山东大学学报(理学版) ›› 2016, Vol. 51 ›› Issue (5): 1-5.doi: 10.6040/j.issn.1671-9352.0.2015.542
• • 下一篇
李曌1,2,李宏强2,陈国刚1,吴剑3,4,徐建2*
LI Zhao1,2, LI Hong-qiang2, CHEN Guo-gang1, WU Jian3,4, XU Jian2*
摘要: 多酚所具有的保健作用逐渐被人们所认识,含有丰富多酚类化合物的野樱莓(Aronia melanocarpa)也逐渐受到关注。高效提取野樱莓中总多酚是其高值化利用的重要途径。本文对比研究了利用酸性乙醇、乙醇和纯水3种提取剂对野樱莓中总多酚的提取效果。结果表明,酸性乙醇具有最高的多酚提取率,而以纯水作为提取剂其多酚提取量只有酸性乙醇的28.77%。对多酚抗氧化活性(去除DPPH自由基的能力)研究发现,水提多酚的抗氧化活性高于乙醇和酸性乙醇提取的多酚。酸性乙醇、乙醇和纯水提取的多酚去除DPPH自由基的VC当量比值为100∶76.10∶70.83。将3种提取液减压浓缩至原体积的10%后,多酚的抗氧化活性几乎不损失,但是3种浓缩液在冷冻干燥后,只有水提多酚可以完全复溶。综合考虑成本、安全等因素,纯水作为野樱莓多酚的提取剂具有一定优势。
中图分类号:
[1] 赵明优. 黑果腺肋花楸的开发利用价值及栽培技术[J]. 陕西林业科技, 2012(2):100-102. ZHAO Mingyou. Development and cultivation techniques of Aronia melanocarpa[J]. Shaanxi Forest Science and Technology, 2012(2):100-102. [2] 王鹏. 国外黑果腺肋花楸多酚类物质功能性研究进展[J]. 林业科技, 2014, 39(4):67-70. WANG Peng. Research progress about function of Aronia melanocarpa in foreign country[J]. Forest Science & Technology, 2014, 39(4):67-70. [3] TOLIC M T, JURCEVIC I L, KRBAVCIC I P, et al. Phenolic content, antioxidant capacity and quality of chokeberry(Aronia melanocarpa)products[J]. Food Technology and Biotechnology, 2015, 53(2):171. [4] PARZONKO A, NARUSZEWICZ M. Cardioprotective effects of Aronia melanocarpa anthocynanins. From laboratory experiments to clinical practice[J]. Current Pharmaceutical Design, 2016, 22(2):174-179. [5] BRIDLE P, TIMBERLAKE C. Anthocyanins as natural food colours—selected aspects[J]. Food Chemistry, 1997, 58(1):103-109. [6] KULLING S E, RAWEL H M. Chokeberry(Aronia melanocarpa)—a review on the characteristic components and potential health effects[J]. Planta Medica, 2008, 74(13): 1625-1634. [7] THI N D, HWANG E S. Effects of drying methods on contents of bioactive compounds and antioxidant activities of black chokeberries(Aronia melanocarpa)[J]. Food Science and Biotechnology, 2016, 25(1): 55-61. [8] RAMIC M, VIDOVIC S, ZEKOVIC Z, et al. Modeling and optimization of ultrasound-assisted extraction of polyphenolic compounds from Aronia melanocarpa by-products from filter-tea factory[J]. Ultrasonics Sonochemistry, 2015, 23:360-368. [9] OSZMIANSKI J, WOJDYLO A. Aronia melanocarpa phenolics and their antioxidant activity[J]. European Food Research and Technology, 2005, 221(6):809-813. [10] BOLLING B W, TAHERI R, PEI R, et al. Harvest date affects aronia juice polyphenols, sugars, and antioxidant activity, but not anthocyanin stability[J]. Food Chemistry, 2015, 187:189-196. [11] HORSZWALD A, JULIEN H, ANDLAUER W. Characterisation of Aronia powders obtained by different drying processes[J]. Food Chemistry, 2013, 141(3):2858-2863. [12] HERNANDEZ-JIMENEZ A, KENNEDY J A, BAUTISTA-ORTIN A B, et al. Effect of ethanol on grape seed proanthocyanidin extraction[J]. American Journal of Enology and Viticulture, 2012, 63(1):57-61. [13] GHAFOOR K, CHOI Y H, JEON J Y, et al. Optimization of ultrasound-assisted extraction of phenolic compounds, antioxidants, and anthocyanins from grape(Vitis vinifera)seeds[J]. Journal of Agricultural and Food Chemistry, 2009, 57(11):4988-4994. [14] WANG Jing, SUN Baoguo, CAO Yanping, et al. Optimisation of ultrasound-assisted extraction of phenolic compounds from wheat bran[J]. Food Chemistry, 2008, 106(2):804-810. [15] FULEKI T, FRANCIS F J. Quantitative methods for anthocyanins I. Extraction and determination of total anthocyanin in cranberries[J]. Journal of Food Science, 1968, 33:72-77. [16] 何莎莉,王钫. Folin-Ciocalteu 比色法测定保健品中多酚总量[J]. 分析化学, 2009, 37(A03):385-385. HE Shali, WANG Fang. Folin-Ciocalteu colorimetric determination of total polyphenols in health products[J]. Chinese Journal of Analyfical Chemistry, 2009, 37(A03):385-385. [17] BLOIS M S. Antioxidant determinations by the use of a stable free radical[J]. Nature, 1958, 181(4617):1199-1200. [18] BENVENUTI S, PELLATI F, MELEGARI M A, et al. Polyphenols, anthocyanins, ascorbic acid, and radical scavenging activity of Rubus, Ribes, and Aronia[J]. Journal of Food Science, 2004, 69(3):164-169. |
No related articles found! |
|