Preparation method of pH (potential of hydrogen)/reduction response cascade release magnetic targeting drug carrier with core-shell structure
A core-shell structure, magnetic targeting technology, applied in medical preparations containing active ingredients, drug combinations, pharmaceutical formulations, etc., can solve the problems of premature drug release and controlled release effect, poor stability, carrier toxicity, etc. The effect of curative effect, improving enrichment, and reducing toxic and side effects
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Embodiment 1
[0021] 1. Referring to the literature (Biomaterials, 2009, 30:4716-4722), synthesize superparamagnetic ferric oxide nanoparticles SPION-COOH with surface carboxylation. Specific steps are as follows:
[0022] Weigh FeCl respectively according to the molar ratio of 2:1.1 3 ·6H 2 O and FeCl 2 4H 2 O, dissolved in HCl solution at pH 1.7. Under nitrogen protection and high-speed stirring, the mixed solution was injected into a three-necked flask filled with NaOH solution at a rate of 65mL / h. After the injection was completed, the temperature was raised to 78°C and kept at a constant temperature for 1 hour. Wash the obtained magnetic fluid to neutrality through magnetic separation, and finally disperse it with HCl solution with pH=3 and freeze-dry to obtain SPION. Weigh a certain amount of SPION and sodium citrate according to the mass ratio of 10:7, dissolve them in deionized water, react with ultrasound for 2 hours, and obtain SPION-COOH after magnetic separation.
[0023] ...
Embodiment 2
[0032] 1. Referring to the literature (Biomaterials, 2009, 30:4716-4722), synthesize superparamagnetic ferric oxide nanoparticles SPION-COOH with surface carboxylation. Specific steps are as follows:
[0033] Weigh FeCl respectively according to the molar ratio of 2:1.1 3 ·6H 2 O and FeCl 2 4H 2 O, dissolved in HCl solution at pH 1.7. Under nitrogen protection and high-speed stirring, the mixed solution was injected into a three-necked flask filled with NaOH solution at a rate of 60 mL / h. After the injection was completed, the temperature was raised to 78°C and kept at a constant temperature for 1 hour. The obtained magnetic fluid was washed with water to neutrality through magnetic separation, and finally dispersed with HCl solution with pH 3 and freeze-dried to obtain SPION. Weigh a certain amount of SPION and sodium citrate according to the mass ratio of 10:7, dissolve them in deionized water, react with ultrasound for 2 hours, and magnetically separate to obtain SPION...
Embodiment 3
[0040] 1. Referring to the literature (Biomaterials, 2009, 30:4716-4722), synthesize superparamagnetic ferric oxide nanoparticles SPION-COOH with surface carboxylation. Specific steps are as follows:
[0041] Weigh FeCl respectively according to the molar ratio of 2:1.1 3 ·6H 2 O and FeCl 2 4H 2 O, dissolved in HCl solution at pH 1.7. Under nitrogen protection and high-speed stirring conditions, the mixed solution was injected into a three-necked flask filled with NaOH solution at a rate of 75mL / h. After the injection was completed, the temperature was raised to 78°C and kept at a constant temperature for 1 hour. The obtained magnetic fluid was washed with water to neutrality through magnetic separation, and finally dispersed with HCl solution with pH 3 and freeze-dried to obtain SPION. Weigh a certain amount of SPION and sodium citrate according to the mass ratio of 10:7, dissolve them in deionized water, react with ultrasound for 2 hours, and magnetically separate to ob...
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