| Literature DB >> 30233368 |
Fazhan Wang1, Wen Xiao1, Mostafa A Elbahnasawy2, Xingting Bao1, Qian Zheng1, Linhui Gong1, Yang Zhou1, Shuping Yang1, Aiping Fang1, Mohamed M S Farag2, Jinhui Wu1, Xiangrong Song1.
Abstract
Liposomes (LPs) as commonly used mRNA delivery systems remain to be rationally designed and optimized to ameliorate the antigen expn>ression of mRNA vaccine in dendritic cells (DCs). In this study, we synthesized mannose-cholesterol conjugates (MPn-CHs) by click reaction using different PEG units (PEG100, PEG1000, and PEG2000) as linker molecules. MPn-CHs were fully characterized and subsequently used to prepare DC-targeting liposomes (MPn-LPs) by a thin-film dispersion method. MPn-LPs loaded with mRNA (MPn-LPX) were finally prepared by a simple self-assembly method. MPn-LPX displayed bigger diameter (about 135 nm) and lower zeta potential (about 40 mV) compared to MPn-LPs. The in vitro transfection experiment on DC2.4 cells demonstrated that the PEG length of mannose derivatives had significant effect on the expression of GFP-encoding mRNA. MP1000-LPX containing MP1000-CH can achieve the highest transfection efficiency (52.09 ± 4.85%), which was significantly superior to the commercial transfection reagent Lipo 3K (11.47 ± 2.31%). The optimal DC-targeting MP1000-LPX showed an average size of 132.93 ± 4.93 nm and zeta potential of 37.93 ± 2.95 mV with nearly spherical shape. Moreover, MP1000-LPX can protect mRNA against degradation in serum with high efficacy. The uptake study indicated that MP1000-LPX enhanced mRNA expression mainly through the over-expressing mannose receptor (CD206) on the surface of DCs. In conclusion, mannose modified LPs might be a potential DC-targeting delivery system for mRNA vaccine after rational design and deserve further study on the in vivo delivery profile and anti-tumor efficacy.Entities:
Keywords: click reaction; dendritic cell targeting liposomes; linker length; mRNA vaccine; mannose conjugates
Year: 2018 PMID: 30233368 PMCID: PMC6134263 DOI: 10.3389/fphar.2018.00980
Source DB: PubMed Journal: Front Pharmacol ISSN: 1663-9812 Impact factor: 5.810
The retention time and purity of cholesterol derivatives was evaluated by HPLC.
| Peak 1 | Peak 2 | Peak 3 | ||||
|---|---|---|---|---|---|---|
| Time (min) | Purity (%) | Time (min) | Purity (%) | Time (min) | Purity (%) | |
| Compound | 10.493 | 1.996 | – | – | ||
| Compound | 7.14 | 2.9 | 11.557 | 2.204 | ||
| Compound | 7.548 | 1.627 | 11.556 | 1.878 | ||
| Compound | – | – | 10.278 | 8.749 | 13.662 | 91.251 |
| Compound | 10.896 | 2.321 | 13.796 | 6.147 | ||
Formulation component and relative molar content used in the manuscript.
| LPs | MP100-LPs | MP1000-LPs | MP2000-LPs | |
|---|---|---|---|---|
| DOTAP | 50 | 50 | 50 | 50 |
| DOPE | 10 | 10 | 10 | 10 |
| CH | 40 | 35 | 35 | 35 |
| MP100-CH | 0 | 5 | 0 | 0 |
| MP1000-CH | 0 | 0 | 5 | 0 |
| MP2000-CH | 0 | 0 | 0 | 5 |