Ultrasound–Microwave Combined Extraction of Novel Polysaccharide Fractions from Lycium barbarum Leaves and Their In Vitro Hypoglycemic and Antioxidant Activities

Ultrasound–microwave combined extraction (UMCE), gradient ethanol precipitation, chemical characterization, and antioxidant and hypoglycemic activities of Lycium barbarum leaf polysaccharides (LLP) were systematically studied. The optimal conditions for UMCE of LLP achieved by response surface method (RSM) were as follows: microwave time of 16 min, ultrasonic time of 20 min, particle size of 100 mesh, and ratio of liquid to solid of 55:1. Three novel polysaccharide fractions (LLP30, LLP50, LLP70) with different molecular weights were obtained by gradient ethanol precipitation. Polysaccharide samples exhibited scavenging capacities against ABTS and DPPH radicals and inhibitory activities against α-glucosidase and α-amylase. Among the three fractions, LLP30 possessed relatively high antioxidant and hypoglycemic activities in vitro, which showed a potential for becoming a nutraceutical or a phytopharmaceutical for prevention and treatment of hyperglycemia or diabetes. © 2023 by the authors.

Авторы
Quan N. , Wang Y.-D. , Li G.-R. , Liu Z.-Q. , Feng J. , Qiao C.-L. , Zhang H.-F.
Журнал
Издательство
MDPI AG
Номер выпуска
9
Язык
Английский
Статус
Опубликовано
Номер
3880
Том
28
Год
2023
Организации
  • 1 International Joint Research Center of Shaanxi Province for Food and Health Sciences, Provincial Research Station of Se-Enriched Foods in Hanyin County of Shaanxi Province, College of Food Engineering and Nutritional Science, National Engineering Laboratory for Resource Development of Endangered Crude Drugs in Northwest China, Shaanxi Normal University, Xi’an, 710119, China
  • 2 Yinchuan Market Supervision Administration, Yinchuan, 750001, China
  • 3 Agrarian and Technological Institute, Peoples’ Friendship University of Russia, Moscow, 119991, Russian Federation
Ключевые слова
antioxidant capacity; hypoglycemic activity; Lycium barbarum leaves; polysaccharides; ultrasound–microwave combined extraction
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