4.7 Article

Acetal linked oligoethylenimines for use as pH-sensitive gene carriers

Journal

BIOCONJUGATE CHEMISTRY
Volume 19, Issue 8, Pages 1625-1634

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/bc8001858

Keywords

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Funding

  1. Nanosystems Initiative Munich (NIM)
  2. European Community
  3. [DFG SFB 486]
  4. [SPP1230]

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Two types of acid-degradable nonviral gene carriers, OEI-MK and OEI-BAA, were synthesized by polymerizing oligoethylenimine of 800 Da (OE1800) with the pH-sensitive acetone ketal cross-linker 2,2-bis(N-maleimidoethyloxy) propane (MK) or the 4-methoxybenzaldehyde bisacrylate acetal cross-linker 1,1-bis-(2-acryloyloxyethoxy)[4-methoxy-phenyl] methane) (BAA). Corresponding acid-insensitive counterparts (OEI-BM and LT-OEI-HD) were synthesized as well, representing control polymers. Kinetics of hydrolysis were measured and confirmed the pH-dependent degradation profile of the acetal functions, with short half-lives of 3 min at pH 5.0, and 5 h (OEI-MK) or 3.5 h (OEI-BAA) at physiological pH 7.4 and 37 degrees C. DNA polyplexes of a luciferase expression plasmid were tested for gene transfer efficiency and biocompatibility in two cell lines (1316F10 and Neuro2A). Polyplexes with acid-labile polymers showed an improved toxicity profile compared to those made with acidstable polymer analogues. At low cation/plasmid (c/p) w/w ratios the transfection efficiency of pH-sensitive polymers was slightly reduced, but it became similar or superior to the efficiency of acid-stable polymers at higher c/p ratios. An improved in vivo biocompatibility of the acid-degradable polymers over the stable control polymers was confirmed by liver histology after systemic administration of polymers in Balb/c mice.

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