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Liposomes with asymmetric bilayers produced from inverse emulsions for nucleic acid delivery.
de Matos, Maria B C; Miranda, Bárbara S; Rizky Nuari, Yudha; Storm, Gert; Leneweit, Gero; Schiffelers, Raymond M; Kok, Robbert J.
Affiliation
  • de Matos MBC; a Department of Pharmaceutics , Utrecht Institute for Pharmaceutical Sciences, Utrecht University , Utrecht , The Netherlands.
  • Miranda BS; b ABNOBA GmbH , Pforzheim , Germany.
  • Rizky Nuari Y; a Department of Pharmaceutics , Utrecht Institute for Pharmaceutical Sciences, Utrecht University , Utrecht , The Netherlands.
  • Storm G; a Department of Pharmaceutics , Utrecht Institute for Pharmaceutical Sciences, Utrecht University , Utrecht , The Netherlands.
  • Leneweit G; b ABNOBA GmbH , Pforzheim , Germany.
  • Schiffelers RM; c Laboratory Clinical Chemistry & Haematology, University Medical Center Utrecht , Utrecht , The Netherlands.
  • Kok RJ; a Department of Pharmaceutics , Utrecht Institute for Pharmaceutical Sciences, Utrecht University , Utrecht , The Netherlands.
J Drug Target ; 27(5-6): 681-689, 2019.
Article in En | MEDLINE | ID: mdl-30744482
ABSTRACT
Asymmetrical lipid nanoparticles are interesting nanocarriers for charged molecules, like nucleic acids. They promise control over inner and outer charge. High charge density on the inside is favourable for efficient condensation and charge neutralisation of highly charged biopharmaceuticals, while a neutral or slightly negative outer layer promotes biocompatibility. The main goal of this work was the development and characterisation of asymmetric liposomes, prepared using water-in-oil (w/o) nanoemulsions of phospholipids (PLs) and squalene in a centrifugal field. This method enables the control over the lipid composition of each monolayer. Liposomes were prepared by passing PL w/o nanoemulsions through an oil-water interface previously saturated with PLs. We used N-(7-Nitrobenz-2-Oxa-1,3-Diazol-4-yl)-1,2-Dihexadecanoyl-sn-Glycero-3-Phosphoethanolamine (NBD-PE) or N-(7-Nitrobenz-2-Oxa-1,3-Diazol-4-yl)-1,2-Dihexadecanoyl-sn-Glycero-3- phosphocholine (NBD-PC) as a fluorescent marker for either the inner or outer lipid layer and plasmid DNA (pDNA) as nucleic acid payload. The final liposomes had sizes below 200 nm and polydispersity indexes of 0.3 and had a bilayer asymmetry of 70%, thus shielding the charge of positive PLs in the inner bilayer leaflet. Final formulations were examined using negative staining transmission electron microscopy (TEM). Plasmid encapsulation efficiency of the method was 10-15%. Our results indicate that the w/o nanoemulsion-centrifugation method allows the successful production of liposomes with tailored features for encapsulation of nucleic acid therapeutics.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Nucleic Acids / Emulsions / Nanoparticles / Liposomes Language: En Journal: J Drug Target Journal subject: FARMACOLOGIA Year: 2019 Document type: Article Affiliation country: Netherlands

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Nucleic Acids / Emulsions / Nanoparticles / Liposomes Language: En Journal: J Drug Target Journal subject: FARMACOLOGIA Year: 2019 Document type: Article Affiliation country: Netherlands