| Literature DB >> 28336871 |
Fatin M Nawwab Al-Deen1, Sue D Xiang2, Charles Ma3, Kirsty Wilson4, Ross L Coppel5, Cordelia Selomulya6, Magdalena Plebanski7.
Abstract
DNA vaccines ofEntities:
Keywords: MSP119; antibody; hyaluronic acid; immune response; magnetic gene vector; malaria DNA vaccine; superparamagnetic iron oxide nanoparticles (SPIONs)
Year: 2017 PMID: 28336871 PMCID: PMC5333015 DOI: 10.3390/nano7020030
Source DB: PubMed Journal: Nanomaterials (Basel) ISSN: 2079-4991 Impact factor: 5.076
Summary of properties of different magnetic gene vector configurations.
| Test Conditions | Buffer Conditions | Formulation Configurations | ||
|---|---|---|---|---|
| 1st Configuration (SPIONs/PEI/DNA/HA) | 2nd Configuration (SPIONs/PEI/DNA + HA) | 3rd Configuration (SPIONs/PEI + DNA + HA) | ||
| Size (nm) (with the increase % of charge ratio HA:PEI) | water | 100–300 | 100–300 | 400–200 |
| NaCl | 1000–500 | >1000 | 500–2500 | |
| RPMI | 600–200 | 500–100 | 400–1600 | |
| RPMI + 10% FCS | 150–40 | 150–40 | 180–70 | |
| Charges (with the increase % of charge ratio HA:PEI, reduced the positive charges) | water | ~32 mV to ~−25 mV | ~32 mV to ~−25 mV | ~29 mV |
| NaCl | ~14 mV to ~−10 mV | ~9 mV to ~−10 mV | ~17 mV to ~2 mV | |
| RPMI | ~8 mV to ~−12 mV | ~8 mV to ~−15 mV | ~12 mV to ~−5 mV | |
| RPMI + 10% FCS | increase the positive charge (~−18 mV to ~−10 mV) | increase the positive charge (~−18 mV to ~−10 mV) | increase the positive charge (~−16 mV to ~−8 mV) | |
| DNA retardation (with the increase % of charge ratio HA:PEI) | water | >25% DNA released | partial DNA disassembly, but no free DNA | no DNA release or disassembly |
| NaCl | No release of DNA | No release of DNA | No release of DNA | |
| RPMI | No release of DNA | No release of DNA | No release of DNA | |
| RPMI + 10% FCS | partial DNA disassembly | partial DNA disassembly | no DNA release or disassembly | |
| DNA binding | 5% of charge ratio HA:PEI | 96% ± 3% | 94% ± 1% | 99% ± 0.5% |
| 100% of charge ratio HA:PEI | 95% ± 2% | 93% ± 3% | 99% ± 1% | |
| Stability against extracellular environment | + | +++ | ++ | |
| Stability against nuclease | + | +++ | ++ | |
Abbreviations—SPIONs: superparamagnetic iron oxide nanoparticles; PEI: polyethylenimine; HA: hyaluronic acid; FCS: foetal calf serum
The impact of molecular weight (MW) of HA and the HA:PEI ratio on particle uptake and regulation of dendritic cells (DCs) (for particle configuration: SPIONs/PEI/DNA + HA).
| HA Molecular Weight (MW) | HA:PEI Ratio | |
|---|---|---|
| Efficiency of particle uptake | increase with higher MW | increase with higher ratio |
| Impact of external magnetic field on uptake efficiency | increase with lower MW formulation | increase with lower ratio formulation |
| CD86 expression | increase with higher MW | increase with higher ratio |
| Major histocompatibility complex I (MHC I) expression | MHC I upregulation only observed in 100% HA under magnetic field | no upregulation at lower ratio either with or without magnetic field |
| Major histocompatibility complex II (MHC II) expression | MHC II upregulation only observed in 100% high MW HA under magnetic field | no upregulation at lower ratio either with or without magnetic field |
Figure 1Antibody responses induced by the different magnetic gene complexes compared via different routes of administration. BALB/c mice (n = 5/group) were immunised 3 times (3 weeks apart) with SPIONs/PEI/DNA + HA, SPIONs/PEI/DNA, or naked DNA via intraperitoneal (i.p.) and intramuscular (i.m.) administration (naked DNA via i.p. only), with or without the application of an external magnetic field. Two weeks after the final immunisation (day 56), sera were collected and pooled from each group, and measured for total antigen-specific IgG production by ELISA assay, and antibody titres were calculated (see Methods section). Data represented as antibody titre mean ± SD of 2 individual experiments. Statistical significance was designated as *** p < 0.001, **** p < 0.0001, ((w/M) with magnet, (wo/M) without magnet).
Figure 2IgG subclasses induced by the SPIONs/PEI/DNA + HA complexes in vivo. BALB/c mice (n = 5/group) were immunised 3 times (3 weeks apart) with either SPIONs/PEI/DNA + HA, SPIONs/PEI/DNA, or naked DNA, via i.p. and i.m. administration (naked DNA via i.p. only), with or without the application of an external magnetic field. Two weeks after the final immunisation (day 56), sera from each mouse were collected and measured for antigen-specific IgG1 (A), IgG2a (B), and IgG2b (C) production by ELISA assay. Data represented as antibody titre mean ± SD (n = 5 mice). Statistical analysis was performed using one-way analysis of variance (ANOVA) and Tukey’s multiple comparison tests. Statistical significance was designated as ** p < 0.01, *** p < 0.001, **** p < 0.0001, ((w/M) with magnet, (w/o M) without magnet).
Figure 3Dendritic cell activation in spleen after injection with SPIONs/PEI/DNA + HA complexes via i.p. or i.m. administration (naked DNA via i.p. only), with or without the application of a magnetic field. Mice (BALB/c) were injected once via i.p. or i.m. route of injection. Forty-eight hours after injection, mice were sacrificed, spleens were harvested, and the levels (%) of CD86 marker in splenic DCs were assessed by flow cytometry. Data are presented as mean percentage of CD86-positive DCs ± SD for each group of treatment (n = 3 mice/group). Statistical analysis was performed via t-tests, * p ≤ 0.05.
Figure 4Antigen-specific T cell responses induced by the SPIONs/PEI/DNA + HA complexes in vivo. BALB/c mice (n = 5/group) were immunised 3 times (3 weeks apart) with SPIONs/PEI/DNA + HA or naked DNA, via i.p. and i.m. administration, with or without the application of an external magnetic field. Two weeks after the final immunisation (day 56), mice were humanely sacrificed, and splenocytes were harvested and assayed for antigen-specific T cell responses, measured by the induction of IFN-γ, IL-4, and IL-17 cytokine production, upon stimulation with the recall antigen (recombinant EcPyMSP119) in ELISpot assays. All data expressed as mean of spot-forming units (SFU)/million cells ± SD. (A) IFN-γ; (B) IL-4; (C) IL-17 responses. Statistical significance was designated as * p ≤ 0.05, ** p < 0.01, **** p < 0.0001.