Method for extracting high-content alpha-mangostin from mangosteen skin
A mangostin, high-content technology, applied in the direction of organic chemistry, can solve the problems of unsuitability for large-scale industrial production, large reagent consumption, long operation time, etc., achieve low cost, low reagent consumption, increase content and yield Effect
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Embodiment 1
[0026] (1) Extraction: 0.8mL of analytically pure hydrochloric acid is dissolved in 70% ethanol by volume percentage to obtain a volume percentage of 1‰ acid alcohol solvent, and the raw material of 100g mangosteen bark is taken, and the total content of its α-mangostin is analyzed by HPLC It was detected as 3.2%. After crushing, put it in the extraction tank, then add 400mL of the above-mentioned acid-alcohol solvent, place it in a 90°C water bath, and extract for 2 hours to obtain the first extract, and then add 400mL of the above-mentioned Acid-alcohol solvent, placed in a 90°C water bath, extracted for 1.5 hours to obtain the second extract, combined the two extracts and passed through a 200-mesh filter cloth to obtain 794 mL of the filtered extract;
[0027] (2) Chromatography: get the neutral alumina chromatography column, the weight of alumina in the chromatography column is 200g, then the extract after step (1) gained after filtering, cross above-mentioned neutral alumi...
Embodiment 2
[0043] (1) Extraction: 0.5mL analytically pure formic acid is dissolved in 80% ethanol by volume percentage to obtain a volume percentage of 0.5‰ acid alcohol solvent, get 100g mangosteen bark raw material, and the total content of its α-mangostin is determined by HPLC It was detected as 3.3%. After crushing, put it in an extraction bottle, add 500mL of the above-mentioned acid-alcohol solvent, place it in a water bath at 95°C, and extract for 1.5h to obtain the first extract, and then add 500mL of Put the above acid-alcohol solvent in a water bath at 85°C and extract for 1.5 hours to obtain the second extract, combine the two extracts and pass through a 100-mesh filter cloth to obtain 994 mL of the filtered extract;
[0044](2) Chromatography: get the neutral alumina chromatography column, the weight of alumina in the chromatography column is 150g, then the extract after step (1) gained after filtering, cross above-mentioned neutral alumina chromatography column Finally, carr...
Embodiment 3
[0048] (1) Extraction: 0.8mL of analytically pure sulfuric acid is dissolved in 75% ethanol by volume percentage to obtain a volume percentage of 0.8‰ acid alcohol solvent, and the raw material of 100g mangosteen bark is taken, and the total content of its α-mangostin is determined by HPLC It was detected as 3.15%. After crushing, put it in the extraction tank, then add 450mL of the above-mentioned acid-alcohol solvent, place it in a water bath at 85°C, and extract for 2 hours to obtain the first extract, then add 450mL of the above-mentioned Acid-alcohol solvent, placed in a 95°C water bath, extracted for 1.5h, to obtain the second extract, then 450mL of the above-mentioned acid-alcohol solvent was added to the extraction tank, placed in a 90°C water bath, extracted for 1.5h, to obtain the third The extract of the third time was combined for three times and passed through a 150-mesh filter cloth to obtain 1334 mL of the filtered extract;
[0049] (2) Chromatography: get the n...
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