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Redondo, JA,Velasco, D,Perez-Perrino, M,Reinecke, H,Gallardo, A,Pandit, A,Elvira, C
2015
February
European Journal Of Pharmaceutics And Biopharmaceutics
Synergistic effect of pendant hydroxypropyl and pyrrolidine moieties randomly distributed along polymethacrylamide backbones on in vitro DNA-transfection
Published
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Cationic polymers Stimuli responsive polymers Gene delivery Acrylics Pyrrolidine HPMA STIMULI-RESPONSIVE POLYMERS HPMA-OLIGOLYSINE COPOLYMERS GENE DELIVERY CARRIERS THERAPY FUTURE CANCER
90
38
43
In this work, the cationic monomer N-ethyl pyrrolidine methacrylamide (EPA) was copolymerized with the neutral monomer N-hydroxypropyl methacrylamide (HPMA) at different molar ratios obtaining linear random copolymers that were characterized and evaluated in vitro as non-viral gene carriers using murine Swiss 3T3 fibroblasts. The copolymers with excess or equimolar amount of EPA were able to complex DNA forming stable polyplexes with an average size between 50 and 200 nm, while the copolymers with an excess of HPMA do not. Cell viability was shown to depend on the EPA/HPMA molar ratio, exhibiting the equimolar copolymer poly (EPA-co-HPMA) 50:50 (EPA(50)) a full cytocompatibility, similar to the HPMA-rich systems. This copolymer EPA(50) has also shown significantly higher transfection levels than the systems with other compositions and the positive controls poly L-lysine (PLL) and poly EPA (pEPA). This statistical equimolar copolymer EPA(50) has unique properties related to its composition and microstructure, which allows it to complex DNA, showing an excellent biocompatibility and high transfection efficiency. (C) 2014 Elsevier B.V. All rights reserved.
10.1016/j.ejpb.2014.11.006
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