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  • A novel method for DNA deli...
    Souza, V V de; Vitale, P A M; Florenzano, F H; Salinas, R K; Cuccovia, I M

    Brazilian journal of medical and biological research, 01/2021, Letnik: 54, Številka: 5
    Journal Article

    Amphiphilic copolymers have a wide variety of medical and biotechnological applications, including DNA transfection in eukaryotic cells. Still, no polymer-primed transfection of prokaryotic cells has been described. The reversible addition-fragmentation chain transfer (RAFT) polymer synthesis technique and the reversible deactivation radical polymerization variants allow the design of polymers with well-controlled molar mass, morphology, and hydrophilicity/hydrophobicity ratios. RAFT was used to synthesize two amphiphilic copolymers containing different ratios of the amphiphilic poly2-(dimethyl-amino) ethyl methacrylate and the hydrophobic poly methyl methacrylate. These copolymers bound to pUC-19 DNA and successfully transfected non-competent Escherichia coli DH5α, with transformation efficiency in the range of 103 colony-forming units per µg of plasmid DNA. These results demonstrate prokaryote transformation using polymers with controlled amphiphilic/hydrophobic ratios.