioavailability. A novel nutrient encapsulation and delivery system, consisting of polymerized whey protein concentrate and GSH, was prepared and in vivo bioavailability, antioxidant capacity and toxicity were evaluated. Polymerized whey protein concentrate encapsulated GSH (PWPC-GSH) showed a diameter of roughly 1115 ± 7.07 nm (D50) and zeta potential of 30.37 ± 0.75 mV. Differential scanning calorimetry (DSC) confirmed that GSH was successfully dispersed in PWPC particles. In vivo pharmacokinetics study suggested that PWPC-GSH displayed 2.5-times and 2.6-fold enhancement in maximum concentration (Cmax) and area under the concentration–time curve (AUC) as compared to free GSH. Additionally, compared with plasma of mice gavage with free GSH, significantly increased antioxidant capacity of plasma in mice with PWPC-GSH was observed (p < 0.05). Sub-chronic toxicity evaluation indicated that no adverse toxicological reactions related to oral administration of PWPC-GSH were observed on male and female rats with a diet containing PWPC-GSH up to 4% (w/w). Data indicated that PWPC may be an effective carrier for GSH to improve bioavailability and antioxidant capacity.
Keywords:polymerized whey protein  glutathione  physicochemical properties  pharmacokinetics  toxicity
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