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Versatile Method for the Site-Specific Modification of DNA with Boron Clusters: Anti-Epidermal Growth Factor Receptor (EGFR) Antisense Oligonucleotide Case.

Katarzyna Ebenryter-OlbinskaDamian KaniowskiMilena SobczakBłażej A WojtczakSławomir JanczakEwelina WielgusBarbara NawrotZbigniew J Leśnikowski
Published in: Chemistry (Weinheim an der Bergstrasse, Germany) (2017)
A general and convenient approach for the incorporation of different types of boron clusters into specific locations of the DNA-oligonucleotide chain based on the automated phosphoramidite method of oligonucleotide synthesis and post-synthetic "click chemistry" modification has been developed. Pronounced effects of boron-cluster modification on the physico- and biochemical properties of the antisense oligonucleotides were observed. The silencing activity of antisense oligonucleotides bearing a single boron cluster modification in the middle of the oligonucleotide chain was substantially higher than that of unmodified oligonucleotides. This finding may be of importance for the design of therapeutic nucleic acids with improved properties. The proposed synthetic methodology broadens the availability of nucleic acid-boron cluster conjugates and opens up new avenues for their potential practical use.
Keyphrases
  • nucleic acid
  • epidermal growth factor receptor
  • tyrosine kinase
  • advanced non small cell lung cancer
  • small cell lung cancer
  • deep learning
  • high throughput
  • climate change
  • cell free
  • circulating tumor
  • single cell