Polydopamine-polypyrrole nano composite material as well as preparation method and application thereof
A technology of polypyrrole nanometer and polydopamine, which is applied in the field of biomedical materials, can solve the problems of limited signal amplification series, long-term toxicity of nanoparticles, and difficulty in in vivo application, so as to improve the effect, avoid biodistribution and toxicity, and be good The effect of applying the foreground
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Embodiment 1
[0032] Prepare 25 mL of a 0.2% silica nanoparticle solution with a mass concentration of pH=1, add 200 mg of chondroitin sulfate, and stir for 24 hours at room temperature; add 189 mg of dopamine hydrochloride, 70 µL of pyrrole, and stir until dissolved; 0.456 g Ammonium persulfate was dissolved in 5 mL of water, and then the mixture was added dropwise to the silica nanoparticle solution in an ice water bath, kept at low temperature, and reacted overnight. Washed several times with water and ethanol, and dried in vacuum to obtain polypyrrole-polydopamine coated silica nanoparticles (see figure 1 ).
Embodiment 2
[0034] Prepare 25 mL of 0.2% silica nanoparticle solution with a mass concentration of pH=1, add 200 mg of sodium hyaluronate, and stir for 24 hours at room temperature; add 189 mg of dopamine hydrochloride, 70 µL of pyrrole, and stir until dissolved; 0.456 g of ammonium persulfate was dissolved in 5 mL of water, and then the mixture was added dropwise to the silica nanoparticle solution in an ice water bath, kept at low temperature, and reacted overnight. Washing with water and ethanol for several times, and vacuum drying to obtain polypyrrole-polydopamine coated silica nanoparticles.
Embodiment 3
[0036] Prepare 25 mL of 0.2% graphene oxide solution with a mass concentration of pH=1, add 200 mg of sodium hyaluronate, and stir for 24 hours at room temperature; add 189 mg of dopamine hydrochloride, 70 µL of pyrrole, and stir until dissolved; 0.456 g Ammonium persulfate was dissolved in 5ml of water and then the mixed solution was added dropwise to the silica nanoparticle solution in an ice water bath, kept at low temperature, and reacted overnight. Wash several times with water and ethanol, and dry in vacuum to obtain polypyrrole-polydopamine coated graphene oxide nanomaterials (see figure 2 ).
[0037] The following specific experiments were performed to detect the integrated diagnosis and treatment nanoparticles with a core-shell structure prepared in Example 1:
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