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Nucleic Acids Conjugates for Biotechnological Applications

Nucleic Acids Conjugates for Biotechnological Applications

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Life in biological systems is maintained by the cooperative actions of various biomolecules. With the development of chemical and biological technologies related to nucleic acids, the details of the mechanisms of such cooperative actions between nucleic acids and other biomolecules have been elucidated and further applied in various applications. In the papers published in this Special Issue, advanced research works involved in nucleic acid conjugates are reported in wide application fields, such as artificial gene regulation, biomolecular sensing, and therapeutics from leading scientists in nucleic acids chemistry and engineering.

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Keywords

  • abasic site
  • anticancer drug
  • aptamer
  • artificial viral capsid
  • BRET-based biosensor
  • camptothecin derivative
  • catalytic RNA
  • cellular uptake
  • conjugate
  • crosslink
  • cytosine methyltransferase
  • Cytotoxicity
  • DNA
  • DNA aptamer
  • DNA-protein conjugate
  • Drug delivery
  • drug delivery system
  • Encapsulation
  • fluorescent probe
  • fluorescent sensors
  • group I ribozyme
  • Invasion
  • irinotecan
  • Macrophages
  • microRNA
  • mRNA
  • Multiple Sclerosis
  • n/a
  • nanocapsule
  • Nanoparticles
  • NLS
  • nucleic acid binding protein
  • oligonucleotide
  • peptide-DNA conjugate
  • PNA
  • poly(A) tail
  • PUF
  • replication initiation protein
  • repulsive guidance molecule a
  • ribonucleopeptide (RNP)
  • RNA binding protein
  • RNA nanostructure
  • RNA nanotechnology
  • RNA regulation
  • RNA-peptide conjugate
  • RNA-protein complex
  • Schiff base
  • self-assembly
  • small interfering RNA
  • Technology, engineering, agriculture
  • Technology: general issues
  • therapeutic nucleic acid
  • trans-splicing
  • β-annulus peptide

Links

DOI: 10.3390/books978-3-0365-1513-7

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