evaluation of cell penetrating peptide delivery system on hpv16e7 expression in three types of cell line

Authors

tayebeh saleh

azam bolhassani

seyed abbas shojaosadati

saman hosseinkhani

abstract

background: the poor permeability of the plasma and nuclear membranes to dna plasmids are two major barriers for the development of these therapeutic molecules. therefore, success in gene therapy approaches depends on the development of efficient and safe non-viral delivery systems. objectives: the aim of this study was to investigate the in vitro delivery of plasmid dna encoding hpv16 e7 gene using cell penetrating peptide delivery system to achieve the best conditions for cell transfection and protein expression. for this purpose, we have used a cationic peptide delivery system, mpg which forms stable non-covalent complexes with nucleic acids for delivery of pegfp-e7 as a model antigen in vitro.materials and methods: dna construct encoding hpv16 e7 (pegfp-e7) was prepared in large scale with high purity. mpg peptide/ dna complexes were prepared at different n/p (nitrogen/phosphate) ratios and physicochemical characterization and stability of nanoparticles were investigated. in vitro peptide-mediated e7-gfp dna transfection, and its expression was evaluated in three cell types. to quantify the transfection efficiency of this delivery system, transfected cells were harvested and assessed for gfp-positive cells by flow cytometry. furthermore, e7-gfp expression was confirmed by western blot analysis.results: the cellular uptake of mpg based nanoparticles was shown to be comparable with standard reagent pei. the cos-7 cells transfected by mpg-based nanoparticles at an n/p ratio of 15:1 showed the highest transfection efficiency and gene expression. conclusions: the results indicated that the efficient gene expression depends on both cell type and n/p ratio applied, in vitro. the efficient protein expression detected by western blotting and flow cytometry supports the potential of mpg-based nanoparticles as a potent gene delivery system.

Upgrade to premium to download articles

Sign up to access the full text

Already have an account?login

similar resources

Evaluation of Cell Penetrating Peptide Delivery System on HPV16E7 Expression in Three Types of Cell Line

Background: The poor permeability of the plasma and nuclear membranes to DNA plasmids are two major barriers for the development of these therapeutic molecules. Therefore, success in gene therapy approaches depends on the development of efficient and safe non-viral delivery systems. Objectives: The aim of this study was to investigate the in vitro delivery of plasmid DNA encoding HPV16 E7 gene...

full text

Cell-penetrating-peptide-mediated siRNA lung delivery.

The therapeutic application of siRNA (short interfering RNA) shows promise as an alternative approach to small-molecule inhibitors for the treatment of human disease. However, the major obstacle to its use has been the difficulty in delivering these large anionic molecules in vivo. A potential approach to solving this problem is the chemical conjugation of siRNA to the cationic CPPs (cell-penet...

full text

Ectopic Expression of Embryo/Cancer Sequence A (ECSA) in KYSE-30 Cell Line Using Retroviral System

Background Human preimplantation embryonic cells share many similarities with cancer cells such as ability to self-renew, unlimited proliferation and maintenance of the undifferentiated state. Embryo-cancer sequence A (ECSA), also known as developmental pluripotency associated-2 (DPPA2), is a cancer testis antigen (CTA) with unclear biological function yet. Objective: CTAs are expressed normal...

full text

My Resources

Save resource for easier access later


Journal title:
iranian journal of biotechnology

Publisher: national institute of genetic engineering and biotechnology

ISSN 1728-3043

volume 13

issue 1 2015

Hosted on Doprax cloud platform doprax.com

copyright © 2015-2023