Method for fast preparing anti-infection dressing
An anti-infection and functional technology, applied in medical science, bandages, absorbent pads, etc., can solve the problems of medical dressing infection, coating easy to fall off, biocompatibility, etc., and achieve good biocompatibility
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Embodiment 1
[0027] Measure 1000ml of Tris-HCl buffer solution with a pH value of 7.5, weigh 5000mg of dopamine and dissolve it in the buffer solution. Then, 10 mg of polyhexamethylene biguanide hydrochloride was weighed and added into the solution to fully dissolve it, and the pH value was adjusted to 7.5 with NaOH solution to form a functional coating liquid. Soak the polyethylene non-woven fabric in the functional coating solution. After fully soaking, take out the polyethylene non-woven fabric and place it in a natural environment with a temperature of 25°C to dry. After fully drying, place the polyethylene non-woven fabric on the The dressings were ultrasonically washed three times in deionized water and ethanol liquid respectively, and after drying, the corresponding anti-sensitivity functional dressings were obtained.
[0028] figure 1 It is the physical picture of the anti-infection functional dressing prepared in Example 1. The anti-sensitivity functional dressing that embodimen...
Embodiment 2
[0030] Measure 1000 ml of Tris-HCl buffer solution with a pH value of 9.5, weigh 50 mg of dopamine and dissolve in the buffer solution. Then weigh 10 mg of polyhexamethylene biguanide hydrochloride and 5 mg of silver nitrate and add them into the solution to make them fully dissolved, and adjust the pH value to 9.5 with NaOH solution to form a functional coating liquid. Soak the ethylene terephthalate non-woven fabric in the functional coating solution. After fully soaking, take out the ethylene terephthalate non-woven fabric and place it in a natural environment at a temperature of 25°C to dry. After drying, the ethylene terephthalate non-woven fabric was placed in deionized water and ethanol liquid and ultrasonically washed three times respectively, and after drying, a corresponding anti-infection functional dressing was obtained.
[0031] The anti-sensitivity functional dressing that embodiment 2 makes is 1 * 10 to concentration. 5 The antibacterial rates of Escherichia co...
Embodiment 3
[0033] Measure 1000ml of phosphate buffer solution with a pH value of 8.5, weigh 1000mg of dopamine and dissolve in the buffer solution. Then weigh 50000 mg of quaternary ammonium antibacterial agent (methacryloyloxydodecylpyridinium bromide) and add it into the solution to make it fully dissolved, and adjust the pH value to 8.5 with NaOH solution to form a functional coating liquid. Soak the cellulose fabric in the functional coating solution. After fully soaking, take out the cellulose fabric and place it in a natural environment with a temperature of 25°C to dry. After fully drying, place the cellulose fabric in deionized water and ethanol liquid Each was ultrasonically washed 3 times, and after drying, the corresponding anti-sensitivity functional dressings were obtained.
[0034] The anti-sensitivity functional dressing that embodiment 3 makes is 1 * 10 to concentration. 5 The antibacterial rates of Escherichia coli, Staphylococcus aureus and Candida albicans in CFU / ml w...
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