4.8 Article

Degradable, pH-sensitive, membrane-destabilizing, comb-like polymers for intracellular delivery of nucleic acids

Journal

BIOMATERIALS
Volume 31, Issue 27, Pages 7150-7166

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2010.05.048

Keywords

pH-sensitive polymers; Acid-labile linkage; Comb-like polymers; Endosomal escape; Intracellular siRNA delivery

Funding

  1. U.S. Department of Defence Breast Cancer Research Program [W81XWH-05-1-0240]
  2. Marian Sarah Parker Scholarship
  3. Edmunson Summer Fund

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This report describes the design and synthesis of a new series of degradable, pH-sensitive, membrane-destabilizing, comb-like polymers that can enhance the intracellular delivery of therapeutic nucleic acids. These comb-like polymers are based on a diblock polymer backbone where the first block is a copolymer of pH-sensitive ethyl acrylic acid (EM) monomers and hydrophobic butyl methacrylate (BMA) or hexyl methacrylate monomers. The second block is a homopolymer of N-acryloxy succinimide (NASI) or beta-benzyl L-aspartate N-carboxy-anhydride (BLA-NCA) monomers, which are functionalized to allow controlled grafting of hydrophobic HMA and cationic trimethyl aminoethyl methacrylate (TMAEMA) copolymers via acid-labile hydrazone linkages. These comb-like polymers displayed high hemolytic activity in acidic solutions, which increased with the increase in polymer concentration. All comb-like polymers degraded into small fragments upon incubation in an acidic solution (pH 5.8) due to hydrolysis of the hydrazone linkages connecting the hydrophobic/cationic grafts to the polymer backbone. Comb-like polymers successfully complexed anti-GAPDH siRNA molecules into serum- and nuclease-stable particles, which successfully silenced GAPDH expression at both the mRNA and protein levels. These results collectively indicate the potential of these new comb-like polymers to serve as vehicles for effective intracellular delivery of therapeutic nucleic acids. (C) 2010 Elsevier Ltd. All rights reserved.

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