Myristic acid-mediated brain-targeting polymer micelle drug-delivery system and its preparation method and use
A technology of polymer glue and myristic acid, which is used in pharmaceutical formulations, medical preparations with non-active ingredients, and medical preparations containing active ingredients, etc. The application has no relevant literature reports and other problems, and achieves the effect of facilitating subsequent development and industrialization, no immunogenicity, and improving the degree of concentration
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Embodiment 1
[0051] Construct the targeted functional material (I), and combine the targeted functional material with the amphiphilic polymer material (II) and anti-tumor drugs in a certain proportion to make a polymer micelle drug delivery system; it includes:
[0052] (1) Fluorescence tracking of myristic acid-polymer micelles
[0053] Myristic acid and amino polyethylene glycol distearoylphosphatidylethanolamine are reacted at room temperature, and the product is purified by dialysis.
[0054] With the molar ratio of brain-targeted functional materials and amphiphilic polymer materials at 5:95, polymer micelles loaded with coumarin-6 (C6) and DiR were prepared by film-forming hydration method, and removed by gel chromatography. free fluorescein;
[0055] (2) Preparation of myristic acid-polymer micelles / DTX
[0056] The polymer micelles loaded with the chemical drug docetaxel (DTX) were prepared by using the film-forming hydration method with a molar ratio of brain-targeting funct...
Embodiment 2
[0063] Example 2 Preparation of myristic acid-polymer micelles / DTX (MC-micelles / DTX)
[0064] Myristic acid-aminopolyethylene glycol-distearoylphosphatidylethanolamine (MC-PEG-DSPE):
[0065] Weigh an appropriate amount of MC, dissolve it in DMF, add a certain amount of NHS and EDC·HCl to activate for 3 h, centrifuge to get the supernatant; weigh an appropriate amount of NH 2 - PEG-DSPE in DMF, add the supernatant drop by drop, then add 50 μL of DIEA, stir overnight at room temperature; precipitate the above reaction solution with glacial ether, centrifuge, and disperse the dried product with double distilled water after vacuum drying , purified by dialysis, and freeze-dried to obtain a white solid MC-PEG-DSPE; 1 H-NMR to verify its structure (500 MHz, CD 3 Cl) (eg figure 1 shown), the results show that: the compound has between 0.8-1.5ppm two The characteristic peak of stearyl phosphatidylethanolamine, the characteristic peak of polyethylene glycol appears between 3...
Embodiment 3
[0069] Example 3 BCECs cell uptake test of myristic acid-polymer micelles (MC-micelles)
[0070] Preparation of myristic acid-polymer micelles / C6 (MC-micelles / C6):
[0071] Coumarin-6 (C6)-labeled mPEG-micelles were prepared by film-forming hydration method. The specific preparation method was as follows: mPEG-DSPE was mixed with 50 μg fluorescent dye C6, vortexed for 1 min, and evaporated to dryness at 37°C. Form a film, dry in vacuum to remove residual organic solvent, add 200 μL of HEPES (pH 7.4, 10 mmol / L), vortex for 10 min, shake in a water bath at 37 °C for 2 h, use gel filtration chromatography, use G50 as filler, HEPES To remove unencapsulated C6 from the elution medium, mPEG-micelles / C6 was obtained after passing through a 0.22 μm microporous membrane; using the same preparation process, the molar ratio of MC-PEG-DSPE to mPEG-DSPE was 5:95, Prepare MC-micelles / C6, measure the C6 content with a fluorescence spectrophotometer, and calculate the content from the st...
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