» Articles » PMID: 21600970

Amphiphilic and Biodegradable Hy-PEI-g-PCL-b-PEG Copolymers Efficiently Mediate Transgene Expression Depending on Their Graft Density

Overview
Journal Int J Pharm
Specialties Chemistry
Pharmacology
Date 2011 May 24
PMID 21600970
Citations 9
Authors
Affiliations
Soon will be listed here.
Abstract

Novel biodegradable amphiphilic copolymers hy-PEI-g-PCL-b-PEG were prepared by grafting PCL-b-PEG chains onto hyper-branched poly(ethylene imine) as non-viral gene delivery vectors. Our investigations focused on the influence of graft densities of PCL-b-PEG chains on physico-chemical properties, DNA complexation and transfection efficiency. We found that the transfection efficiencies of these polymers increased at first towards an optimal graft density (n=3) and then decreased. The buffer-capacity-test showed almost exactly the same tendency as transfection efficiency. Cytotoxicity (MTT-assay) depended on the cooperation of PEG molecular weight and graft density of PCL-b-PEG chains. With increasing the graft density, cytotoxicity, zeta-potential, affinity with DNA, stability of the polyplexes and CMC-values were reduced strongly and regularly. Increasing the excess of polymer over DNA was shown to result in a decrease of the observed particle size to 100-200 nm.

Citing Articles

Can pulmonary RNA delivery improve our pandemic preparedness?.

Merkel O J Control Release. 2022; 345:549-556.

PMID: 35358609 PMC: 8958776. DOI: 10.1016/j.jconrel.2022.03.039.


Correlating quantitative tumor accumulation and gene knockdown using SPECT/CT and bioluminescence imaging within an orthotopic ovarian cancer model.

Jones S, Douglas K, Shields A, Merkel O Biomaterials. 2018; 178:183-192.

PMID: 29935386 PMC: 6056733. DOI: 10.1016/j.biomaterials.2018.06.014.


Revisiting the value of competition assays in folate receptor-mediated drug delivery.

Jones S, Sarkar A, Feldmann D, Hoffmann P, Merkel O Biomaterials. 2017; 138:35-45.

PMID: 28551461 PMC: 5522709. DOI: 10.1016/j.biomaterials.2017.05.034.


Development of switchable polymers to address the dilemma of stability and cargo release in polycationic nucleic acid carriers.

Cheng Y, Sellers D, Tan J, Peeler D, Horner P, Pun S Biomaterials. 2017; 127:89-96.

PMID: 28284104 PMC: 5382035. DOI: 10.1016/j.biomaterials.2017.02.036.


Polyplex Evolution: Understanding Biology, Optimizing Performance.

Hall A, Lachelt U, Bartek J, Wagner E, Moein Moghimi S Mol Ther. 2017; 25(7):1476-1490.

PMID: 28274797 PMC: 5498806. DOI: 10.1016/j.ymthe.2017.01.024.