Anti-cancer medicinal composition
A technology of anti-cancer drugs and compositions, applied in the direction of drug combinations, anti-tumor drugs, active ingredients of heavy metal compounds, etc., can solve problems such as inappropriateness, and achieve the effects of low toxicity, convenient use, and significant effects
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Embodiment 1
[0019] Embodiment 1 pharmaceutical composition microemulsion preparation of the present invention
[0020] components
[0021] Preparation process: Weigh peppermint oil, polyoxyethylene-23-lauryl ether, and 1,2-propylene glycol in the prescribed amount, mix and stir evenly, then add arctigenin and carboplatin to dissolve, and ultrasonic treatment can also be used to speed up the dissolution. The clarified concentrate is arctigenin and carboplatin microemulsion concentrate. The particle size was measured by a laser particle size analyzer, and the average particle size was 15nm.
Embodiment 2
[0022] Embodiment 2 pharmaceutical composition microemulsion preparation of the present invention
[0023] components
[0024] Preparation process: Weigh the prescription amount of spearmint oil, decaglycerol monostearate, and 1,2-propanediol, mix and stir evenly, then add arctigenin and oxaliplatin to dissolve, and ultrasonic treatment can also be used to speed up the dissolution. The clarified concentrated solution is the arctigenin and oxaliplatin microemulsion concentrate. The particle size was measured by a laser particle size analyzer, and the average particle size was 15nm.
Embodiment 3
[0025] Embodiment 3 pharmaceutical composition microemulsion preparation of the present invention
[0026] components
[0027] Preparation process: Weigh the prescription amount of peppermint oil, caprylic ethyl oleate, 1,2-propylene glycol, polyethylene glycol 8000, mix and stir evenly, then add arctigenin and picoplatin to dissolve, and ultrasonic treatment can also be used to accelerate the dissolution , to obtain a clear concentrate, which is arctigenin and picoplatin microemulsion concentrate. The particle size was measured by a laser particle size analyzer, and the average particle size was 40nm.
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