Anticoagulant hydrogel coating capable of catalyzing release of nitric oxide and preparation method of anticoagulant hydrogel coating capable of catalyzing release of nitric oxide
A technology of nitric oxide and blood water, applied in the field of medical materials, can solve the problems of inability to meet the anti-coagulation function, uncontrollable release of nitric oxide, etc., and achieve the effects of excellent stability, good anti-oxidation and dense structure
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Embodiment 1
[0029] A method for preparing an anticoagulant hydrogel coating that can catalyze the release of nitric oxide, comprising the following steps:
[0030] (1) Ultrasonic cleaning and drying of the stainless steel base material;
[0031] (2) Place the cleaned stainless steel in 0.1mM chitosan solution with a pH value of 6, react at room temperature for 2min, then take it out and wash it with deionized water for 3 times;
[0032] (3) The product obtained in step (2) was placed in a mixed solution with a pH value of 11, containing 1 mM tannic acid and 0.01 mM ebselenium, reacted at room temperature for 5 min, then took it out and washed it with deionized water for 3 times;
[0033] (4) Put the product obtained in step (3) in a 0.1 mM hyaluronic acid solution with a pH value of 11, react at room temperature for 1 min, then take it out and wash it with deionized water for 3 times;
[0034] (5) At room temperature, using the product obtained in step (4) as a substrate, repeat the oper...
Embodiment 2
[0036] A method for preparing an anticoagulant hydrogel coating that can catalyze the release of nitric oxide, comprising the following steps:
[0037] (1) cleaning and drying the titanium alloy base material;
[0038] (2) Place the cleaned titanium alloy in 0.01mM poly-L-arginine hydrochloride solution with a pH value of 7.4, react at room temperature for 2min, then take it out and wash it with deionized water for 3 times;
[0039] (3) Place the product obtained in step (2) at a pH of 7.2 in a mixed solution containing 0.1mM epigallocatechin gallate and 0.01mM cystamine, react at room temperature for 5min, then take it out and rinse with deionized water Wash 3 times;
[0040] (4) Put the product obtained in step (3) in a 0.1 mM polyglutamic acid solution with a pH value of 6.8, react at room temperature for 3 minutes, then take it out and wash it 3 times with deionized water;
[0041] (5) At room temperature, using the product obtained in step (4) as a substrate, repeat the...
Embodiment 3
[0043] A method for preparing an anticoagulant hydrogel coating that can catalyze the release of nitric oxide, comprising the following steps:
[0044] (1) cleaning and drying the polytetrafluoroethylene material;
[0045] (2) Place the cleaned polytetrafluoroethylene in 2mM poly-L-lysine hydrobromide solution with a pH value of 7.4, react at room temperature for 2min, then take it out and wash it with deionized water for 3 times;
[0046] (3) Place the product obtained in step (2) at a pH of 6.5 in a mixed solution containing 0.5mM epigallocatechin and 0.001mM selenocystine, react at room temperature for 2min, then take it out and rinse with deionized water Wash 3 times;
[0047] (4) Put the product obtained in step (3) in a 0.05 mM dextran solution with a pH value of 6.9, react at room temperature for 3 minutes, then take it out and wash it with deionized water for 3 times;
[0048] (5) At room temperature, using the product obtained in step (4) as a substrate, repeat the op...
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