Affiliation:
1. State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi 214122, China
2. School of Food Science and Technology, Jiangnan University, Wuxi 214122, China
3. Department of Food Science and Technology, National University of Singapore, Singapore 117542, Singapore
Abstract
In this study, a compound sugar (CS) with different glycemic index sugars was formulated via hydrolysis characteristics and postprandial glycemic response, and the impact of CS and creatine emulsion on exercise-related fatigue in mice was investigated. Thirty-five C57BL/6 mice were randomly divided into five groups to supply different emulsions for 4 weeks: initial emulsion (Con), glucose emulsion (62 mg/10 g MW glucose; Glu), CS emulsion (62 mg/10 g MW compound sugar; CS), creatine emulsion (6 mg/10 g MW creatine; Cr), and CS and creatine emulsion (62 mg/10 g MW compound sugar, 6 mg/10 g MW creatine, CS-Cr). Then, the exhaustion time of weight-bearing swimming and forelimb grip strength were measured to evaluate the exercise capacity of mice, and some fatigue-related biochemical indexes of blood were determined. The results demonstrated that the ingestion of CS significantly reduced the peak of postprandial blood glucose levels and prolonged the energy supply of mice compared to ingesting an equal amount of glucose. Mouse exhaustion time was 1.22-fold longer in the CS group than in the glucose group. Additionally, the supplementation of CS increased the liver glycogen content and total antioxidant capacity of mice. Moreover, the combined supplementation of CS and creatine increased relative forelimb grip strength and decreased blood creatine kinase activity. The findings suggested that the intake of CS could enhance exercise capacity, and the combined supplementation of CS and creatine has a synergistic effect in improving performance.
Funder
National Natural Science Foundation of China
111 project
national first-class discipline program of Food Science and Technology
program of “Collaborative Innovation Center of Food Safety and Quality Control in Jiangsu Province”, China
Reference37 articles.
1. Dietary sugars, exercise and hepatic carbohydrate metabolism;Gonzalez;Proc. Nutr. Soc.,2019
2. Effect of ammonia on in vitro diaphragmatic contractility, fatigue and recovery;Shanely;Respiration,2002
3. New strategies in sport nutrition to increase exercise performance;Close;Free Radical Biol. Med.,2016
4. Carbohydrate-loading and exercise performance;Hawley;Sports Med.,1997
5. Kim, S., Jo, K., Kim, N., Hong, K.-B., and Suh, H.J. (2020). The role of alternative sugars on endurance capacity in balb/c mice. J. Food Biochem., 44.