Nano-drug capable of continuously releasing hydroxyl radicals and singlet oxygen in acid response as well as preparation method and application of nano-drug
A continuous release, singlet oxygen technology, applied in the field of biomedical materials and nanomaterials, can solve the problems of limited glucose content, easy inactivation of enzyme activity, limited loading rate, etc., and achieve the effect of effectively inhibiting the growth of tumor cells
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Embodiment 1
[0073] A preparation method of a nanomedicine capable of continuously releasing hydroxyl radicals and singlet oxygen in acid response, the synthesis process is as follows figure 1 shown, including the following steps:
[0074] (1) Preparation of hollow polydopamine materials
[0075] S1. Preparation of silica nanoparticles: 94.2 mL of ethanol, 16.2 mL of pure water, and 4.54 mL of ammonia water were mixed and stirred for 15 minutes, 5.4 mL of ethyl orthosilicate was added, and after stirring for 5 hours, the precipitate was collected by centrifugation at 8000 rpm for 10 minutes, and the precipitate was washed twice Then freeze-dried to obtain silica nanoparticles SiO 2 ;
[0076] S2. Dopamine coating on the surface of silica: resuspend 350 mg of silica nanoparticles in Tris-HCl buffer (pH 8.5, 10 mM), add 350 mg of dopamine hydrochloride, stir and react for 24 h and then centrifuge at 8000 rpm for 10 min to collect the precipitate , the precipitate was washed twice and then...
Embodiment 2
[0084] This example is basically the same as Example 1, except that, in the preparation of the acid-responsive nanocarrier material in step (2), the amount of hollow polydopamine used is 0.1 mg.
[0085] According to the above method, the nano-drug HPDA@CP@CPO that continuously releases hydroxyl radicals and singlet oxygen in acid response as described in Example 1 was prepared.
Embodiment 3
[0087] This example is basically the same as Example 1, except that, in the preparation of the acid-responsive nanocarrier material in step (2), the amount of hollow polydopamine used is 2 mg.
[0088] According to the above method, the nano-drug HPDA@CP@CPO that continuously releases hydroxyl radicals and singlet oxygen in acid response as described in Example 1 was prepared.
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