Literature DB >> 28279738

Modifying plasmid-loaded HSA-nanoparticles with cell penetrating peptides - Cellular uptake and enhanced gene delivery.

J Mesken1, A Iltzsche2, D Mulac1, K Langer3.   

Abstract

Gene therapy bears great potential for the cure of a multitude of human diseases. Research efforts focussed on the use of viral delivery vectors in the past decades, neglecting non-viral gene therapies of physical or chemical origin due to low transfection efficiency. However, side effects such as activation of oncogenes and inflammatory reactions upon immune cell activation are major obstacles impeding the clinical applicability of viral gene therapy vectors. The aim of this study was the development of a non-viral gene delivery system based on plasmid-loaded human serum albumin nanoparticles, which are biocompatible, biodegradable, and non-toxic in relevant concentrations. The surface of said nanoparticles was modified with different cell penetrating peptides, namely Tat, nona-arginine R9, and the penetratin analogue EB1. We hypothesise that the surface modified nanoparticles can effectively enter HEK 293T cells based on the cell penetrating properties of the different peptides attached. A variety of inhibitors were used targeting distinct uptake pathways in an effort to understand the mechanisms utilized by the various cell penetrating peptides on the surface of the nanoparticles. A significant increase in transfection efficiency compared to free DNA or polyplexes was seen for these novel delivery vectors.
Copyright © 2017 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Cell penetrating peptides; Cell transfection; Cellular uptake; Human serum albumin (HSA); Plasmid DNA; Transfection

Mesh:

Substances:

Year:  2017        PMID: 28279738     DOI: 10.1016/j.ijpharm.2017.03.006

Source DB:  PubMed          Journal:  Int J Pharm        ISSN: 0378-5173            Impact factor:   5.875


  3 in total

Review 1.  Stimuli-responsive nanocarriers for intracellular delivery.

Authors:  Lemmuel L Tayo
Journal:  Biophys Rev       Date:  2017-11-25

Review 2.  Protein-Based Nanoparticles as Drug Delivery Systems.

Authors:  Seyoung Hong; Dong Wook Choi; Hong Nam Kim; Chun Gwon Park; Wonhwa Lee; Hee Ho Park
Journal:  Pharmaceutics       Date:  2020-06-29       Impact factor: 6.321

Review 3.  Biological Membrane-Penetrating Peptides: Computational Prediction and Applications.

Authors:  Ewerton Cristhian Lima de Oliveira; Kauê Santana da Costa; Paulo Sérgio Taube; Anderson H Lima; Claudomiro de Souza de Sales Junior
Journal:  Front Cell Infect Microbiol       Date:  2022-03-25       Impact factor: 5.293

  3 in total

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