Low-molecular-weight glucan, its preparation method and use
A low molecular weight, glucan technology, applied in food preparation, medical preparations containing active ingredients, applications, etc., can solve problems such as blank
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Embodiment 1
[0024] Example 1: Separation and purification of astragalus polysaccharides
[0025] (1) Astragalus polysaccharide (MAPS) was separated and extracted according to the patent [Yang Yifang, Xu Haiyan, Huang Chunyue. A method for refining astragalus polysaccharide. Chinese invention patent: 200610024178.5]. The yield was 8.37% and the purity was 85.74%.
[0026] (2) Take 50 g of the MAPS obtained in (1), dissolve in an appropriate amount of distilled water, centrifuge at 5000 rpm for 20 min, and dialyze the supernatant against water (molecular weight cut-off 3500), and concentrate the solution in the dialysis bag to obtain MAPS-1 (12.6 g).
[0027] (3) Take the MAPS-14.0g obtained in (2), divide it into 5 times, add 10ml of distilled water to dissolve, centrifuge, and use DEAE-Cellulose DE52 column (OH-type, 40×4.0cm, packing height 30cm) for the supernatant. Analyze for preliminary separation. First use distilled water as the eluent, and then use 0.01mol / L and 0.1mol / L NaCl solution t...
Embodiment 2
[0029] Example 2: Separation and Purification of Astragalus Polysaccharides
[0030] (1) Astragalus polysaccharide (MAPS) was separated and extracted according to the patent [Yang Yifang, Xu Haiyan, Huang Chunyue. A method for refining astragalus polysaccharide. Chinese invention patent: 200610024178.5]. The yield was 8.37% and the purity was 85.74%.
[0031] (2) Take 50 g of the MAPS obtained in (1), dissolve in an appropriate amount of distilled water, centrifuge at 5000 rpm for 20 min, and dialyze the supernatant against water (molecular weight cut-off 3500), and concentrate the solution in the dialysis bag to obtain MAPS-1 (12.6 g).
[0032] (3) Take the MAPS-14.0g obtained in (2), divide it into 5 times, add 10ml of distilled water to dissolve, centrifuge, and use DEAE-Cellulose DE52 column (OH-type, 40×4.0cm, packing height 30cm) for the supernatant. Analyze for preliminary separation. First use distilled water as the eluent, and then use 0.01mol / L and 0.1mol / L NaCl solution t...
Embodiment 3
[0034] Example 3: Separation and Purification of Astragalus Polysaccharides
[0035] (1) Astragalus polysaccharide (MAPS) was separated and extracted according to the patent [Yang Yifang, Xu Haiyan, Huang Chunyue. A method for refining astragalus polysaccharide. Chinese invention patent: 200610024178.5]. The yield was 8.37% and the purity was 85.74%.
[0036] (2) Take 50 g of the MAPS obtained in (1), dissolve in an appropriate amount of distilled water, centrifuge at 5000 rpm for 20 minutes, dialyze the supernatant against water (molecular weight cut-off 3500), and concentrate the solution in the dialysis bag to obtain MAPS-1 (12.6 g).
[0037] (3) Take the MAPS-14.0g obtained in (2), divide it into 5 times, add 10ml of distilled water to dissolve, centrifuge, the supernatant is separated by DEAE Sepharose F.F. column (40×4.0cm, filler 30cm high) chromatography. First, distilled water is used as the eluent, and then eluted with 0.01mol / L NaCl solution. The automatic partial collecto...
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