» Articles » PMID: 25121341

Optimization of Liganded Polyethylenimine Polyethylene Glycol Vector for Nucleic Acid Delivery

Overview
Journal Bioconjug Chem
Specialty Biochemistry
Date 2014 Aug 15
PMID 25121341
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

The delivery of nucleic acids into cells is an attractive approach for cancer therapy. Polyethylenimine (PEI) is among the most efficient nonviral carriers. Recent studies have demonstrated that PEI can be conjugated to targeting ligands, such as epidermal growth factor (EGF) and transferrin (Schaffert et al., 2011; Abourbeh et al., 2012; Ogris et al., 1999). Herein we present a simplified protocol for producing homogeneous preparations of PEGylated linear PEI: LPEI-PEG2k. We generated two well-characterized copolymers, with ratios of LPEI to PEG of 1:1 and 1:3. These copolymers were further conjugated through disulfide bonds to a Her-2 targeting moiety, Her-2 affibody. This reaction yielded two triconjugates that target Her-2 overexpressing tumors. Polyplexes were formed by complexing plasmid DNA with the triconjugates. We characterized the biophysical properties of the conjugates, and found that the triconjugate 1:3 polyplex had lower ζ potential, larger particle size, and more heterogeneous shape than the triconjugate 1:1 polyplex. Triconjugate 1:1 and triconjugate 1:3 polyplexes were highly selective toward cells that overexpress Her-2 receptors, but triconjugate 1:1 polyplex was more efficient at gene delivery. Our studies show that the biophysical and biological properties of the conjugates can be profoundly affected by the ratio of LPEI:PEG2k:ligand. The procedure described here can be adapted to generate a variety of triconjugates, simply by changing the targeting moiety.

Citing Articles

Artificial Scaffold Polypeptides As an Efficient Tool for the Targeted Delivery of Nanostructures In Vitro and In Vivo.

Shipunova V, Deyev S Acta Naturae. 2022; 14(1):54-72.

PMID: 35441046 PMC: 9013437. DOI: 10.32607/actanaturae.11545.


Shedding light on gene therapy: Carbon dots for the minimally invasive image-guided delivery of plasmids and noncoding RNAs - A review.

Mohammadinejad R, Dadashzadeh A, Moghassemi S, Ashrafizadeh M, Dehshahri A, Pardakhty A J Adv Res. 2019; 18:81-93.

PMID: 30828478 PMC: 6383136. DOI: 10.1016/j.jare.2019.01.004.


PSMA-targeted polyinosine/polycytosine vector induces prostate tumor regression and invokes an antitumor immune response in mice.

Langut Y, Talhami A, Mamidi S, Shir A, Zigler M, Joubran S Proc Natl Acad Sci U S A. 2017; 114(52):13655-13660.

PMID: 29229829 PMC: 5748205. DOI: 10.1073/pnas.1714587115.


Polyethylenimine-based micro/nanoparticles as vaccine adjuvants.

Shen C, Li J, Zhang Y, Li Y, Shen G, Zhu J Int J Nanomedicine. 2017; 12:5443-5460.

PMID: 28814862 PMC: 5546778. DOI: 10.2147/IJN.S137980.


Targeting polyIC to EGFR over-expressing cells using a dsRNA binding protein domain tethered to EGF.

Edinger N, Lebendiker M, Klein S, Zigler M, Langut Y, Levitzki A PLoS One. 2016; 11(9):e0162321.

PMID: 27598772 PMC: 5012564. DOI: 10.1371/journal.pone.0162321.