| Literature DB >> 28587106 |
Judith Mayr1, Santiago Grijalvo2,3, Jürgen Bachl4, Ramon Pons5, Ramon Eritja6,7, David Díaz Díaz8,9.
Abstract
Three different ionene polymers with varying quaternary ammonium moieties were used as a proof of concept for the formulation of antisense oligonucleotides, which are capable of inhibiting Renilla luciferase messenger ribonucleic acid (mRNA). Cationic vesicles, consisting of cationic polymer, antisense oligonucleotide (Luc) and non-ionic surfactant polysorbate 80, were investigated regarding their ζ potential, cytotoxicity and transfection efficiency. Deoxyribonucleic acid- (DNA) forming complexes in the presence of cationic vesicles were also investigated in terms of small-angle X-ray scattering (SAXS). The studied cationic vesicles showed very little, if any, toxicity against HeLa cells. Transfection abilities proved to vary strongly depending on the present quaternary ammonium moiety.Entities:
Keywords: antisense oligonucleotide; cationic polymers; cationic vesicles; ionenes; polycations; polyplexes; quaternary ammonium; transfection
Mesh:
Substances:
Year: 2017 PMID: 28587106 PMCID: PMC5485963 DOI: 10.3390/ijms18061139
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1Structures of ionene polymers used in this study with charged diammonium moieties with different structures and chain length.
Figure 2ζ potential of polyplexes at several N/P charge ratios derived from ionene polymers, antisense oligonucleotide and polysorbate 80. (A) DABCO-ionene; (B) C2-ionene; (C) C6-ionene.
Figure 3(A) Scattered X-ray intensity as a function of scattering vector q at 25 °C. The complex for C2-ionene (green) and C6-ionene (blue) are shown together. The scattering pattern produced by the salmon testes DNA (black) is also included as a control. The expected positions of second and third reflexions for hexagonal packing are shown for C6-ionene as arrows; (B) Representative dynamic light scattering DLS measurement of polyplex made of C6:Luc oligonucleotide; (C) Representative cryo-scanning electron microscopy image of polyplexes based on C6-ionene.
Figure 4Normalized cell viability of polyplexes derived from ionenes, antisense oligonucleotide and polysorbate 80. Toxicity of cationic vesicles without forming complexes was also tested. Polyplexes were tested at 60, 120 and 300 nM (concentration of Luc oligonucleotide) with N/P ratios of 2, 4 and 6. Ionene-based polymers (DABCO, C2 and C6, respectively) without forming polyplexes were tested at 0.6, 1.2 and 300 µM, respectively). DABCO-ionene = blue color, C2-ionene = red color, C6-ionene = green color. Each value represents the mean of at least 5 measurements.
Figure 5Normalized gene-specific silencing activities targeting Renilla luciferase mRNA for polyplex formulations. (A) In the absence of fetal bovine serum (FBS), at different N/P ratios at 120 nM and (B) in the presence of FBS at concentrations of 60, 120 and 300 nM. Data are expressed as mean values of three replicates (±SD); * and *** indicate p < 0.05 and p < 0.001, respectively.