Nucleic acid delivery carrier, preparation method and application of nucleic acid delivery carrier
A delivery carrier and nucleic acid technology, which is applied in the field of nanomaterials, can solve the problems that oligopolyethyleneimine does not have gene delivery, etc., achieve high nucleic acid delivery efficiency, simple preparation method, and improve the effect of nucleic acid compression ability
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Embodiment 1
[0058] In this embodiment, the nucleic acid delivery carrier is a nanometer self-assembly of amphiphilic fluorinated material, and the amphiphilic fluorinated material is perfluorooctyl substituted oligomer polyethyleneimine.
[0059] The nucleic acid delivery vector is prepared by the following method, which specifically includes the following steps:
[0060] (1) Synthesis of amphiphilic fluorinated materials
[0061] Weigh 418.2mg of oligopolyethyleneimine (Mn=600Da, Sigma) and dissolve it in 35mL of anhydrous dichloromethane, stir thoroughly to dissolve it completely, and then place it in an ice-water mixing bath; Take 169.1 μL of anhydrous triethylamine, add it to the above-mentioned polyethyleneimine reaction solution, and continue to stir for 30 min; (120.3 μL) was added dropwise to the above reaction solution for a total of 2 hours. Stirring was continued for 3 h at room temperature and the synthesis was completed. The solvent was removed by a rotary evaporator, the ...
Embodiment 2
[0065] The only difference from Example 1 is that the molar ratio of perfluorooctanoyl chloride and oligopolyethyleneimine in the preparation process is 0.5:1, and the prepared amphiphilic fluorinated material is denoted as f 0.5 OEI. The nanoassembly was prepared by the same step (2) as in Example 1.
Embodiment 3
[0067] The only difference from Example 1 is that the molar ratio of perfluorooctanoyl chloride and oligopolyethyleneimine in the preparation process is 1:1, and the prepared amphiphilic fluorinated material is denoted as f 1 OEI. The nanoassembly was prepared by the same step (2) as in Example 1.
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