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AbstractNanofibers of sepiolite, a natural silicate belonging to the clay minerals family, might constitute a potential promising nanocarrier for the non-viral transfer of bio-molecules. We show here that sepiolite nanofibers efficiently bind different types of DNA molecules through electrostatic interactions, hydrogen bonding, cation bridges, and van der Waals forces. Moreover, Fourier-transform infrared spectroscopy identified the external silanol groups as the main sites of interaction with the DNA. Furthermore, as a proof of concept, we show that sepiolite is able to stably transfer plasmid DNA into mammalian cells and that the efficiency can be optimized. Indeed, sonication of sepiolite 100-fold stimulated DNA transfection efficiency. These results open the way to the use of sepiolite-based biohybrids as a novel class of nanoplatform for gene transfer with potential clinical applications.
Static Electricity, Gene Transfer Techniques, Nanofibers, Hydrogen Bonding, CHO Cells, DNA, Article, [SDV] Life Sciences [q-bio], Sonication, Cricetulus, Magnesium Silicates, Cell Line, Tumor, Spectroscopy, Fourier Transform Infrared, Animals
Static Electricity, Gene Transfer Techniques, Nanofibers, Hydrogen Bonding, CHO Cells, DNA, Article, [SDV] Life Sciences [q-bio], Sonication, Cricetulus, Magnesium Silicates, Cell Line, Tumor, Spectroscopy, Fourier Transform Infrared, Animals
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