4.6 Article

Application of Magnetic Nanoparticles Coated with Crosslinked Zwitterionic Poly(ionic liquid)s for the Extraction of Oligonucleotides

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MATERIALS
卷 14, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/ma14123146

关键词

antisense oligonucleotides; magnetic nanoparticles; poly(ionic liquid)s; magnetic dispersive solid-phase extraction; serum samples

资金

  1. Nicolaus Copernicus University in Torun in the competition Grants4NCUStudents under the Initiative of Excellence-NCU Research University program
  2. National Science Centre (Cracow, Poland) under Sonata Bis project [2016/22/E/ST4/00478]

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The magnetic nanoparticles coated with zwitterionic poly(ionic liquid)s were used for dispersive solid-phase extraction of oligonucleotides. Different modes of adsorption were studied and the material containing acetic fragments was selected for the final procedure.
Magnetic nanoparticles coated with zwitterionic poly(ionic liquid)s were applied for dispersive solid-phase extraction of oligonucleotides. The materials were synthesized by miniemulsion copolymerization of ionic liquids and divinylbenzene on magnetic nanoparticles. The functional monomers contain a positively charged imidazolium ring and one of the anionic groups: derivatives of acetate, malonate, or butyl sulfonate ions. Adsorption of unmodified DNA oligonucleotide on obtained materials was possible in ion-exchange (IE) and hydrophilic interactions (HI) mode. The adsorption in IE was possible at low pH and was almost complete. The adsorption in HI mode required the usage of appropriate addition of organic solvent but did not provide full adsorption. Studies on the desorption of the analytes included determining the impact of ammonium acetate concentration and pH and organic solvents addition on the recovery. The material containing acetic fragments as an anionic group was selected for the final procedure with the use of 10 mM ammonium acetate (pH = 9.5)/methanol (50/50, v/v) as an elution solution. The magnetic dispersive solid-phase extraction procedure was tested for the oligonucleotides with various modifications and lengths. Moreover, it was applied to extract DNA oligonucleotide and its synthetic metabolites from enriched human plasma without any pre-purification, with recoveries greater than 80%.

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