Bio-macromolecular hydrogel and preparation method thereof
A technology of biological macromolecules and hydrogels, which is applied in the direction of non-active components of polymer compounds, medical science, prostheses, etc., can solve the problems of reduced biocompatibility, poor mechanical strength, cytotoxicity, etc., and achieve good mechanical properties , simple preparation method, good biocompatibility effect
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[0031] The preparation method of the biomacromolecule hydrogel of the present invention: dissolve the polysaccharide macromolecule in deionized water to obtain a polysaccharide macromolecule aqueous solution, dissolve proteins or polypeptides in the polysaccharide macromolecule aqueous solution, or add additives to obtain a macromolecular mixed solution . Add an enzyme catalyst, mix evenly, and catalyze the cross-linking reaction at 0°C-50°C for 0.5-24 hours to cross-link the protein or polypeptide to obtain a semi-interpenetrating network hydrogel. The semi-interpenetrating network hydrogel is further cross-linked by divalent ions to obtain a high-strength biomacromolecular hydrogel with an interpenetrating network structure. The protein is one or more of collagen, gelatin, silk fibroin, zein, elastin, and fibronectin; the polypeptide or molecule containing amino acid residues is a small molecule peptide containing lysine and glutamine or One or more of oligomers; polysaccha...
Embodiment 1
[0034] Weigh 0.6g of sodium alginate and dissolve it in 20ml of deionized water to obtain a sodium alginate aqueous solution with a mass concentration of 3%. Weigh 3g of gelatin and add it to the above sodium alginate aqueous solution, heat and dissolve in a water bath at 50°C, and let it stand for defoaming. A homogeneously mixed gelatin and sodium alginate macromolecular aqueous solution is obtained.
[0035] Add 0.5ml of transglutaminase solution with a concentration of 100 U / ml, mix quickly and evenly, place in a flat plate or a columnar mold, and react and crosslink at 40°C for 1 hour to obtain a protein semiinteractive protein crosslinked by gelatin through a peptide bond. Penetrating network hydrogel, which contains alginate macromolecules.
[0036] The obtained semi-IPN hydrogel was taken out from the mold and immersed in a calcium chloride solution with a molar concentration of 5 mol / L for 1 hour to obtain a film-like or block-like interpenetrating network biomacromol...
Embodiment 2
[0039] Weigh 0.1g of guar gum and dissolve it in 10ml of deionized water to obtain an aqueous solution of guar gum with a mass concentration of 1%. Weigh 1g of gelatin and add it to the above aqueous solution of sodium alginate, heat and dissolve in a water bath at 50°C, and let it stand for defoaming. Obtain evenly mixed guar gum and gelatin macromolecular aqueous solution.
[0040] Add 0.5ml of microbial transglutaminase solution with a concentration of 50U / ml, mix quickly and uniformly, place in a tubular or columnar mold, and react and crosslink at 40°C for 1 hour.
[0041] The obtained semi-IPN hydrogel was taken out from the mold, soaked in a CaHPO4 solution with a molar concentration of 10 mol / L for 1 hour, and a tubular or block-shaped interpenetrating network biomacromolecule hydrogel was obtained. The obtained hydrogel is repeatedly washed with water to remove residual calcium ions, and then stored in a deionized aqueous solution. Further freeze-dried at -80°C to ob...
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