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1.
Mol Pharm ; 12(3): 716-30, 2015 Mar 02.
Article in English | MEDLINE | ID: mdl-25634573

ABSTRACT

Gene delivery targeting mitochondria has the potential to transform the therapeutic landscape of mitochondrial genetic diseases. Taking advantage of the nonuniversal genetic code used by mitochondria, a plasmid DNA construct able to be specifically expressed in these organelles was designed by including a codon, which codes for an amino acid only if read by the mitochondrial ribosomes. In the present work, gemini surfactants were shown to successfully deliver plasmid DNA to mitochondria. Gemini surfactant-based DNA complexes were taken up by cells through a variety of routes, including endocytic pathways, and showed propensity for inducing membrane destabilization under acidic conditions, thus facilitating cytoplasmic release of DNA. Furthermore, the complexes interacted extensively with lipid membrane models mimicking the composition of the mitochondrial membrane, which predicts a favored interaction of the complexes with mitochondria in the intracellular environment. This work unravels new possibilities for gene therapy toward mitochondrial diseases.


Subject(s)
Gene Transfer Techniques , Genes, Mitochondrial , Quaternary Ammonium Compounds , Alkenes/chemistry , Fluorescence Polarization , Gene Expression , Green Fluorescent Proteins/biosynthesis , Green Fluorescent Proteins/genetics , HeLa Cells , Humans , Membrane Lipids/chemistry , Plasmids/administration & dosage , Plasmids/genetics , Quaternary Ammonium Compounds/chemistry , Recombinant Proteins/biosynthesis , Recombinant Proteins/genetics , Surface-Active Agents/chemistry
2.
Eur J Pharm Biopharm ; 89: 347-56, 2015 Jan.
Article in English | MEDLINE | ID: mdl-25513958

ABSTRACT

Gemini surfactants have been extensively used for in vitro gene delivery. Amino acid-derived gemini surfactants combine the special aggregation properties characteristic of the gemini surfactants with high biocompatibility and biodegradability. In this work, novel serine-derived gemini surfactants, differing in alkyl chain lengths and in the linker group bridging the spacer to the headgroups (amine, amide and ester), were evaluated for their ability to mediate gene delivery either per se or in combination with helper lipids. Gemini surfactant-based DNA complexes were characterized in terms of hydrodynamic diameter, surface charge, stability in aqueous buffer and ability to protect DNA. Efficient formulations, able to transfect up to 50% of the cells without causing toxicity, were found at very low surfactant/DNA charge ratios (1/1-2/1). The most efficient complexes presented sizes suitable for intravenous administration and negative surface charge, a feature known to preclude potentially adverse interactions with serum components. This work brings forward a new family of gemini surfactants with great potential as gene delivery systems.


Subject(s)
DNA/chemistry , DNA/genetics , Quaternary Ammonium Compounds/chemistry , Serine/chemistry , Surface-Active Agents/chemistry , Amides/chemistry , Amines/chemistry , Cell Line, Tumor , Chemistry, Pharmaceutical/methods , Esters/chemistry , Gene Transfer Techniques , Genetic Therapy/methods , HeLa Cells , Humans , Lipids/chemistry , Transfection/methods
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