Immunostimulatory characteristics induced by linear polyethyleneimine-plasmid DNA complexes in cultured macrophages

Yasunori Saito1, Yuriko Higuchi, Shigeru Kawakami

  • 1Department of Drug Delivery Research, Graduate School of Pharmaceutical Sciences, Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan.

Human Gene Therapy
|October 22, 2008
PubMed

Insights

Linear polyethyleneimine (PEI) polyplexes induce lower cytokine production than lipoplexes by enhancing endosomal escape. This suggests PEI polyplexes may be a safer non-viral gene delivery method.

Area of Science:

  • Biotechnology
  • Molecular Biology
  • Immunology

Background:

  • Plasmid DNA (pDNA) complexed with cationic liposomes (lipoplexes) can trigger cytokine production via NF-kappaB activation, mediated by CpG sequences recognized by Toll-like receptor-9.
  • Linear polyethyleneimine (PEI)-pDNA complexes (PEI polyplexes) exhibit lower cytokine production compared to lipoplexes.

Purpose of the Study:

  • To investigate the mechanism behind the reduced cytokine production induced by PEI polyplexes compared to lipoplexes.
  • To elucidate the role of endosomal escape in modulating the immune response to pDNA complexes.

Main Methods:

  • Utilized murine macrophage-like cell line RAW 264.7 for in vitro studies.
  • Compared cellular association, transfection efficacy, cytokine production (TNF-alpha, IL-6), NF-kappaB activation, and intracellular distribution of PEI polyplexes and lipoplexes.
  • Employed endosomal inhibitors (Bafilomycin A1, chloroquine) to assess the impact on cytokine production and NF-kappaB activation.

Main Results:

  • PEI polyplexes showed similar cellular association and transfection efficacy but significantly lower tumor necrosis factor-alpha and interleukin-6 production and NF-kappaB activation than lipoplexes.
  • Intracellularly, PEI polyplexes distributed into the cytosol, unlike lipoplexes which accumulated in vesicles, indicating enhanced endosomal escape.
  • Bafilomycin A1 enhanced PEI polyplex-induced responses, while chloroquine inhibited them, supporting the role of PEI's buffering capacity in early endosomes.

Conclusions:

  • PEI polyplexes induce significantly lower cytokine production and NF-kappaB activation in macrophages compared to lipoplexes.
  • The reduced immunogenicity of PEI polyplexes is attributed to their effective transition from endosomes to the cytosol, likely mediated by PEI's buffering capacity.
  • These findings suggest PEI polyplexes may offer a safer alternative for non-viral gene delivery systems.

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