Maltosylated polyethylenimine-based triple nanocomplexes of human papillomavirus 16L1 protein and DNA as a vaccine co-delivery system

Biomaterials. 2011 Jul;32(20):4621-9. doi: 10.1016/j.biomaterials.2011.03.004. Epub 2011 Mar 25.

Abstract

To improve vaccine delivery, we herein designed a co-delivery system using a protein antigen and its encoding plasmid linked in nanocomplexes via maltosylated PEI (mPEI). Cationic mPEI was electrostatically complexed to a plasmid encoding the human papillomavirus (HPV) type 16L1 protein (pHPV16L1), and further complexed to a maltose binding protein (MBP)-fused human papillomavirus type 16L1 fusion protein (HPV16L1-MBP). The HPV16L1-MBP/mPEI/pHPV16L1 complexes were characterized by gel-retardation properties, zeta potentials and sizes. The intracellular co-delivery of protein and plasmid DNA vaccines was significantly higher for mPEI-based triple nanocomplexes than for a simple physical mixture of the proteins and DNA. Moreover, the cellular delivery of plasmid DNA using mPEI-based triple nanocomplexes resulted in higher expression levels comparable to those obtained using dual complexes of mPEI and the plasmid DNA. In vivo, co-immunization of mice with HPV16L1-MBP/mPEI/pHPV16L1 nanocomplexes triggered the highest levels of humoral immune responses among various vaccination groups. Moreover, the mPEI-based nanocomplexes significantly enhanced the number of interferon-γ producing CD8(+) T cells compared with the use of mixed proteins and plasmid DNA. These results suggest that the effective cellular co-delivery of MBP-fused antigen proteins and plasmid DNA using maltosylated PEI-based triple nanocomplexes could enhance the immunogenicity of HPV16L1 vaccines.

Publication types

  • Evaluation Study
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • CD8-Positive T-Lymphocytes / immunology
  • Capsid Proteins / genetics
  • Capsid Proteins / immunology*
  • Cell Line
  • DNA / chemistry*
  • DNA / metabolism
  • Humans
  • Maltose-Binding Proteins / genetics
  • Maltose-Binding Proteins / immunology*
  • Materials Testing
  • Mice
  • Molecular Structure
  • Nanostructures / chemistry*
  • Oncogene Proteins, Viral / genetics
  • Oncogene Proteins, Viral / immunology*
  • Particle Size
  • Polyethyleneimine / chemistry*
  • Polyethyleneimine / metabolism
  • Recombinant Fusion Proteins / genetics
  • Recombinant Fusion Proteins / immunology*
  • Vaccines, DNA* / administration & dosage
  • Vaccines, DNA* / immunology

Substances

  • Capsid Proteins
  • Maltose-Binding Proteins
  • Oncogene Proteins, Viral
  • Recombinant Fusion Proteins
  • Vaccines, DNA
  • L1 protein, Human papillomavirus type 16
  • Polyethyleneimine
  • DNA