Full‐length article
Free Access
Polyribonucleotides containing a thiophosphate backbone
80037-2.fp.png)
Citing Literature
Number of times cited: 18
- Zhen Chen and David R. Liu, Nucleic Acid‐Templated Synthesis of Sequence‐Defined Synthetic Polymers, Sequence‐Controlled Polymers, (49-90), (2017).
- Henrik G. Bohr, Irene Shim, Cy Stein, Henrik Ørum, Henrik F. Hansen and Troels Koch, Electronic Structures of LNA Phosphorothioate Oligonucleotides, Molecular Therapy - Nucleic Acids, 8, (428), (2017).
- Peter H. Hagedorn, Robert Persson, Erik D. Funder, Nanna Albæk, Sanna L. Diemer, Dennis J. Hansen, Marianne R. Møller, Natalia Papargyri, Helle Christiansen, Bo R. Hansen, Henrik F. Hansen, Mads A. Jensen and Troels Koch, Locked nucleic acid: modality, diversity, and drug discovery, Drug Discovery Today, 10.1016/j.drudis.2017.09.018, (2017).
- Fritz Eckstein, Phosphorothioates, Essential Components of Therapeutic Oligonucleotides, Nucleic Acid Therapeutics, 24, 6, (374), (2014).
- Nicolas Carrasco, Julianne Caton‐Williams, Gary Brandt, Siming Wang and Zhen Huang, Efficient Enzymatic Synthesis of Phosphoroselenoate RNA by Using Adenosine 5′‐(α‐P‐Seleno)triphosphate, Angewandte Chemie, 118, 1, (100-103), (2005).
- Nicolas Carrasco, Julianne Caton‐Williams, Gary Brandt, Siming Wang and Zhen Huang, Efficient Enzymatic Synthesis of Phosphoroselenoate RNA by Using Adenosine 5′‐(α‐P‐Seleno)triphosphate, Angewandte Chemie International Edition, 45, 1, (94-97), (2005).
- FRITZ ECKSTEIN, Phosphorothioate Oligodeoxynucleotides: What Is Their Origin and What Is Unique About Them?, Antisense and Nucleic Acid Drug Development, 10, 2, (117), (2000).
- A.S. Boutorine, A.G. Venyaminova, M.N. Repkova, Z.A. Sergueyeva and D.V. Pyshnyï, Effect of derivation of ribophosphate backbone and terminal ribophosphate groups in oligoribonucleotides on their stability and interaction with eukaryotic cells, Biochimie, 76, 1, (23), (1994).
- U.Z. Littauer and H. Soreq, 17 Polynucleotide Phosphorylase, Nucleic Acids Part B, 10.1016/S1874-6047(08)60289-9, (517-553), (1982).
- A.S. Jones, Synthetic analogues of nucleic acids — a review, International Journal of Biological Macromolecules, 1, 5, (194), (1979).
- R. Flügel, Th. Godefroy-Colburn, Y. Inoue, Y. Iwanami, K. Miura, S. Nishimura, E. Ohtsuka, M. Tsuboi and T. Uchida, Nucleic Acids, Nucleic Acids, Proteins and Carbohydrates, 10.1016/B978-0-12-460711-8.50006-4, (1-102), (1976).
- D. Dunaway-Mariano, Nucleoside phosphorothioates—I, Tetrahedron, 32, 24, (2991), (1976).
- Z. A. Shomshtein and S. A. Giller, Model analogs of nucleic acids (review), Chemistry of Heterocyclic Compounds, 12, 1, (27), (1976).
- N. Befort, G. Beck, J.P. Ebel and P. Louisot, Inhibition of viral multiplication by homologous methylated ribonucleic acids IV. Subcellular localisation after uptake into fibroblasts and relation between antiviral activity and chain length, Chemico-Biological Interactions, 9, 3, (181), (1974).
- Fred Reynolds, Dezider Grunberger, Josef Pitha and Paula M. Pitha, Inhibition of cell-free protein synthesis by poly(9-vinyladenine), poly(1-vinyluracil), and the corresponding vinyl copolymer, Biochemistry, 11, 17, (3261), (1972).
- Fritz Eckstein and Hans Gindl, Polyribonucleotides Containing a Phosphorothioate Backbone, European Journal of Biochemistry, 13, 3, (558-564), (2005).
- E. Clercq, F. Eckstein and T. C. Merigan, STRUCTURAL REQUIREMENTS FOR SYNTHETIC POLYANIONS TO ACT AS INTERFERON INDUCERS, Annals of the New York Academy of Sciences, 173, 1 Second Confer, (444), (1970).
- Friedrich Cramer, Modified nucleotides as tools in nucleic acid research, Accounts of Chemical Research, 2, 11, (338), (1969).




