Beaucage, S. et al., “Advances in the Synthesis of Oligonucleotides by the Phosphoramidite Approach”, Tetrahedron, 1992, 48(12), 2223-2311. |
Burch, R. et al., “Oligonucleotides Antisense to the Interleukin 1 Receptor mRNA Block the Effects of Interleukin 1 in Cultures Murine and Human Fibroblasts and in Mice”, The Journal of Clinical Investigation, Inc., 1991, 88, 1190-1196. |
Celebuski, J. et al., “Synthesis and Utility of a DNA Phosphyrylating Agent Based on 2-(Triphenylsilyl) ethanol”, J. Org. Chem., 1992, 57, 5535-5538. |
Higgins, “Medical Sciences”, PNAS USA, 1993, 90, 9903-9905. |
Honda, S. et al., “2-Diphenylmethylsilylethyl Group as a New Protecting Group of Internucleotidic Phosphates in Oligonucleotide Synthesis”, Tetrahedron Letters, 1981, 2093-2096. |
Iyer, R. et al., “3-H-1, 2-Benzodithiole-3-one 1, 1-Dioxide as an Improved Sulfurizing Reagent in the Solid-Phase Synthesis of Oligodeoxyribonucleoside Phosphorothioates”, J. Am. Chem. Soc., 1990, 112, 1253-1254. |
Iyer, R. et al., “The Automated Synthesis of Sulfur-Containing Oligodeoxyribonucleotides Using 3H-1,2-Benzodithiol-3-one 1,1-Dioxide as a Sulfur-Transfer Reagent”, J. Org. Chem. 1990, 55(15), 4693-4699. |
Kamer, P. et al., “An Efficient Approach Toward the Synthesis of Phosphorothioate Diesters via the Schonberg Reaction”, Tetrahedron Letters 1989, 30(48), 6757-6760. |
Kitajima, I. et al., “Ablation of Transplanted HTLV-I Tax-Transformed Tumors in Mice by Antisense Inhibiton of NF-κB”, Science 1992, 258, 1792-1795. |
March, J., “Advanced Organic Chemistry”, pp. 16-18, 237-239, John Wiley & Sons, New York, 1985. |
Offensperger, W.-B. et al., “In vivo Inhibition of Duck Hepatitis B Virus Replication and Gene Expression by Phosphorothioate Modified Antisense Oligodoxynucleotides”, The EMBO Journal 1993, 12(3), 1257-1262. |
Rao, M.V. et al., “Dibenzoyl Tetrasulphide—A Rapid Sulphur Transfer Agent in the Synthesis of Phosphorothioate Analogues of Oligonucleotides”, Tetrahedron Letters 1992, 33(33), 4839-4842. |
Simons, M. et al., “Antisense c-myb Oligonucleotides Inhibit Intimal Arterial Smooth Muscle Cell Accumulation in vivo”, Nature 1992, 359, 67-70. |
Streitweiser, Jr., A. et al., “Introduction to Organic Chemistry”, pp. 437-440, Macmillan Publishing Co., Inc., New York, 1981. |
Takaku, H. et al., “Use of 1,1,1,3,3,3,-Hexafluoro-2-Propyl Protecting Group in the Synthesis of DNA Fragments via Phosphoramidite Intermediates”, Tetrahedron Letters 1988, 29(1), 81-84. |
Vu, H. et al., “Internucleotide Phosphite Sulfurization with Tetraethylthiuram Disulfide. Phosphorothioate Oligonucleotide Synthesis via phosphoramidite Chemistry”, Tetrahedron Letters 1991, 32(26), 3005-3008. |
Vlassov, V., “Inhibition of Tick-Borne Viral Encephalitis Expression Using Covalently Linked Oligonucleotide Analogs”, in “Oligodeoxynucleotides as Antisense Inhibitors of Gene Expression: Therapeutic Implications”, Jun. 18-21, 1989. Sheraton Potomac Inn, Rockville, MD. |
Wright, P. et al., “Large Scale Synthesis of Oligonucleotides via Phosphoramidite Nucleosides and a High-loaded Polystyrene Support”, Tetrahedron Letters 1993, 34(21), 3373-3376. |
Wolter, A., et al., “Polymer Support Oligonucleotide Synthesis XX: Sysnthesis of Henhectacosa Deoxynucleotide by Use of a Dimeric Phosophoramidite Synthon”, Nucleosides & Nucleotides 1986, 5(1), 65-77. |
Bannwarth, W., “Synthesis of Oligodeoxynucleotides by the Phosphite-Triester Method Using Dimer Units and Different Phosphorous-Protecting Groups”, Helvetica Chimica Acta 1985, 68, 1907-1913. |
Miura, K. et al., “Blockwise Mechanical Synthesis of Oligonucleotides by the Phosphoramidite Method”, Chem. Pharm. Bull. 1987, 35(2), 833-836. |
Kumar, G. et al., “Improvements in Oligodeoxyribonucleotide Synthesis: Methyl N,N-Dialkylphosphoramidite Dimer Units for Solid Support Phosphite Methodology”, J. Org. Chem. 1984, 49, 4905-4912. |
Wyatt, J. et al, “Combinatorially Selected Guanosine-Quartet Structure is a Potent Inhibitor of Human Immunodeficiency Virus Envelope-Mediated Cell Fusion”, PNAS USA 1994, 91, 1356-1360. |
Ravikumar, V.T. et al., “Use of 2-Diphenylmethylsilyethl Group (DPSE) Protecting Group in Oligonucleotide Synthesis via Phosphoramidite Approach”, Bioorg. Med. Chem. Lett., 1993, 3, 2637-2640. |
Ravikumar, V.T. et al., “Synthesis of Oligonucleotides via Phosphoramidite Approach Utilizing 2-diphenylmethylsilyethyl (DPSE) as a Phosphorous Protecting Group”, Tetrahedron, 1994, 50 (3), 9255-9266. |
Koster, H. “Polymer Support Oligodeoxynucleotide Synthesis XX”, Nucleosides, Nucleotides, 1986, 65-77. |
Seliger, “2.4. Large-scale Preparations Combined with Blockwise Phosphotriester Synthesis”, Methods in Molecular Biology: Protocols for Oligonucleotides and Analogs,Editor: Agrawal, 1993, 20, 396-399. |
Ecker, D.J. et al., “Rational Screening of Oligonuceltotides Combinatorial Libraraies for Drug Discovery”, Nucleic Acids Res., 1993, 21, 1853-1856. |
Tanaka, T. et al., “Synthesis of Oligoribonucleotides via the Phosphite_triester Approach on a Polymer Support”, Chem. Pharm Bull., 1986, 34, 4126-4132. |