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Alcohols Extraction Process and Content of Active Ingredients in Chinese Northeastern Auricularia auricula

机译:中国东北木耳醇的提取工艺及有效成分含量的研究

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摘要

[Objectives] The aim was to study the type and content of alcohol-soluble active ingredients in Auricularia auricula. [Methods]With total yield of alcohol extract as an indicator,the optimal concentrations of ethanol,isopropanol and n-butanol for alcohol extraction of A. auricula powder were determined. The contents of total flavonoids,polyphenols and triterpenoids in three different alcohol extracts of A. auricula,as well as in the alcohol extracts of polysaccharides and melanin extraction residue of A. auricula were determined. [Results] When90% ethanol was used,the yield of alcohol extract of A. auricula was 10. 7%. In the alcohol extract,the contents of total flavonoids,polyphenols and triterpenoids were 5. 68 mg/100 g,0. 43% and 0. 55%,respectively. When 100% isopropanol was used,the yield of alcohol extract was 10. 1%. In the alcohol extract,the contents of total flavonoids,polyphenols and triterpenoids were 4. 84 mg/100 g,0. 66% and 0. 37%,respectively. When 70% n-butanol was used,the yield of alcohol extract was 5. 4%. In the alcohol extract,the contents of total flavonoids,polyphenols and triterpenoids were 4. 07 mg/100 g,1. 68% and 0. 30%,respectively. The yields of ethanol,isopropanol and n-butanol extracts of polysaccharide and melanin extraction residue of A. auricula were 13. 8%,14. 3% and 8. 9%,respectively. In the three kinds of alcohol extracts,the contents of total flavonoids were 8. 28,11. 99,and 12. 38 mg/100 g,respectively; the contents of polyphenols were 0.14%,0. 38% and 0. 75%,respectively; and the contents of triterpenoids were 0. 25%,0. 60% and 0. 58%,respectively. [Conclusions]This study will provide certain reference for the in-depth study and development and utilization of active ingredients in A. auricula.

著录项

  • 来源
    《药用植物:英文版》 |2018年第004期|P.41-45|共5页
  • 作者单位

    [1]Institute of Microbiology, Heilongjiang Academy of Sciences, Harbin 150010, China;

    [2]Institute of Advanced Technology, Heilongjiang Academy of Sciences, Harbin 150001, China;

    [3]Heilongjiang Engineering Technology Research Center of Black Fungus Resource Utilization, Harbin 150000, China;

    [3]Heilongjiang Engineering Technology Research Center of Black Fungus Resource Utilization, Harbin 150000, China;

    [4]Heilongjiang Johnsun Biological Engineering Co., Ltd., Harbin 150076, China;

    [5]Heilongjiang Engineering Technology Research Center of Mycomedicine, Harbin 150000, China;

    [3]Heilongjiang Engineering Technology Research Center of Black Fungus Resource Utilization, Harbin 150000, China;

    [4]Heilongjiang Johnsun Biological Engineering Co., Ltd., Harbin 150076, China;

    [5]Heilongjiang Engineering Technology Research Center of Mycomedicine, Harbin 150000, China;

    [3]Heilongjiang Engineering Technology Research Center of Black Fungus Resource Utilization, Harbin 150000, China;

    [4]Heilongjiang Johnsun Biological Engineering Co., Ltd., Harbin 150076, China;

    [5]Heilongjiang Engineering Technology Research Center of Mycomedicine, Harbin 150000, China;

    [3]Heilongjiang Engineering Technology Research Center of Black Fungus Resource Utilization, Harbin 150000, China;

    [4]Heilongjiang Johnsun Biological Engineering Co., Ltd., Harbin 150076, China;

    [5]Heilongjiang Engineering Technology Research Center of Mycomedicine, Harbin 150000, China;

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  • 正文语种 CHI
  • 中图分类 s4;
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  • 入库时间 2022-08-19 04:11:19
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