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玛咖总生物碱检测方法的建立及提取优化

王婧, 邓辰辰, 徐振秋, 毕宇安, 王振中

王婧, 邓辰辰, 徐振秋, 毕宇安, 王振中. 玛咖总生物碱检测方法的建立及提取优化[J]. 食品工业科技, 2016, (02): 73-77. DOI: 10.13386/j.issn1002-0306.2016.02.006
引用本文: 王婧, 邓辰辰, 徐振秋, 毕宇安, 王振中. 玛咖总生物碱检测方法的建立及提取优化[J]. 食品工业科技, 2016, (02): 73-77. DOI: 10.13386/j.issn1002-0306.2016.02.006
WANG Jing, DENG Chen-chen, XU Zhen-qiu, BI Yu-an, WANG Zhen-zhong. Establishment of content determination and optimization extraction condition of total alkaloids in Maca[J]. Science and Technology of Food Industry, 2016, (02): 73-77. DOI: 10.13386/j.issn1002-0306.2016.02.006
Citation: WANG Jing, DENG Chen-chen, XU Zhen-qiu, BI Yu-an, WANG Zhen-zhong. Establishment of content determination and optimization extraction condition of total alkaloids in Maca[J]. Science and Technology of Food Industry, 2016, (02): 73-77. DOI: 10.13386/j.issn1002-0306.2016.02.006

玛咖总生物碱检测方法的建立及提取优化

详细信息
    作者简介:

    王婧(1984-),女,硕士,中级工程师,研究方向:功能性保健食品研究与开发,E-mail:annaliliwin@163.com。;

  • 中图分类号: O657.3;R284.1

Establishment of content determination and optimization extraction condition of total alkaloids in Maca

  • 摘要: 建立玛咖总生物碱含量的测定方法,对不同产地的玛咖总生物碱含量进行比较研究。以氧化苦参碱作为对照品,筛选酸性染料比色法条件,并利用响应面分析法优化样品处理方法,建立测定方法。结果酸性染料比色法的条件为缓冲液(p H=3.5)加入量3 m L,溴甲酚绿加入量3 m L,测定波长为412 nm;最佳样品处理条件为液料比23∶1(m L/g)、提取温度82℃、提取时间2.1 h。此条件下,云南黄色玛咖的总生物碱含量为1.3 mg/g,在五种玛咖中,西藏黑玛咖的总生物碱含量最高为8.4 mg/g。此法操作简便、精密度高、稳定性好、具良好的可重复性,可用于玛咖中总生物碱的含量测定。 
    Abstract: To establish a method for the assay of the total alkaloids in Maca,and investigate the contents from different origins. With the oxymatrine as reference,the method was established by purified acid dye colorimetry and optmized the extraction condition by response surface method. Acid dye colorimetric conditions was as follows : adding p H3. 5 buffer 3 m L and bromocresol green colour reagent 3 m L, then detemining at the wavelength 412 nm. The optimal extraction conditions was found to be ratio of liquid to solid 23 ∶1(m L/g),temperature 82 ℃,time 2.1 h. The extraction efficiency of total alkaloids from Yunnan yellow Maca under these conditions was 1.3 mg/g compared to 8.4 mg/g from Tibet black Maca,highest among the five species investigated. This method was simple,highly sensitive,accurate and reproducible,which could be used for determination of the total alkaloids in Maca.
  • [1] 孙晓东,唐辉,杜萍,等.丽江玛咖的营养成分分析及多糖体外的抗氧化作用[J].光谱实验室,2013,30(5):2365-271.
    [2] 冯颖,何钊,徐珑峰,等.云南栽培玛咖的营养成分分析与评价[J].林业科学研究,2009,22(5):696-700.
    [3] 甘瑾,冯颖,何钊,等.云南栽培3种颜色玛咖中总生物碱含量分析[J].食品科学,2010,31(24):415-419.
    [4] 金文闻,余龙江.药食两用植物玛咖(Lepidium meyenii)的功效物质研究[D].武汉:华中科技大学,2006.
    [5]

    Muhammad I,Zhao J P,Dunbar D C,et al.Constituents of Lepidium meyenii-Maca[J].Phytochemistry,2002,59(1):105-110.

    [6]

    Piacente S,Carbone V,Plaza A,et al.Investigation of the tuber constituents of Maca(Lepidium meyenii Walp.)[J].Agric Food Chem,2002,50(20):5621-5625.

    [7]

    Cui B,Zheng BL,He K,et al.Imidazole alkaloids from Lepidium meyenii[J].J Nat Prod,2003,66(8):1101-1103.

    [8]

    Denominacin Botanica dela.Maca:Lepidium meyenii Walpers[R].Dra.Magdalena Pavlich Herrera Universidad Peruana Cayetano Heredia,Lima-Per,2002

    [9] 尹子娟,杨成金,尹品耀,等.玛咖的营养成分及功效研究进展[J].云南农业科技,2012(5):61-64.
    [10] 杜广香.玛咖生物碱的分离纯化及抗氧化活性研究[D].广州:华南理工大学,2011.
    [11]

    Zheng B L,He K,Kim C H,et al.Effect of a lipidic extract from Lepidium meyenii on sexual behavior in mice and rats[J].Urology,2000,55(4):598-602.

    [12] 徐东升,高言明,杨春,等.贵州钩藤总生物碱含量测定研究[J].微量元素与健康研究,2015,32(2):34-35.
    [13] 王锐,张泽俊,陈光全,等.紫外分光光度法测定狼牙刺花中生物碱含量[J].广东化工,2015,42(6):166-167.
    [14] 张伟,何尚映.颠茄合剂中生物碱的含量测定[J].海峡医药,2014,26(12):91-94.
    [15] 刘喜纲,刘翠哲,常金花.应用酸性染料比色法测定总生物碱的含量[J].中国药房,2007,18(11):875-876.
    [16] 胡志国.卵叶娃儿藤生物碱的提取及其活性功能研究[D].南昌:南昌大学,2007
    [17] 曾常青,罗北亮.酸性染料比色法测定钩藤的总生物碱含量[J].中药材,2007,30(8):1021-1024.
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  • 收稿日期:  2015-05-28

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