Novel method for extracting baicalin from scutellaria baicalensis
A technology of baicalin and a new method, applied in the field of natural product separation, can solve the problems of complex process and low extraction rate, and achieve the effects of simple process, improved extraction rate, and increased exercise frequency and speed.
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Embodiment 1
[0014] Grind Scutellaria baicalensis, pass through a 50-mesh sieve, add 0.02% cellulase of Scutellaria baicalensis mass to 100g crushed scutellaria baicalensis, adjust the pH value to 6.0 with hydrochloric acid, extract in an ultrasonic extractor at 40°C for 80min, and the wave power is 300W; ultrasonic extraction After filtering to obtain the extract, the filter residue was repeatedly extracted twice, combined with the filtrate, added to the AB-8 macroporous adsorption resin column for adsorption, first washed the resin column with water until it had no sugar color, and then added 5 times of 60% ethanol to the filtrate to elute the active ingredients. Collect the eluent, concentrate under reduced pressure to obtain a concentrated solution; place the concentrated solution to crystallize, filter out to obtain crude crystals, recrystallize twice with ethanol, filter the crystals, and dry them to obtain high-purity baicalin with an extraction rate of 10.3 %, detected by HPLC, the ...
Embodiment 2
[0016] Crush Scutellaria baicalensis, pass through a 50-mesh sieve, add 0.03% cellulase of Scutellaria baicalensis mass to 100g crushed scutellaria baicalensis, adjust the pH value to 5.5 with hydrochloric acid, extract in an ultrasonic extractor at 50°C for 70min, and use a wave power of 400W; ultrasonic extraction After filtering to obtain the extract, the filter residue was repeatedly extracted twice, the combined filtrate was added to the ADS-7 macroporous adsorption resin column for adsorption, the resin column was first washed with water until it had no sugar color, and then 70% ethanol was added to the filtrate to elute the active ingredients. Collect the eluent, concentrate under reduced pressure to obtain a concentrated solution; place the concentrated solution to crystallize, filter out, and obtain crude crystals, recrystallize twice with ethanol, filter the crystals, and dry them to obtain high-purity baicalin with an extraction rate of 12.1 %, detected by HPLC, the ...
Embodiment 3
[0018] Crush Scutellaria baicalensis, pass through a 50-mesh sieve, add 0.05% cellulase of Scutellaria baicalensis mass to 100g of crushed scutellaria baicalensis, adjust the pH value to 5.0 with hydrochloric acid, extract in an ultrasonic extractor at 45°C for 60min, and use a wave power of 350W; ultrasonic extraction After filtering to obtain the extract, the filter residue was repeatedly extracted twice, and the filtrate was combined and added to a D-101 macroporous adsorption resin column for adsorption. The resin column was first washed with water until it had no sugar color, and then 50% ethanol 6 times the amount of the filtrate was added to elute the active ingredients. Collect the eluate, concentrate under reduced pressure to obtain a concentrated solution; place the concentrated solution to crystallize, filter out to obtain crude crystals, recrystallize twice with ethanol, filter the crystals, and dry them to obtain high-purity baicalin with an extraction rate of 10.9%...
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Abstract
Description
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Application Information
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