Derivatizing reagent of polyhydroxy compound
A polyol compound and derivatization reagent technology, applied in the field of sugar acetylation derivatization reagents, can solve problems such as inappropriate reaction solvents, high temperature requirements, and affecting the qualitative and quantitative analysis of monosaccharides, and achieve the effect of avoiding improper solvent selection
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Embodiment 1
[0107] Example 1. Determination of the hydroxyl derivatization method used for qualitative or quantitative analysis of carbohydrates in the present invention
[0108] 1. Screening of monosaccharide derivatization methods
[0109] In view of various problems existing in the qualitative or quantitative analysis of sugars (such as ketose, aldose, alcohol sugar, etc.) described in the background art, the inventors of the present invention determined the acetylation derivatization method to solve the existing problems. Carry out derivatization experiments with the following 24 monosaccharides and their derivatives, analyze their effects, and screen derivatization technical solutions. The specific method is as follows:
[0110] 1. Experimental instruments and materials
[0111] Vacuum concentrator, vacuum freeze dryer, Finnigan gas chromatography mass spectrometer, micro syringe, etc. The 24 monosaccharide standard samples were all purchased from Sigma (USA), namely: deoxyribose ...
Embodiment 2
[0151] Example 2. The method of the present invention derivatizes and quantitatively detects soluble sugars in fresh Populus tomentosa leaves
[0152] Utilize the derivatization method of embodiment 1 (DMSO, acetic anhydride and 1-methylimidazole are mixed with 25:3:1) to the detection of soluble monosaccharides and derivatives thereof in the fresh leaves of Populus tomentosa, the specific methods are as follows:
[0153] 1. Experimental instruments and materials
[0154] The 24 sugar standard samples were purchased from Sigma (USA), namely: deoxyribose (purity>99.0%), rhamnose (purity>98.0%), fucose (purity>99.0%), xylose (purity >99.0%), arabinose (purity >99.0%), galactose (purity >99.0%), glucose (purity >99.0%), erythritol (purity >99.0%), deoxyribitol (purity >99.0%) ), rhamnitol (purity>99.0%), fucose (purity>99.0%), xylitol (purity>99.0%), arabitol (purity>99.0%), galactitol (purity> 99.0%), Glucitol (purity>99.0%), Mannitol (purity>99.0%), Ribitol (purity>99.0%), In...
Embodiment 3
[0172] Embodiment 3, fresh poplar tomentosa leaf cell wall sugar component analysis
[0173] Utilize the derivatization method of embodiment 1 screening (DMSO, acetic anhydride and 1-methylimidazole are mixed with 25:3:1) fresh Populus tomentosa leaf cell wall sugar component analysis, concrete method is as follows:
[0174] 1. Experimental materials
[0175] The reagents used are dimethyl sulfoxide (DMSO), acetic anhydride, 1-methylimidazole, ethyl acetate and the like. Monosaccharide and sugar alcohol standard samples are erythritol, deoxyribose, fucose, rhamnose, xylose, arabinose, galactose, glucose, fructose, sorbose, ribitol, xylitol, inositol, Mannitol, Sorbitol, Glucuronic Acid, Galacturonic Acid, N-Acetyl Glucosamine, Trehalose, Sucrose. The above reagents and standard monosaccharides were all analytically pure. Dimethyl sulfoxide was dehydrated with potassium hydroxide before use.
[0176] Plant materials were taken from the fresh leaves of Populus tomentosa grow...
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