Microcapsule with fluorescent tracing and reduction responsive drug release functions and its preparation method
A technology of functional microcapsules and fluorescent tracers, applied in the field of biomedical materials, can solve the problems of fluorescent agent application limitations, fluorescence failure, long excitation time, etc., to ensure fluorescent tracer performance, a wide range of material sources, and rapid preparation methods easy effect
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[0028] The preparation method of microcapsules with fluorescence tracing and reduction-responsive drug release functions includes the following steps:
[0029] a. Disperse 0.1-100mg of graphene oxide quantum dots in 5-200ml of water ultrasonically;
[0030] b, in N 2 Under protection, inject 1-20ml of organic polymer or biopolymer containing sulfhydryl and amino groups at a concentration of 10mg / ml and 1-(3-dimethylaminopropyl)-3-ethyl carbon with a concentration of 10mg / ml Mixed solution of diimine hydrochloride;
[0031] c. Stir and react for 1-24 hours under anaerobic conditions, centrifuge and wash 3-5 times to remove unreacted organic polymers or biopolymers containing sulfhydryl and amino groups at the same time to obtain sulfhydryl graphene quantum dots;
[0032] d. Disperse the prepared thiolated graphene quantum dots uniformly in deionized water, use a test tube to measure the aqueous solution of thiolated graphene quantum dots and the oil phase containing hydrophobic drugs i...
Embodiment 1
[0039] Disperse 2mg of graphene oxide quantum dots in 20ml of water ultrasonically; in N 2 Under protection, inject 5ml of amino-polyethylene glycol-sulfhydryl with a concentration of 10mg / ml and 1-(3-dimethylaminopropyl)-3-ethylcarbodiimide hydrochloride with a concentration of 10mg / ml Mixed solution; stirred and reacted for 12 hours under anaerobic conditions, and centrifuged for 3 times to remove unreacted amino-polyethylene glycol-sulfhydryl groups to obtain sulfhydryl graphene quantum dots; 1mg sulfhydryl graphene quantum dots were uniformly dispersed in 10ml Dissolve 10 mg lomustine in 10 ml methyl silicone oil in deionized water; use a test tube to measure the aqueous solution of thiolated graphene quantum dots and the methyl silicone oil containing lomustine in a volume ratio of 5:1, and place them in In an ice-water bath; place the ultrasonic probe at the oil / water two-phase interface, irradiate ultrasonically for 5 minutes at a power of 400W; centrifuge the reaction so...
Embodiment 2
[0041] Disperse 2mg of graphene oxide quantum dots in 20ml of water ultrasonically; in N 2 Under protection, inject 5ml of amino-polyglutamic acid-sulfhydryl with a concentration of 10mg / ml and 1-(3-dimethylaminopropyl)-3-ethylcarbodiimide hydrochloride with a concentration of 10mg / ml Mixed solution; stirred for 16 hours under anaerobic conditions, 4 centrifugal washings to remove unreacted amino-polyglutamic acid-sulfhydryl groups to obtain sulfhydryl graphene quantum dots; 1mg sulfhydryl graphene quantum dots were uniformly dispersed in 10ml Dissolve 10 mg of paclitaxel in 10 ml of hydroxy silicone oil in deionized water; use a test tube to measure the aqueous solution of thiolated graphene quantum dots and the hydroxy silicone oil containing paclitaxel in a volume ratio of 5:1, and place them in an ice water bath; place the ultrasound probe At the oil / water two-phase interface, under 500W power, ultrasonic irradiation for 8min; the reaction solution was centrifuged and washed...
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