Literature DB >> 17025363

Synthesis, characterization, and gene transfer application of poly(ethylene glycol-b-ethylenimine) with high molar mass polyamine block.

B Brissault1, A Kichler, C Leborgne, O Danos, H Cheradame, J Gau, L Auvray, C Guis.   

Abstract

The study of ethyloxazoline/methyloxazoline (EtOXZ/MeOXZ) copolymerization, initiated by methyl tosylate (MeOTs), showed that (i) incorporation of MeOXZ units into random copolymer becomes effective over DP = 100 and (ii) propagation process proceeds with negligible transfer to monomer up to a DP of 400 despite the presence of MeOXZ in the polymerization medium. These results produced random poly(EtOXZ-co-MeOXZ) copolymers with various molar composition ratios in alkyloxazoline units. The close values found for the comonomer reactivity ratios in acetonitrile (r(1MeOXZ) = 1.18; r(2EtOXZ) = 0.34) implied a random chain organization in short sequences of each repeating unit, which was an important parameter in view of the optimization of their subsequent modification: the alkaline hydrolysis was successfully achieved when the MeOXZ unit content of the polyoxazoline chains reached 75%. Using these results, the diblock copolymer poly(ethylene glycol-b-(ethyloxazoline-co-methyloxazoline)) (poly(EG-b-(EtOXZ-co-MeOXZ))) with high DP was synthesized by cationic copolymerization of EtOXZ/MeOXZ comonomers using CH(3)-PEG(2kDa)-Ts as macroinitiator. The comonomer composition of this new compound was adjusted in order to optimize the hydrolysis step and obtain finally the diblock copolymer poly(ethylene glycol-b-ethylenimine) (poly(EG-b-EI)). The high molar mass of this copolymer was confirmed both by (1)H NMR and SANS measurements. Gene delivery experiments showed that the copolymer has significant DNA transfection capacities.

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Year:  2006        PMID: 17025363     DOI: 10.1021/bm060499a

Source DB:  PubMed          Journal:  Biomacromolecules        ISSN: 1525-7797            Impact factor:   6.988


  4 in total

1.  Effectiveness of Small Interfering RNA Delivery via Arginine-Rich Polyethylenimine-Based Polyplex in Metastatic and Doxorubicin-Resistant Breast Cancer Cells.

Authors:  Shan Lu; Viola B Morris; Vinod Labhasetwar
Journal:  J Pharmacol Exp Ther       Date:  2019-04-02       Impact factor: 4.030

2.  Poly(I:C)-mediated tumor growth suppression in EGF-receptor overexpressing tumors using EGF-polyethylene glycol-linear polyethylenimine as carrier.

Authors:  David Schaffert; Melinda Kiss; Wolfgang Rödl; Alexei Shir; Alexander Levitzki; Manfred Ogris; Ernst Wagner
Journal:  Pharm Res       Date:  2010-08-06       Impact factor: 4.200

3.  PEGylated polyplex with optimized PEG shielding enhances gene introduction in lungs by minimizing inflammatory responses.

Authors:  Satoshi Uchida; Keiji Itaka; Qixian Chen; Kensuke Osada; Takehiko Ishii; Masa-Aki Shibata; Mariko Harada-Shiba; Kazunori Kataoka
Journal:  Mol Ther       Date:  2012-02-14       Impact factor: 11.454

Review 4.  Vectors for inhaled gene therapy in lung cancer. Application for nano oncology and safety of bio nanotechnology.

Authors:  Paul Zarogouldis; Nikos K Karamanos; Konstantinos Porpodis; Kalliopi Domvri; Haidong Huang; Wolfgang Hohenforst-Schimdt; Eugene P Goldberg; Konstantinos Zarogoulidis
Journal:  Int J Mol Sci       Date:  2012-08-29       Impact factor: 6.208

  4 in total

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