Data Entry: Please note that the research database will be replaced by UNIverse by the end of October 2023. Please enter your data into the system https://universe-intern.unibas.ch. Thanks

Login for users with Unibas email account...

Login for registered users without Unibas email account...

 
Core-Shell Structured Chitosan-Polyethylenimine Nanoparticles for Gene Delivery: Improved Stability, Cellular Uptake, and Transfection Efficiency
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 4694679
Author(s) Casper, Jens; Kuzucu, Evrim Ümit; Tran, Alan; Detampel, Pascal; Huwyler, Jörg
Author(s) at UniBasel Huwyler, Jörg
Casper, Jens
Kuzucu, Evrim Ümit
Tran, Alan
Detampel, Pascal
Year 2023
Title Core-Shell Structured Chitosan-Polyethylenimine Nanoparticles for Gene Delivery: Improved Stability, Cellular Uptake, and Transfection Efficiency
Journal Macromolecular bioscience
Volume 23
Number 1
Pages / Article-Number e2200314
Keywords chitosan; gene delivery; nanoparticles; polyethylenimine; ternary complex
Mesh terms Mice; Humans; Animals; Chitosan, pharmacology, chemistry; Polyethyleneimine, pharmacology, chemistry; Transfection; Gene Transfer Techniques; DNA, genetics; Nanoparticles, chemistry; Polyethylene Glycols, pharmacology, chemistry
Abstract

The delivery of nucleic acids relies on vectors that condense and encapsulate their cargo. Especially nonviral gene delivery systems are of increasing interest. However, low transgene expression levels and limited tolerability of these systems remain a challenge. The improvement of nucleic acid delivery using depolymerized chitosan-polyethylenimine DNA complexes (dCS-PEI/DNA) is investigated. The secore complexes are further combined with chitosan-based shells and functionalized with polyethylene glycol (PEG) and cell penetrating peptides. This modular approach allows to evaluate the effect of functional shell components on physicochemical particle characteristics and biological effects. The optimized ternary complex combines a core-dCS-linear PEI/DNA complex with a shell consisting of dCS-PEG-COOH, which results in improved nucleic acid encapsulation, cellular uptake and transfection potency in human hepatoma HuH-7cells and murine primary hepatocytes. Effects on transgene expression are confirmed in wild-type mice following retrograde intrabiliary infusion. After administration of only 100 ng complexed DNA, ternary complexes induced a high reporter gene signal for three days. It is concluded that ternary coreshell structured nanoparticles comprising functionalized chitosan can be used for in vitro andin vivo gene delivery.

ISSN/ISBN 1616-5195
Full Text on edoc
Digital Object Identifier DOI 10.1002/mabi.202200314
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/36200651
   

MCSS v5.8 PRO. 0.351 sec, queries - 0.000 sec ©Universität Basel  |  Impressum   |    
09/05/2024