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Effects of Polygonatum sibiricum on Physicochemical Properties, Biological Compounds, and Functionality of Fermented
Peng Wan1, Han Liu1, Yuanyuan Zhu1
1Zhang Zhongjing College of Chinese Medicine, Nanyang Institute of Technology, Nanyang 473000, China.
Abstract:
The purpose of this study was to investigate the effects of Polygonatum sibiricum (P. sibiricum) on microbial fermentation, physicochemical properties, and functional properties of fermented soymilk. Three types of fermented soymilk were prepared. The first type was fermented directly from regular soymilk (fermented soymilk, FSM), and the other two were fermented after adding P. sibiricum (P. sibiricum fermented soymilk, P-FSM) or P. sibiricum polysaccharides (P. sibiricum polysaccharides fermented soymilk, PP-FSM). The differences in physical and chemical indexes such as pH value, acidity, and water-holding capacity were mainly compared, and the differences in the contents of functional components such as total phenols, total flavonoids, soy isoflavones, γ-aminobutyric acid, and organic acids were compared. The functionalities of the three samples in terms of antioxidant activity were evaluated, and the relevance of each active substance was explored. Compared with the FSM group, the addition of P. sibiricum and P. sibiricum polysaccharides could not only significantly promote the fermentation of Lactobacillus but also significantly improve the stability of the finished products during storage and prolong the shelf life of the finished product. The conversion rates of glycoside soybean isoflavones in the PP-FSM and P-FSM groups were 73% and 69%, respectively, which were significantly higher than those in the FSM group (64%). At the end of fermentation, the γ-aminobutyric acid contents of the PP-FSM and P-FSM groups were 383.66 ± 1.41 mg/L and 386.27 ± 3.43 mg/L, respectively, while that of the FSM group was only 288.66 ± 3.94 mg/L. There were also great differences in the content and types of organic acids among the three samples, especially lactic acid and acetic acid. By comparing the antioxidant capacity of DPPH (1,1-Diphenyl-2-picrylhydrazyl free radical), AB-TS (2,2'-Azinobis-3-ethylbenzthiazoline-6-sulphonate), and iron chelation, it was found that both PP-FSM and P-FSM were superior to FSM, and the antioxidant capacity had a certain correlation with the contents of total phenols and total flavonoids.
Insights
Polygonatum sibiricum enhanced soymilk fermentation, improving product stability and shelf life. This study highlights its potential for creating healthier, functional fermented dairy alternatives.
Area of Science:
- Food Science
- Microbiology
- Phytochemistry
Background:
- Fermented soymilk is a popular dairy alternative with various health benefits.
- Enhancing the fermentation process and functional properties of soymilk is of significant interest.
- Polygonatum sibiricum is a medicinal herb with potential bioactive compounds.
Purpose of the Study:
- To investigate the effects of Polygonatum sibiricum (P. sibiricum) on the fermentation, physicochemical properties, and functional properties of soymilk.
- To compare the impact of whole P. sibiricum extract versus P. sibiricum polysaccharides on fermented soymilk.
- To evaluate the antioxidant activities and correlate them with bioactive compound content.
Main Methods:
- Three soymilk samples were prepared: regular fermented soymilk (FSM), P. sibiricum fermented soymilk (P-FSM), and P. sibiricum polysaccharides fermented soymilk (PP-FSM).
- Analysis included pH, acidity, water-holding capacity, total phenols, total flavonoids, soy isoflavones, γ-aminobutyric acid, and organic acids.
- Antioxidant activity was assessed using DPPH, AB-TS, and iron chelation assays.
Main Results:
- P. sibiricum and its polysaccharides significantly promoted Lactobacillus fermentation and improved the stability and shelf life of fermented soymilk.
- Higher conversion rates of glycoside soybean isoflavones were observed in PP-FSM (73%) and P-FSM (69%) compared to FSM (64%).
- PP-FSM and P-FSM exhibited significantly higher γ-aminobutyric acid content and superior antioxidant capacities (DPPH, AB-TS, iron chelation) compared to FSM, correlating with total phenol and flavonoid content.
Conclusions:
- The addition of P. sibiricum and its polysaccharides enhances the fermentation process and functional properties of soymilk.
- These additions lead to improved product stability, increased bioactive compound content, and enhanced antioxidant activity.
- P. sibiricum holds potential as a functional ingredient for developing improved fermented soymilk products.
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