Citation: | QIN Yizhen, HE Yang, FENG Yiting, et al. Optimization of Ultrasound-assisted Alkali Extraction of Bound Polyphenol from Rosa sterilis and Its Antioxidant Activity[J]. Science and Technology of Food Industry, 2024, 45(15): 1−9. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2023100066. |
[1] |
时圣德. 贵州蔷薇属新分类群[J]. 贵州科学,1985(1):8−9. [SHI S D. New taxa of Rosaceae from Guizhou[J]. Guizhou Science,1985(1):8−9.]
SHI S D. New taxa of Rosaceae from Guizhou[J]. Guizhou Science, 1985(1): 8−9.
|
[2] |
HAO M, ZHANG F, LIU X, et al. Qualitative and quantitative analysis of catechin and quercetin in flavonoids extracted from Rosa roxburghii Tratt[J]. Tropical Journal of Pharmaceutical Research,2018,17(1):71−76. doi: 10.4314/tjpr.v17i1.11
|
[3] |
付阳洋, 刘佳敏, 卢小鸾, 等. 刺梨主要活性成分及药理作用研究进展[J]. 食品工业科技,2020,41(13):328−335, 342. [FU Y Y, LIU J M, LU X L, et al. Research progress on main active components and pharmacological effects of Rosa roxburghii Tratt[J]. Science and Technology of Food Industry,2020,41(13):328−335, 342.]
FU Y Y, LIU J M, LU X L, et al. Research progress on main active components and pharmacological effects of Rosa roxburghii Tratt[J]. Science and Technology of Food Industry, 2020, 41(13): 328−335, 342.
|
[4] |
FULGENCIO S C. Dietary fiber as a carrier of dietary antioxidants:An essential physiological function[J]. Journal of Agricultural & Food Chemistry,2011,59(1):43−49.
|
[5] |
ZHUANG G, TANG D, CHEN Y. Research progress of bound polyphenols in improving intestinal oxidative stress and intestinal barrier[J]. Science and Technology of Food Industry,2022,43(11):440−448.
|
[6] |
ZHANG H, TROISE A D, QI Y, et al. Insoluble dietary fibre scavenges reactive carbonyl species under simulated physiological conditions:The key role of fibre-bound polyphenols[J]. Food Chemistry, 2021:129018.
|
[7] |
DOMINGGUEZ R, MARINA M, PLAZA M. Enzyme-assisted extraction of bioactive non-extractable polyphenols from sweet cherry (Prunus avium L.) pomace[J]. Food Chemistry, 2020:128086.
|
[8] |
张兴杰. 菠萝蜜膳食纤维中结合多酚的提取工艺优化及其消化酵解特性的研究[D]. 南昌:南昌大学, 2022. [ZHANG X J. Study on the optimization of the extraction process of the bound polyphenols in jackfruit dietary fiber, and its characteristics of digestion and fermentation[D]. Nanchang:Nanchang University, 2022.]
ZHANG X J. Study on the optimization of the extraction process of the bound polyphenols in jackfruit dietary fiber, and its characteristics of digestion and fermentation[D]. Nanchang: Nanchang University, 2022.
|
[9] |
WU H, ZHU J, YANG L, et al. Ultrasonic-assisted enzymatic extraction of phenolics from broccoli (Brassica oleracea L. var. italica) inflorescences and evaluation of antioxidant activity in vitro[J]. Food Sci Technol Int,2015,21(4):306−319. doi: 10.1177/1082013214536174
|
[10] |
钟烜钰, 王弘, 朱杰, 等. 超声-碱解联合提取法促进火龙果皮多酚的释放及其生物活性研究[C]. 中国食品科学技术学会第十九届年会论文摘要集, 2022:2. [ZHONG X Y, WANG H, ZHU J, et al. Ultrasound-alkaline combined extraction improves the release of polyphenols from pitahaya (Hylocereus undatus ‘Foo-Lon’) peel and its bioactivity study[C]. Abstracts of the 19th Annual Meeting of CIFST, 2022:2.]
ZHONG X Y, WANG H, ZHU J, et al. Ultrasound-alkaline combined extraction improves the release of polyphenols from pitahaya (Hylocereus undatus ‘Foo-Lon’) peel and its bioactivity study[C]. Abstracts of the 19th Annual Meeting of CIFST, 2022: 2.
|
[11] |
许涵婷, 唐语谦, 胡腾根, 等. 荔枝果渣可溶性膳食纤维去结合酚前后结构和功能性质的比较[J]. 现代食品科技,2023,39(8):206−212. [XU H T, TANG Y Q, HU T G, et al. Comparison of the structure and functional properties of soluble dietary fiber from lychee pomace before and after the removal of bound phenolics[J]. Modern Food Science and Technology,2023,39(8):206−212.]
XU H T, TANG Y Q, HU T G, et al. Comparison of the structure and functional properties of soluble dietary fiber from lychee pomace before and after the removal of bound phenolics[J]. Modern Food Science and Technology, 2023, 39(8): 206−212.
|
[12] |
李晗, 范方宇, 戚建华, 等. 超声辅助酶法提取无籽刺梨渣膳食纤维及理化性质评价[J]. 食品科技,2021,46(4):194−201. [LI H, FAN F Y, QI J H, et al. Ultrasonic assisted enzymatic extraction of dietary fiber from Rosa sterilis pomace and its physicochemical properties[J]. Food Science and Technology,2021,46(4):194−201.]
LI H, FAN F Y, QI J H, et al. Ultrasonic assisted enzymatic extraction of dietary fiber from Rosa sterilis pomace and its physicochemical properties[J]. Food Science and Technology, 2021, 46(4): 194−201.
|
[13] |
DONG R, LIU S, ZHENG Y, et al. Release and metabolism of bound polyphenols from carrot dietary fiber and their potential activity in in vitro digestion and colonic fermentation[J]. Food & Function,2020,11(7):6652−6665.
|
[14] |
ZHENG Y, LIU S, XIE J, et al. Antioxidant, α-amylase and α-glucosidase inhibitory activities of bound polyphenols extracted from mung bean skin dietary fiber[J]. LWT-Food Science and Technology,2020,132:109943. doi: 10.1016/j.lwt.2020.109943
|
[15] |
宋亚星, 郭占京, 黄宏妙, 等. Box-Behnken响应面优化超声辅助提取藿香蓟多酚及抗氧化活性研究[J]. 饲料研究,2023,46(11):75−80. [SONG Y X, GUO Z J, HUANG H M, et al. Optimization of ultrasonic-assisted extraction of polyphenols from Ageratum conyzoides L. by Box-Behnken response surface and evaluation of antioxidation activity[J]. Feed Research,2023,46(11):75−80.]
SONG Y X, GUO Z J, HUANG H M, et al. Optimization of ultrasonic-assisted extraction of polyphenols from Ageratum conyzoides L. by Box-Behnken response surface and evaluation of antioxidation activity[J]. Feed Research, 2023, 46(11): 75−80.
|
[16] |
ADDO P, POUDINEH Z, SHEARER M, et al, Relationship between total antioxidant capacity, cannabinoids and terpenoids in hops and cannabis[J]. Plants, 2023, 12(6):1225.
|
[17] |
ZONGO E, BUSUIOC A, MEDA R, et al. Exploration of the antioxidant and anti-inflammatory potential of Cassia sieberiana DC and Piliostigma thonningii (Schumach. ) Milne-Redh, traditionally used in the treatment of hepatitis in the Hauts-Bassins region of Burkina Faso[J]. Pharmaceuticals,2023,16(1):133. doi: 10.3390/ph16010133
|
[18] |
WANG Z, LIU Z, WU C, et al. Computational analysis on antioxidant activity of four characteristic structural units from persimmon tannin[J]. Materials,2023,16(1):320.
|
[19] |
蒋雨心, 邓岚, 范方宇. 鱼腥草根总黄酮超声辅助酶法提取工艺优化及其抗氧化活性研究[J]. 食品工业科技,2023,44(6):226−234. [JIANG Y X, DENG L, FAN F Y. Ultrasonic assisted extraction process of flavonoids from Houttuynia cordata Thunb and its antioxidant activity[J]. Science and Technology of Food Industry,2023,44(6):226−234.]
JIANG Y X, DENG L, FAN F Y. Ultrasonic assisted extraction process of flavonoids from Houttuynia cordata Thunb and its antioxidant activity[J]. Science and Technology of Food Industry, 2023, 44(6): 226−234.
|
[20] |
王丹丹, 董文江, 赵建平, 等. 剪切乳化辅助酶法提取咖啡果皮可溶性膳食纤维[J]. 热带作物学报,2019,40(3):567−575. [WANG D D, DONG W J, ZHAO J P, et al. Extraction of SDF from coffee peel by shearing emulsification assisted enzymatic hydrolysis[J]. Chinese Journal of Tropical Crops,2019,40(3):567−575.] doi: 10.3969/j.issn.1000-2561.2019.03.022
WANG D D, DONG W J, ZHAO J P, et al. Extraction of SDF from coffee peel by shearing emulsification assisted enzymatic hydrolysis[J]. Chinese Journal of Tropical Crops, 2019, 40(3): 567−575. doi: 10.3969/j.issn.1000-2561.2019.03.022
|
[21] |
杨宗玲, 李晗, 范方宇, 等. 超声辅助酶法提取无籽刺梨果渣中黄酮的工艺优化及其抗氧化活性[J]. 食品工业科技,2021,42(13):184−192. [YANG Z L, LI H, FAN F Y, et al. Ultrasound-assisted enzymatic extraction of flavonoids from Rosa sterilis pomace and its antioxidant activity[J]. Science and Technology of Food Industry,2021,42(13):184−192.]
YANG Z L, LI H, FAN F Y, et al. Ultrasound-assisted enzymatic extraction of flavonoids from Rosa sterilis pomace and its antioxidant activity[J]. Science and Technology of Food Industry, 2021, 42(13): 184−192.
|
[22] |
张孟凡, 岳丽, 敬思群, 等. 超声辅助-酶解协同作用提取红枣渣膳食纤维及其促消化作用[J]. 食品工业科技,2019,40(7):205−212. [ZHANG M F, YUE L, JING S Q, et al. Extraction of dietary fiber from red jujube residue by ultrasonic-enzymatic hydrolysis synergistic action and its promoting digestion function[J]. Science and Technology of Food Industry,2019,40(7):205−212.]
ZHANG M F, YUE L, JING S Q, et al. Extraction of dietary fiber from red jujube residue by ultrasonic-enzymatic hydrolysis synergistic action and its promoting digestion function[J]. Science and Technology of Food Industry, 2019, 40(7): 205−212.
|
[23] |
马艳, 姜亦超, 董格格, 等. 超声辅助提取玄米茶多酚工艺的优化及其抗氧化活性研究[J]. 食品工业,2023,44(8):22−27. [MA Y, JIANG Y C, DONG G G, et al. Optimization on process of polyphenols from genmaicha by ultrasonic-assisted extraction and its antioxidant activities study[J]. The Food Industry,2023,44(8):22−27.]
MA Y, JIANG Y C, DONG G G, et al. Optimization on process of polyphenols from genmaicha by ultrasonic-assisted extraction and its antioxidant activities study[J]. The Food Industry, 2023, 44(8): 22−27.
|
[24] |
付镓榕, 徐荣, 郭刚军, 等. 单因素结合响应面法优化魔芋多酚含量测定方法[J]. 食品工业,2023,44(6):299−304. [FU J R, XU R, GUO G J, et al. Optimization of content determination method of polyphenols from konjac by single factor and response surface methodology[J]. The Food Industry,2023,44(6):299−304.]
FU J R, XU R, GUO G J, et al. Optimization of content determination method of polyphenols from konjac by single factor and response surface methodology[J]. The Food Industry, 2023, 44(6): 299−304.
|
[25] |
冉莎, 张甫生, 李彬, 等. 竹笋膳食纤维中结合多酚的提取工艺优化及抗氧化活性分析[J]. 食品工业科技,2023,44(13):233−241. [RAN S, ZHANG F S, LI B, et al. Extraction optimization and antioxidant activity of bound polyphenols in bamboo shoot dietary fiber[J]. Science and Technology of Food Industry,2023,44(13):233−241.]
RAN S, ZHANG F S, LI B, et al. Extraction optimization and antioxidant activity of bound polyphenols in bamboo shoot dietary fiber[J]. Science and Technology of Food Industry, 2023, 44(13): 233−241.
|
[26] |
王萍, 刘慧, 付湘晋, 等. 13种植物多酚提取物抗氧化活性分析及其对冻藏未漂洗鱼糜品质的影响研究[J]. 食品安全质量检测学报,2023,14(16):50−56. [WANG P, LIU H, FU X J, et al. Study on the analysis of antioxidant activity of 13 kinds of plant polyphenol extracts and its effect on the quality of frozen unwashed surimi[J]. Journal of Food Safety and Quality,2023,14(16):50−56.]
WANG P, LIU H, FU X J, et al. Study on the analysis of antioxidant activity of 13 kinds of plant polyphenol extracts and its effect on the quality of frozen unwashed surimi[J]. Journal of Food Safety and Quality, 2023, 14(16): 50−56.
|
[27] |
ELENA O, CRISTINA N, MARGHERITA L, et al. Antioxidant activity of coatings containing eugenol for flexible aluminium foils to preserve food shelf-life[J]. Food Packaging and Shelf Life, 2023, 39:101145.
|
[28] |
YILDIRIM A, MAVI A, KARA A. Determination of antioxidant and antimicrobial activities of Rumex crispus L. extracts[J]. Journal of Agricultural and Food Chemistry,2001,49(8):4083−4089. doi: 10.1021/jf0103572
|
[29] |
黄忠有, 黄锁义, 喻巧容, 等. 薏苡根不同极性组分的抗氧化活性分析[J]. 中国野生植物资源,2019,38(1):17−20. [HUANG Z Y, HUANG S Y, YU Q R, et al. Research on different part antioxidant activity of Coix seed[J]. Chinese Wild Plant Resources,2019,38(1):17−20.] doi: 10.3969/j.issn.1006-9690.2019.01.005
HUANG Z Y, HUANG S Y, YU Q R, et al. Research on different part antioxidant activity of Coix seed[J]. Chinese Wild Plant Resources, 2019, 38(1): 17−20. doi: 10.3969/j.issn.1006-9690.2019.01.005
|
[30] |
黄丹思. 刺梨果渣多酚的提取鉴定、抗氧化活性及其体外消化酵解规律的研究[D]. 广州:华南理工大学, 2022. [HUANG D S. Study on the extraction, identification and antioxidant activity of polyphenols from Rosa roxburghii Tratt fruit pomace and their in vitro digestion and colonic fermentation[D]. Guangzhou:South China University of Technology, 2022.]
HUANG D S. Study on the extraction, identification and antioxidant activity of polyphenols from Rosa roxburghii Tratt fruit pomace and their in vitro digestion and colonic fermentation[D]. Guangzhou: South China University of Technology, 2022.
|
[31] |
彭春彦, 谢星, 李一华, 等. 海带、坛紫菜和裙带菜游离和结合酚抗氧化和酶抑制活性比较[J]. 食品与发酵工业,2023,49(4):110−116. [PENG C Y, XIE X, LI Y H, et al. Antioxidant and enzyme inhibition activities of free and bound phenolics of Lanminaria japonica, Porphyra haitanensis, and Undaria pinnatifida[J]. Food and Fermentation Industries,2023,49(4):110−116.]
PENG C Y, XIE X, LI Y H, et al. Antioxidant and enzyme inhibition activities of free and bound phenolics of Lanminaria japonica, Porphyra haitanensis, and Undaria pinnatifida[J]. Food and Fermentation Industries, 2023, 49(4): 110−116.
|
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