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Controlling The Mobility Of Oligonucleotides In The Nanochannels Of Mesoporous Silica
Authors:Timo Lebold  Axel Schlossbauer  Katrin Schneider  Lothar Schermelleh  Heinrich Leonhardt  Thomas Bein  Christoph Bräuchle
Affiliation:1. Center for Nanoscience (CeNS) and Center for Integrated Protein, Science Munich (CIPSM), Ludwig‐Maximilians‐Universit?t München, Department of Chemistry, Butenandtstra?e 11, 81377 Munich, Germany;2. Ludwig‐Maximilians‐Universit?t München, Department of Biology, Gro?haderner Stra?e 2, 82152 Planegg‐Martinsried, Germany;3. Center for Nanoscience (CeNS) and Center for Integrated Protein, Science Munich (CIPSM), Ludwig‐Maximilians‐Universit?t München, Department of Biology, Gro?haderner Stra?e 2, 82152 Planegg‐Martinsried, Germany
Abstract:Oligonucleotides used in gene therapy and silencing are fragile compounds that degrade easily in biological environments. Porous biocompatible carrier particles may provide a useful strategy to deliver these therapeutics to their target sites. Development of appropriate delivery vehicles, however, requires a better understanding of the oligonucleotide‐host interactions and the oligonucleotide dynamics inside carrier particles. We investigated template‐free SBA‐15 type mesoporous silica particles and report their loading characteristics with siRNA depending on the surface functionalization of their porous network. We show that the siRNA uptake capability of the particles can be controlled by the composition of the functional groups. Fluorescence recovery after photobleaching measurements revealed size‐dependent mobility of siRNA and double‐stranded DNA oligonucleotides within the functionalized silica particles and provided evidence for the stability of the oligonucleotides inside the pores. Hence, our study demonstrates the potential of mesoporous silica particles as a means for alternative gene delivery in nanomedicine.
Keywords:mesoporous silica particles  fluorescence recovery after photobleaching  siRNA  DNA  oligonucleotide diffusion
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