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水蜡树果实总黄酮抗脂质过氧化作用

史晓晶 蔡瑾 靳辉 李丹 张悦悦 郭军 吴婷

史晓晶,蔡瑾,靳辉,等. 水蜡树果实总黄酮抗脂质过氧化作用 [J]. 福建农业学报,2020,35(12):1391−1396 doi: 10.19303/j.issn.1008-0384.2020.12.013
引用本文: 史晓晶,蔡瑾,靳辉,等. 水蜡树果实总黄酮抗脂质过氧化作用 [J]. 福建农业学报,2020,35(12):1391−1396 doi: 10.19303/j.issn.1008-0384.2020.12.013
SHI X J, CAI J, JIN H, et al. Anti-peroxidation of Total Flavonoids from Fruits of Ligustrum obtusifolium on Lipids [J]. Fujian Journal of Agricultural Sciences,2020,35(12):1391−1396 doi: 10.19303/j.issn.1008-0384.2020.12.013
Citation: SHI X J, CAI J, JIN H, et al. Anti-peroxidation of Total Flavonoids from Fruits of Ligustrum obtusifolium on Lipids [J]. Fujian Journal of Agricultural Sciences,2020,35(12):1391−1396 doi: 10.19303/j.issn.1008-0384.2020.12.013

水蜡树果实总黄酮抗脂质过氧化作用

doi: 10.19303/j.issn.1008-0384.2020.12.013
基金项目: 山西省高等学校科技创新项目(2019L0832);山西省应用基础研究青年基金面上项目(201701D221179)
详细信息
    通讯作者:

    史晓晶(1983−),女,博士,副教授,研究方向:天然活性产物与环境毒理(Email:xzsysxj@sina.com

  • 中图分类号: S 609+.2

Anti-peroxidation of Total Flavonoids from Fruits of Ligustrum obtusifolium on Lipids

  • 摘要:   目的  初步探究水蜡树果实总黄酮的抗脂质过氧化作用。  方法  用分光光度法测定水蜡树果实总黄酮对DPPH·自由基和羟自由基(·OH)的清除率,分析其对小鼠肝匀浆中自氧化和诱导(FeSO4和H2O2)生成的丙二醛(MDA)含量、Fe2+与抗坏血酸(Vc)诱导的小鼠肝线粒体肿胀度、H2O2诱导的小鼠红细胞氧化溶血、氧化氢酶(CAT)和谷胱甘肽过氧化氢酶(GSH-Px)活性及谷胱甘肽(GSH)含量的影响。  结果  水蜡树果实总黄酮对DPPH·自由基和·OH自由基具有一定的清除能力,IC50分别为(0.45±0.01) g·L−1和(1.57±0.12 )g·L−1;1.0~6.0 g·L−1水蜡树果实总黄酮能抑制自氧化体系中MDA的生成;0.5~6.0 g·L−1总黄酮可降低FeSO4诱导条件下MDA的生成;2.0~6.0 g·L−1总黄酮可抑制H2O2诱导条件下MDA的生成;0.5~10.0 g·L−1总黄酮能明显减缓Fe2+与Vc诱导的肝线粒体悬液OD520值的下降,2.0~10.0 g·L−1总黄酮可明显减弱H2O2诱导红细胞的溶血度;0.6~4.0 g·L−1总黄酮可显著提高CAT和GSH-Px的活性及GSH的含量。  结论  水蜡树果实总黄酮可减弱小鼠肝组织自发性过氧化和诱导脂质过氧化,抑制小鼠肝线粒体和红细胞的氧化损伤,提高抗氧化酶的活性及非酶抗氧化物的含量。本研究对水蜡树果实天然抗氧化剂的开发有一定的借鉴意义。
  • 图  1  水蜡树果实总黄酮粗提物对DPPH·(左)和·OH(右)的清除率

    注:同浓度上不同小写字母表示经Duncan氏新复极差法检验在0.05水平下差异显著。

    Figure  1.  Scavenging capacities of crude flavonoid extract from L. obtusifolium fruit on DPPH· (A) and ·OH (B)

    Note: Data with different letters on same concentration indicate significant difference at P<0.05 by Duncan’s new multiple range test.

    图  2  水蜡树果实总黄酮粗提物对小鼠肝匀浆生成MDA的影响

    注:ND代表无诱导组,FD代表FeSO4诱导组,HD代表H2O2诱导组。同色柱上方不同小写字母表示经Duncan氏新复极差法检验在0.05水平下差异显著。

    Figure  2.  MDA contents in rat liver homogenate treated by flavonoid extract of L. obtusifolium fruits

    Note: ND denotes no induction treatment; FD, induction by FeSO4; and, HD, induction by H2O2. Data with different letters on column of same color indicate significant difference at P<0.05 by Duncan’s new multiple range test.

    图  3  水蜡树果实总黄酮粗提物对小鼠肝线粒体肿胀度的影响

    注:FVD代表FeSO4和Vc共同作用的诱导组,CK为对照。同一时间处理上不同小写字母表示经Duncan氏新复极差法检验在0.05水平下差异显著。

    Figure  3.  Rat liver mitochondrial swelling induced by Fe2+ and Vc treated by flavonoid extract of L. obtusifolium fruits

    Note: FVD denotes induction by FeSO4 and Vc; and, CK, control. Data with different letters on same time treatment indicate significant difference at P<0.05 by Duncan’s new multiple range test.

    图  4  水蜡树果实总黄酮粗提物对H2O2诱导红细胞氧化溶血的影响

    注:柱中不同小写字母表示经Duncan氏新复极差法检验在0.05水平下差异显著。

    Figure  4.  Hemolysis of RBCs treated by flavonoid extract of L. obtusifolium fruits

    Note: Different letters in the columns indicate significant difference at P<0.05 level by Duncan’s new multiple range test.

    表  1  水蜡树果实总黄酮粗提物对小鼠肝组织中CAT、GSH和GSH-Px的影响

    Table  1.   Effect of crude extract of total flavonoids from L. obtusifolium fruit on CAT, GSH and GSH-Px in liver tissues of rats

    组别CAT/
    (U·mgprot-1
    GSH/
    (μmol·gprot-1
    GSH-Px/
    (U·mgprot-1
    C20.53±0.47 d50.78±0.99 d82.54±0.84 d
    L26.49±0.50 c60.20±0.67 c108.40±1.35 c
    M30.84±0.95 b71.46±1.30 b123.44±0.90 b
    H34.91±0.61 a77.47±0.74 a131.06±0.79 a
    注:同列内不同小写字母表示经Duncan氏新复极差法检验在0.05水平下差异显著。
    Note: Different letters in the columns indicate significant difference at P<0.05 level by Duncan’s new multiple range test.
    下载: 导出CSV
  • [1] 余蕾. 水蜡果实色素的提取及色素性质的研究 [J]. 食品研究与开发, 2015, 36(21):72−74. doi: 10.3969/j.issn.1005-6521.2015.21.019

    YU L. Study on the properties and extraction of pigment from Ligustrum obtusifolium Sieb. et Zuce. [J]. Food Research and Development, 2015, 36(21): 72−74.(in Chinese) doi: 10.3969/j.issn.1005-6521.2015.21.019
    [2] 冯海华. 水蜡树的观赏特性及在城市绿化中的应用 [J]. 河北林业科技, 2013(4):92−93, 98. doi: 10.3969/j.issn.1002-3356.2013.04.035

    FENG H H. The ornamental characteristics of Ligustrum obtusifolium and their application in urban greening [J]. Journal of Hebei Forestry Science and Technology, 2013(4): 92−93, 98.(in Chinese) doi: 10.3969/j.issn.1002-3356.2013.04.035
    [3] CZERWIŃSKA M E, GRANICA S, KISS A K. Effects of an aqueous extract from leaves of Ligustrum vulgare on mediators of inflammation in a human neutrophils model [J]. Planta Medica, 2013, 79(11): 924−932. doi: 10.1055/s-0032-1328718
    [4] HAMDI H K, CASTELLON R. Oleuropein, a non-toxic olive iridoid, is an anti-tumor agent and cytoskeleton disruptor [J]. Biochemical and Biophysical Research Communications, 2005, 334(3): 769−778. doi: 10.1016/j.bbrc.2005.06.161
    [5] ANDREADOU I, ILIODROMITIS E K, MIKROS E, et al. The olive constituent oleuropein exhibits anti-ischemic, antioxidative, and hypolipidemic effects in anesthetized rabbits [J]. Journal of Nutrition, 2006, 136(8): 2213−2219. doi: 10.1093/jn/136.8.2213
    [6] AL-AZZAWIE H F, ALHAMDANI M S S. Hypoglycemic and antioxidant effect of oleuropein in alloxan-diabetic rabbits [J]. Life Sciences, 2006, 78(12): 1371−1377. doi: 10.1016/j.lfs.2005.07.029
    [7] SUH W S, KWON O K, LEE T H, et al. Secoiridoid glycosides from the twigs of Ligustrum obtusifolium possess anti-inflammatory and neuroprotective effects [J]. Chemical and Pharmaceutical Bulletin, 2018, 66(1): 78−83.
    [8] LEE S I, OH S H, PARK K Y, et al. Antihyperglycemic effects of fruits of privet (Ligustrum obtusifolium) in streptozotocin-induced diabetic rats fed a high fat diet [J]. Journal of Medicinal Food, 2009, 12(1): 109−117. doi: 10.1089/jmf.2007.0000
    [9] 何国鑫, 陈华国, 邓青芳, 等. 黄酮类化合物抗肝损伤的作用机制研究进展 [J]. 中国现代应用药学, 2019, 36(12):1583−1591.

    HE G X, CHEN H G, DENG Q F, et al. Research progress of hepatoprotective mechanism of flavonoids [J]. Chinese Journal of Modern Applied Pharmacy, 2019, 36(12): 1583−1591.(in Chinese)
    [10] 赵美莲, 于春艳, 史晓晶. 水蜡树果实总黄酮提取工艺优化及其抗氧化活性 [J]. 福建农业学报, 2018, 33(2):206−211.

    ZHAO M L, YU C Y, SHI X J. Process optimization and antioxidant activity of flavonoids extracted from fruits of Ligustrum obtusifolium [J]. Fujian Journal of Agricultural Sciences, 2018, 33(2): 206−211.(in Chinese)
    [11] 张素华, 王正云. 大孔树脂纯化芦笋黄酮工艺的研究 [J]. 食品科学, 2006, 27(2):182−186. doi: 10.3321/j.issn:1002-6630.2006.02.039

    ZHANG S H, WANG Z Y. Study on adsorption and separation by macroporous resin for asparagus flavonoids [J]. Food Science, 2006, 27(2): 182−186.(in Chinese) doi: 10.3321/j.issn:1002-6630.2006.02.039
    [12] 吴娜. 艾蒿黄酮的提取分离纯化、结构鉴定及其抗氧化性研究[D]. 武汉: 华中农业大学, 2008.

    WU N. Extraction, purification and antioxidation of flavonoids from Artemisia argyi[D]. Wuhan: Huazhong Agricultural University, 2008. (in Chinese)
    [13] 梅光明, 张小军, 郝强, 等. 酸提香菇多糖的抗氧化活性研究 [J]. 浙江海洋学院学报(自然科学版), 2014, 33(5):406−413.

    MEI G M, ZHANG X J, HAO Q, et al. Antioxidant activity of polysaccharide from Lentinus edodes extracted by acid solution [J]. Journal of Zhejiang Ocean University (Natural Science), 2014, 33(5): 406−413.(in Chinese)
    [14] 冯博, 钱晔, 吴奇, 等. ABTS法研究高压脉冲电场对普洱熟茶抗氧化活性的影响 [J]. 云南农业大学学报(自然科学), 2019, 34(5):815−819.

    FENG B, QIAN Y, WU Q, et al. Study on effects of high voltage pulsed electric field on the activity of antioxidant of Pu'er ripe tea by ABTS assays [J]. Journal of Yunnan Agricultural University (Natural Science), 2019, 34(5): 815−819.(in Chinese)
    [15] SANTOS C X C, NABEEBACCUS A A, SHAH A M, et al. Endoplasmic reticulum stress and nox-mediated reactive oxygen species signaling in the peripheral vasculature: potential role in hypertension [J]. Antioxidants and Redox Signaling, 2014, 20(1): 121−134.
    [16] GÜLÇIN İ, ELIAS R, GEPDIREMEN A, et al. Antioxidant activity of bisbenzylisoquinoline alkaloids from Stephania rotunda: cepharanthine and fangchinoline [J]. Journal of Enzyme Inhibition and Medicinal Chemistry, 2010, 25(1): 44−53. doi: 10.3109/14756360902932792
    [17] GÜLÇIN İ, ELMASTAŞ M, ABOUL-ENEIN H Y. Antioxidant activity of clove oil: a powerful antioxidant source [J]. Arabian Journal of Chemistry, 2012, 5(4): 489−499. doi: 10.1016/j.arabjc.2010.09.016
    [18] 任薇, 包晓玮, 张志芳, 等. 沙棘多糖清除自由基及抗脂质过氧化作用研究 [J]. 食品工业科技, 2019, 40(8):272−277.

    REN W, BAO X W, ZHANG Z F, et al. Study on free radical scavenging and anti-lipid peroxidation of seabuckthorn polysaccharide [J]. Science and Technology of Food Industry, 2019, 40(8): 272−277.(in Chinese)
    [19] GIL L, SIEMS W, MAZUREK B, et al. Age-associated analysis of oxidative stress parameters in human plasma and erythrocytes [J]. Free Radical Research, 2006, 40(5): 495−505. doi: 10.1080/10715760600592962
    [20] PARADIES G, PARADIES V, RUGGIERO F M, et al. Oxidative stress, cardiolipin and mitochondrial dysfunction in nonalcoholic fatty liver disease [J]. World Journal of Gastroenterology, 2014, 20(39): 14205−14218. doi: 10.3748/wjg.v20.i39.14205
    [21] 马爱国, 刘四朝. 不同剂量维生素C对DNA氧化损伤影响的研究 [J]. 营养学报, 2001, 23(1):12−15. doi: 10.3321/j.issn:0512-7955.2001.01.004

    MA A G, LIU S C. Effect of different levels of ascorbic acid on DNA damage [J]. Acta Nutrimenta Sinica, 2001, 23(1): 12−15.(in Chinese) doi: 10.3321/j.issn:0512-7955.2001.01.004
    [22] NORDBERG J, ARNÉR E S J. Reactive oxygen species, antioxidants, and the mammalian thioredoxin system [J]. Free Radical Biology and Medicine, 2001, 31(11): 1287−1312. doi: 10.1016/S0891-5849(01)00724-9
    [23] ESPOSITO L A, KOKOSZKA J E, WAYMIRE K G, et al. Mitochondrial oxidative stress in mice lacking the glutathione peroxidase-1 gene [J]. Free Radical Biology and Medicine, 2000, 28(5): 754−766. doi: 10.1016/S0891-5849(00)00161-1
    [24] PASSARDI F, THEILER G, ZAMOCKY M, et al. PeroxiBase: the peroxidase database [J]. Phytochemistry, 2007, 68(12): 1605−1611. doi: 10.1016/j.phytochem.2007.04.005
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  • 收稿日期:  2020-02-06
  • 修回日期:  2020-12-31
  • 刊出日期:  2020-12-31

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