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Natural Deep Eutectic Solvent-Based Microwave-Assisted Extraction of Total Flavonoid Compounds from Spent Sweet Potato (Ipomoea batatas L.) Leaves: Optimization and Antioxidant and Bacteriostatic Activity
by
Bian, Shiquan
, Hu, Jing
, Liu, Gang
, Wang, Tongyong
, Zhang, Yuqin
, Peng, Shouhua
, Chen, Hongjiang
, Zhu, Haibo
, Jiang, Zhenying
, Ye, Quan
in
Acids
/ Agricultural production
/ Antibacterial agents
/ antioxidant activity
/ Antioxidants
/ Antioxidants - chemistry
/ Choline - analysis
/ Cosmetics
/ Deep Eutectic Solvents
/ Escherichia coli
/ Flavonoids
/ Flavonoids - chemistry
/ Hydrogen bonds
/ Ipomoea batatas - chemistry
/ Malic acid
/ Microwaves
/ natural deep eutectic solvents
/ Pharmaceuticals
/ Plant Extracts - chemistry
/ Plant Leaves - chemistry
/ Polyphenols
/ Potatoes
/ Resins
/ response surface
/ Rutin - analysis
/ Solvents
/ Solvents - chemistry
/ spent sweet potato leaves
/ Staphylococcus aureus
2022
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Natural Deep Eutectic Solvent-Based Microwave-Assisted Extraction of Total Flavonoid Compounds from Spent Sweet Potato (Ipomoea batatas L.) Leaves: Optimization and Antioxidant and Bacteriostatic Activity
by
Bian, Shiquan
, Hu, Jing
, Liu, Gang
, Wang, Tongyong
, Zhang, Yuqin
, Peng, Shouhua
, Chen, Hongjiang
, Zhu, Haibo
, Jiang, Zhenying
, Ye, Quan
in
Acids
/ Agricultural production
/ Antibacterial agents
/ antioxidant activity
/ Antioxidants
/ Antioxidants - chemistry
/ Choline - analysis
/ Cosmetics
/ Deep Eutectic Solvents
/ Escherichia coli
/ Flavonoids
/ Flavonoids - chemistry
/ Hydrogen bonds
/ Ipomoea batatas - chemistry
/ Malic acid
/ Microwaves
/ natural deep eutectic solvents
/ Pharmaceuticals
/ Plant Extracts - chemistry
/ Plant Leaves - chemistry
/ Polyphenols
/ Potatoes
/ Resins
/ response surface
/ Rutin - analysis
/ Solvents
/ Solvents - chemistry
/ spent sweet potato leaves
/ Staphylococcus aureus
2022
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Natural Deep Eutectic Solvent-Based Microwave-Assisted Extraction of Total Flavonoid Compounds from Spent Sweet Potato (Ipomoea batatas L.) Leaves: Optimization and Antioxidant and Bacteriostatic Activity
by
Bian, Shiquan
, Hu, Jing
, Liu, Gang
, Wang, Tongyong
, Zhang, Yuqin
, Peng, Shouhua
, Chen, Hongjiang
, Zhu, Haibo
, Jiang, Zhenying
, Ye, Quan
in
Acids
/ Agricultural production
/ Antibacterial agents
/ antioxidant activity
/ Antioxidants
/ Antioxidants - chemistry
/ Choline - analysis
/ Cosmetics
/ Deep Eutectic Solvents
/ Escherichia coli
/ Flavonoids
/ Flavonoids - chemistry
/ Hydrogen bonds
/ Ipomoea batatas - chemistry
/ Malic acid
/ Microwaves
/ natural deep eutectic solvents
/ Pharmaceuticals
/ Plant Extracts - chemistry
/ Plant Leaves - chemistry
/ Polyphenols
/ Potatoes
/ Resins
/ response surface
/ Rutin - analysis
/ Solvents
/ Solvents - chemistry
/ spent sweet potato leaves
/ Staphylococcus aureus
2022
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Natural Deep Eutectic Solvent-Based Microwave-Assisted Extraction of Total Flavonoid Compounds from Spent Sweet Potato (Ipomoea batatas L.) Leaves: Optimization and Antioxidant and Bacteriostatic Activity
Journal Article
Natural Deep Eutectic Solvent-Based Microwave-Assisted Extraction of Total Flavonoid Compounds from Spent Sweet Potato (Ipomoea batatas L.) Leaves: Optimization and Antioxidant and Bacteriostatic Activity
2022
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Overview
Natural deep eutectic solvents (NADESs) coupled with microwave-assisted extraction (MAE) were applied to extract total flavonoid compounds from spent sweet potato (Ipomoea batatas L.) leaves. In this study, ten different NADESs were successfully synthesized for the MAE. Based on single-factor experiments, the response surface methodology (RSM) was applied, and the microwave power, extraction temperature, extraction time, and solid–liquid ratio were further evaluated in order to optimize the yields of total flavonoid compounds. Besides, the extracts were recovered by macroporous resin for the biological activity detection of flavonoid compounds. As a result, NADES-2, synthesized by choline chloride and malic acid (molar ratio 1:2), exhibited the highest extraction yield. After that, the NADES-2-based MAE process was optimized and the optimal conditions were as follows: microwave power of 470 W, extraction temperature of 54 °C, extraction time of 21 min, and solid–liquid ratio of 70 mg/mL. The extraction yield (40.21 ± 0.23 mg rutin equivalents/g sweet potato leaves) of the model validation experiment was demonstrated to be in accordance with the predicted value (40.49 mg rutin equivalents/g sweet potato leaves). In addition, flavonoid compounds were efficiently recovered from NADES-extracts with a high recovery yield (>85%) using AB-8 macroporous resin. The bioactivity experiments in vitro confirmed that total flavonoid compounds had good DPPH and O2−· radical-scavenging activity, as well as inhibitory effects on E. coli, S. aureus, E. carotovora, and B. subtilis. In conclusion, this study provides a green and efficient method to extract flavonoid compounds from spent sweet potato leaves, providing technical support for the development and utilization of sweet potato leaves’ waste.
Publisher
MDPI AG,MDPI
Subject
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