Optimization of Composite Enzymatic Extraction, Structural Characterization and Biological Activity of Soluble Dietary Fiber from Akebia trifoliata Peel

Author:

Song Ya1ORCID,Sun Guoshun12ORCID,Wang Dian1,Chen Jin1,Lv Jun1,Jiang Sixia1,Zhang Guoqiang1,Yu Shirui13,Zheng Huayan14ORCID

Affiliation:

1. Department of Food Science and Engineering, Moutai Institute, Renhuai 564507, China

2. State Key Laboratory of Food Science and Resources, Nanchang University, Nanchang 330047, China

3. Engineering Technology Research Center of Health Wine Brewing, Renhuai 564507, China

4. Talent Cultivation Center of Moutai Institute on Characteristic Food Resource Utilization, Renhuai 564507, China

Abstract

In order to reduce the waste of Akebia trifoliata peel and maximize its utilization, in this study, on the basis of a single-factor experiment and the response surface method, the optimum technological conditions for the extraction of soluble dietary fiber from Akebia trifoliata peel with the compound enzyme method were obtained. The chemical composition, physical and chemical properties, structural characterization and biological activity of the purified soluble dietary fiber (AP-SDF) from the Akebia trifoliata peel were analyzed. We discovered that that the optimum yield was 20.87% under the conditions of cellulase addition 600 U/g, enzymolysis time 100 min, solid–liquid ratio 1:24 g/mL and enzymolysis temperature 51 °C. At the same time, AP-SDF was a porous network structure cellulose type I acidic polysaccharose mainly composed of arabinoxylan (36.03%), galacturonic acid (27.40%) and glucose (19.00%), which possessed the structural characteristic peaks of the infrared spectra of polysaccharides and the average molecular weight (Mw) was 95.52 kDa with good uniformity. In addition, the AP-SDF exhibited high oil-holding capacity (15.11 g/g), good water-holding capacity and swelling capacity, a certain antioxidant capacity in vitro, hypoglycemic activity in vitro for α-glucosidase inhibition and hypolipidemic activity in vitro for the binding ability of bile acids and cholesterol. These results will provide a theoretical basis for the development of functional products with antioxidant, hypoglycemic and hypolipidemic effects, which have certain application value in related industries.

Funder

Natural Science Foundation of Guizhou Province

Engineering Research Center Program of Guizhou Provincial Education Department

Zunyi Technology and Big Data Bureau, Moutai institute joint science and technology research and development project

Research Foundation for Scientific Scholars of Moutai Institute

Guizhou Provincial Innovation and Entrepreneurship Training Program for College Students

Publisher

MDPI AG

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