Modified beta-cyclodextrin/chitosan compound, and preparation method and application thereof
A cyclodextrin and chitosan technology, which is applied in the field of modified β-cyclodextrin/chitosan complex and its preparation, can solve the problems of poor water solubility and insignificant long-term sustained release effect, and achieves easy access to raw materials. , good slow release effect, low synthesis cost effect
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Embodiment 1
[0041] (1) Preparation of intermediate product: reaction of β-cyclodextrin and acrylic acid. Heat to dissolve β-cyclodextrin in distilled water, add a small amount of polyethylene glycol (PEG-400) modification and a small amount of catalyst NaH 2 PO 4 , then add a cross-linking agent (acrylic acid), reflux at 50°C for 1 h, and precipitate and wash with acetone to obtain an intermediate product; the molar ratio of the β-cyclodextrin to the cross-linking agent is 2:1.
[0042] (2) Preparation of the complex: Dissolve chitosan in 2% acetic acid solution, add the intermediate product obtained in step (1), add a small amount of catalyst, reflux at 50°C for 3h, collect the product, and obtain the modified β-ring Dextrin / chitosan compound; the molar ratio of the chitosan monomer in the chitosan to the intermediate product is 2:1.
[0043] (3) Dissolve tacrolimus in ethanol, add to the modified β-cyclodextrin / chitosan complex obtained in step (2) and stir overnight, the final concen...
Embodiment 2
[0046] (1) Preparation of intermediate product: reaction of β-cyclodextrin and acrylic acid. Heat to dissolve β-cyclodextrin in distilled water, add a small amount of polyethylene glycol (PEG-400) modification and a small amount of catalyst NaH 2 PO 4 , then add a cross-linking agent (acrylic acid), reflux at 90°C for 5h, and precipitate and wash with acetone to obtain an intermediate product; the molar ratio of the β-cyclodextrin to the cross-linking agent is 4:1.
[0047] (2) Preparation of the complex: dissolving chitosan in 2% acetic acid solution, adding the intermediate product obtained in step (1), adding a small amount of catalyst, and reacting at reflux at 90°C for 6h, collecting the product to obtain the modified β-ring Dextrin / chitosan compound; the molar ratio of the chitosan monomer in the chitosan to the intermediate product is 4:1.
[0048] (3) Dissolve tacrolimus in ethanol, add to the modified β-cyclodextrin / chitosan complex obtained in step (2) and stir ove...
Embodiment 3
[0050] (1) Preparation of intermediate product: reaction of β-cyclodextrin and acrylic acid. Heat to dissolve β-cyclodextrin in distilled water, add a small amount of polyethylene glycol mixture (PEG-1000 and PEG-400 mixed at a molar ratio of 1:1) to modify and a small amount of catalyst NaH 2 PO 4, and then add a cross-linking agent (acrylic acid), reflux reaction at 70°C for 3h, and precipitate and wash with acetone to obtain an intermediate product; the molar ratio of the β-cyclodextrin to the cross-linking agent is 2.5:1.
[0051] (2) Preparation of the complex: Dissolve chitosan in 2% acetic acid solution, add the intermediate product obtained in step (1), add a small amount of catalyst, reflux at 70°C for 5 hours, collect the product, and obtain the modified β-ring Dextrin / chitosan compound; the molar ratio of the chitosan monomer in the chitosan to the intermediate product is 3:1.
[0052] (3) Dissolve tacrolimus in ethanol, add to the modified β-cyclodextrin / chitosan...
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