Flexible sensing bacteriostatic dressing capable of monitoring wound surface healing and preparation method thereof
A wound healing and sensing technology, applied in adhesive dressings, non-adhesive dressings, dressings, etc., can solve the problems of occupation of medical resources, persistent wound healing, and difficult wound healing, and achieve pain relief, physical bacteriostatic effect and drug resistance. Sex, the effect of accelerating wound healing
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Embodiment 1
[0030] The preparation of the flexible sensing bacteriostatic dressing capable of monitoring wound healing comprises the following steps:
[0031] (1) Add 25 mg of silver nanowires (AgNWs) and 500 mg of single-layer graphene oxide (GO) into 70 g of absolute ethanol, and disperse ultrasonically at a constant temperature of 25 °C for 30 min to prepare a dispersion based on a synergistically dispersed network structure;
[0032] (2) Completely immerse the polyurethane (PU) sponge matrix in the dispersion prepared in step (1) for 1 min, then dry at room temperature for 5 h;
[0033] Repeat the operation of step (2) 15 times to obtain a dressing loaded with nanomaterials;
[0034] (3) Place the dressing loaded with nanomaterials in a 2 mg / mL dopamine solution with a pH of 9, and stir in water at 60°C for 24 hours for reduction reaction. The nano-filler and excess polydopamine obtained the flexible sensing bacteriostatic dressing that can monitor wound healing.
[0035] The pressu...
Embodiment 2
[0037] The preparation of the flexible sensing bacteriostatic dressing capable of monitoring wound healing comprises the following steps:
[0038] (1) 500 mg of silver nanoparticles (AgNPs) and 25 mg of amino-functionalized graphene oxide (GO) were added to 70 g of deionized water (DI), and ultrasonically dispersed at a constant temperature of 25 ° C for 30 min to prepare a dispersion based on a synergistic dispersion network structure;
[0039] (2) Completely immerse the silicone rubber (PDMS) sponge matrix in the dispersion prepared in step (1) for 2 minutes, then dry at room temperature for 4 hours;
[0040] Repeat the operation of step (2) 10 times to obtain a dressing loaded with nanomaterials;
[0041] (3) Place the dressing loaded with nanomaterials in a 1 mg / mL dopamine solution with a pH of 8.5, and stir in water at 70°C for 20 hours for reduction reaction. The nano-filler and excess polydopamine obtained the flexible sensing bacteriostatic dressing that can monitor ...
Embodiment 3
[0044] The preparation of the flexible sensing bacteriostatic dressing capable of monitoring wound healing comprises the following steps:
[0045] (1) Add 20 mg of zinc oxide rice noodles (ZNONWs) and 150 mg of single-layer graphene oxide (GO) into 40 g of absolute ethanol, and disperse ultrasonically at a constant temperature of 25 ° C for 30 min to prepare a dispersion based on a synergistic dispersed network structure;
[0046] (2) Completely immerse the polyvinyl alcohol (PVA) sponge matrix in the dispersion liquid prepared in step (1) for 3 minutes, then dry at room temperature for 3 hours;
[0047] Repeat the operation of step (2) 20 times to obtain a dressing loaded with nanomaterials;
[0048] (3) Place the dressing loaded with nanomaterials in a 1.5 mg / mL dopamine solution with a pH of 8, and stir in water at 90°C for 18 hours for reduction reaction. The loaded nano filler and excess polydopamine obtain the flexible sensing bacteriostatic dressing that can monitor wo...
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