Method for extraction of total flavonoid aglycones from hickory leaves

A technology of total flavonoid aglycone and pecan leaves, applied in separation methods, chemical instruments and methods, pharmaceutical formulations, etc., can solve the problems of insoluble, large volume, etc., achieve low cost, simple process, and high sample recovery rate Effect

Active Publication Date: 2013-06-12
ZHEJIANG CHINESE MEDICAL UNIVERSITY
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Problems solved by technology

[0006] However, if this method is used to separate and enrich flavonoid aglycones, there are many problems
We found that it is difficult to use the traditional polyamide separation and enrichment process. The reasons are: first, the flavonoid aglycone to be separated is relatively fat-soluble, and cannot be dissolved by distilled water; second, although it can be diluted with an appropriate amount Ethanol is dissolved, and then diluted with a large amount of distilled water to dissolve, but its volume will be

Method used

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  • Method for extraction of total flavonoid aglycones from hickory leaves
  • Method for extraction of total flavonoid aglycones from hickory leaves
  • Method for extraction of total flavonoid aglycones from hickory leaves

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Embodiment 1

[0029] (a) Pretreatment of polyamide:

[0030] 1) Put 80-100 mesh polyamide for column chromatography (Luqiao Sijia Biochemical Plastic Factory, Taizhou City, Zhejiang Province) on the column, wash with ethanol with a volume concentration of 95% until the effluent is evaporated to dryness and there is no white solid;

[0031] 2) Wash with distilled water until the pH value is neutral, and then rinse with 5 wt% NaOH aqueous solution of 5 times the column volume;

[0032] 3) Wash with distilled water until the pH value is neutral, and then rinse with 10wt% acetic acid of 5 times the column volume;

[0033] 4) Wash with distilled water until the pH value is neutral, take out the polyamide and dry it at 60°C to obtain the pretreated polyamide for use.

[0034] (b) Preparation of total flavonoid aglycone extract from pecan leaves:

[0035] Weigh 1Kg of pecan leaf dry powder; add 25L of ethanol with a volume concentration of 95% to heat and reflux for extraction, extract twice, ea...

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Abstract

The invention discloses a method for extraction of total flavonoid aglycones from hickory leaves. The method comprises: subjecting hickory leaf dry powder to heating reflux extraction by an ethanol aqueous solution with a volume concentration of 50-95%, conducting filtering to obtain a total flavonoid aglycone extract solution; conducting a pretreatment on polyamide; adding the pretreated polyamide into the total flavonoid aglycone extract solution, adding water and performing vacuum distillation to obtain a concentrated mixed solution, directly applying the mixed solution on a column, and letting the solid polyamide settle naturally to a smooth and bubble-free state; releasing the liquid from the column, then first employing an ethanol aqueous solution with a volume concentration of 20-30% to wash away impurities, then using an ethanol aqueous solution with a volume concentration of 40-50% as an eluent to perform elution, collecting the eluent, and evaporating the eluent, thus obtaining the total flavone glycosides. The total flavone glycosides obtained by the method provided in the invention has the advantages of: high purity and high recovery rate. In addition to simple process and convenient operation, the method also has a low cost, and is suitable for industrialized production.

Description

technical field [0001] The invention relates to a method for separating and purifying active ingredients of traditional Chinese medicine by using polyamide, more specifically, a new method for separating and enriching total flavonoid aglycone in pecan leaves with polyamide, and belongs to the technical field of separation and purification of traditional Chinese medicine chemistry. Background technique [0002] Flavonoids are naturally occurring organic compounds. In nature, flavonoids are widely found in various plant organs (such as seeds, flowers, fruits, and leaves) and other Chinese medicinal materials, such as Huixincao, sweet tea, nasturtium, motherwort, ginkgo biloba, hawthorn, Sugarcane, chestnut flowers, propolis, etc. are rich in flavonoids. A class of compounds formed by connecting two benzene rings (A ring and B ring) through a three-carbon chain are collectively called flavonoids. Substituted by group, isopentenyl, etc. According to the connection position of...

Claims

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Application Information

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IPC IPC(8): A61K36/52B01D15/20A61P29/00A61P37/08A61P9/08A61P9/06A61P1/16A61P9/10A61P31/12A61P3/06A61P3/10A61P35/00A61K127/00
Inventor 丁志山蒋福升张坤丁滨金波高承贤
Owner ZHEJIANG CHINESE MEDICAL UNIVERSITY
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