Gel material for efficient treatment of tumors and preparation method thereof
A gel material and high-efficiency technology, applied in the field of medical nano-biomaterials, can solve the problems of body function of patients with toxic and side effects, failure to effectively suppress cancer mortality, physical and mental trauma of patients, etc., and achieve the effect of high-efficiency responsive enzyme-catalyzed reaction
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Embodiment 1
[0058] A functional organic-inorganic hybrid nanogel material system carrying superoxide dismutase (SOD)-chloroperoxidase (CPO), specifically according to the following steps:
[0059] (1) Prepare 100 mg of Fe3O4 nano-cores (MNPs) by traditional pyrolysis method, disperse in a mixture of 80 mL of ethanol and 80 mL of deionized water, disperse ultrasonically for 30 min, add 6 mL of APTES, and react for 24 h under heating and stirring at 70 °C , and pass into N2. After the reaction was completed, they were washed several times with ethanol and deionized water respectively, and the obtained particles were surface aminated ferric oxide, ie MNPs-APTES. Then disperse the obtained MNPs-APTES in 100mL of DMF, add 10% succinic anhydride, stir and react for 18h, wash with ethanol and water to obtain the surface carboxylated ferric oxide MNPs-COOH, disperse the MNPs-COOH Reserve in 20mL deionized water to finally realize the carboxyl functionalization of the nano-core.
[0060] (2) Aft...
Embodiment 2
[0070] (1) Prepare 100 mg of Fe3O4 nano-cores (MNPs) by traditional pyrolysis method, disperse in a mixture of 70 mL of ethanol and 70 mL of deionized water, disperse ultrasonically for 20 min, add 4 mL of APTES, and react for 20 h under heating and stirring at 60 °C , and pass into N2. After the reaction was completed, they were washed several times with ethanol and deionized water respectively, and the obtained particles were surface aminated ferric oxide, ie MNPs-APTES. Then disperse the obtained MNPs-APTES in 100mL of DMF, add 8% succinic anhydride, stir the reaction for 16h, wash with ethanol and water to obtain the surface carboxylated ferric oxide MNPs-COOH, disperse the MNPs-COOH Reserve in 20mL deionized water to finally realize the carboxyl functionalization of the nano-core.
[0071] (2) After the above modification, the surface has a large number of carboxyl groups, which can be activated by EDC / NHS first, and then acid phosphatase (AP) can be grafted on the surfa...
Embodiment 3
[0075] (1) Prepare 100 mg of Fe3O4 nano-cores (MNPs) by traditional pyrolysis method, disperse in a mixture of 90 mL of ethanol and 90 mL of deionized water, disperse ultrasonically for 30 min, add 8 mL of APTES, and react for 30 h under heating and stirring at 80 °C , and pass into N2. After the reaction was completed, they were washed several times with ethanol and deionized water respectively, and the obtained particles were surface aminated ferric oxide, ie MNPs-APTES. Then disperse the obtained MNPs-APTES in 100mL of DMF, add 12% succinic anhydride, stir and react for 18h, wash with ethanol and water to obtain surface carboxylated ferric oxide MNPs-COOH, disperse MNPs-COOH Reserve in 20mL deionized water to finally realize the carboxyl functionalization of the nano-core.
[0076] (2) After the above modification, the surface has a large number of carboxyl groups, which can be activated by EDC / NHS first, and then acid phosphatase (AP) can be grafted on the surface. Take ...
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