4.6 Article

Effect of small molecule signaling in PepFect14 transfection

期刊

PLOS ONE
卷 15, 期 1, 页码 -

出版社

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0228189

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资金

  1. Swedish Research Council [VR 521-2011-2461, VR 2017-03691]
  2. IMI-COMPACT
  3. Innovative Medicines Initiative Joint Undertaking [115363]
  4. European Union
  5. EFPIA companies
  6. Swedish Cancer Foundation [CAN 2014/259]
  7. European Regional Development Fund through the Center of Excellence in Molecular Cell Engineering [2014-2020.4.01.15-0013]
  8. Estonian Research Council [IUT20-26]
  9. Swedish Research Council [2017-03691] Funding Source: Swedish Research Council

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Cell-penetrating peptides can be used to deliver oligonucleotide-based cargoes into cells. Previous studies have shown that the use of small molecule drugs could be an efficient method to increase the efficacy of delivery of oligonucleotides by cell-penetrating peptides either as targeting agents that can be used in formulation with the cell-penetrating peptide and its cargo or as cell signaling modulators that facilitates the cellular uptake of the treatment. This study presents two aims. The first aim is the identification of small molecule drugs that would induce a synergic effect on the transfection of splice correcting oligonucleotides assisted by PepFect14. The second aim is to identify the mechanisms behind the effect of small molecule drugs modulation of cell-penetrating peptide assisted transfection of oligonucleotides. Through an optimized, high-throughput luciferase assay for short oligonucleotide delivery using cell-penetrating peptides, and the simultaneous addition of a small molecule drug library, we show that three small molecule drugs (MPEP, VU0357121 and Ciproxifan) induced an increase in the transfection efficacy of PepFect14 in complex with a short single-stranded oligonucleotide in HeLa pLuc705 cells. These three drugs are described in the literature to be highly specific for their respective target receptors. However, none of those receptors are expressed in our cell line, indicating a yet non-described pathway of action for these small molecules. We show that the indicated small molecules, without interfering with the particles formed by PepFect14 and the oligonucleotide, interfere via still unidentified interactions in cell signaling, leading to an up-regulation of endocytosis and a higher efficacy in the delivery of short splice correcting oligonucleotides in complex with PepFect14.

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