Agrawal, et al., Protocols for Oligonucleotide Conjugates, Eds., Humana Press, New Jersey, 1994, vol. 26, pp. 1-72. |
Arnott, S. et al., “Optimised Parameters for A-DNA and B-DNA”, Biochem. & Biophys. Res. Comm., 1972, 47, 1504-1510 (Issue No. 6). |
Baker, B.F. et al., “2′-O-(2-Methoxy)ethyl-modified Anti-intercellular Adhesion Molecule 1 (ICAM-1) Oligonucleotides Selectively Increase the ICAM-1 Translation Initiation Complex in Human Umbilical Vein Endothelial Cells”, J. Biol. Chem., 1997, 272, 11994-12000 (May 2, 1997). |
Beaucage, S.L., et al., “Deoxynucleoside Phosphoramidites—A New Class of Key Intermediates for Deoxypolynucleotide Synthesis”, Tetrahedron Letts., 1981, 22, 1859-1862 (Issue No. 20). |
Beaucage, S.L. et al., “Advances in the Synthesis of Oligonucleotides by the Phosphoramidite Approach”, Tetrahedron, 1992, 48, 2223-2311. |
Caruthers, M.H., “Synthesis of Oligonucleotides and Oligonucleotide Analogues”, Oligonucleotides: Antisense Inhibitors of Gene Expression, 1989, Chapter 1, Cohen, J.S. (Ed.), CRC Press, Boca Raton, FL, 7-24. |
Christensen, L.F. et al., “Specific Chemical Synthesis of Ribonucleotide O-Benzyl Ethers”, J. Org. Chem., 1972, 37, 3398-3401 (Issue No. 22). |
Coull, J.M. et al., “Synthesis and Characterization of a Carbamate-Linked Oligonucleoside”, Tetrahedron Letts., 1987, 28, 745-748 (Iss. No. 7). |
Cook, P.D., “Medicinal chemistry of antisense oligonucleotides—future opportunities”, Anti-Cancer Drug Design, 1991, 6, 585-607. |
Dagle, J. et al., “Targeted degradation of mRNA in Xenopus oocytes and embryos directed by modified oligonucleotides: studies of An2 and cyclin in embryogenesis”, Nucl. Acids Res., 1990, 18, 4751-4757 (Issue No. 16). |
Dagle, J. et al., “Pathways of Degradation and Mechanism of Action of Antisense Oligonucleotides in Xenopus laevis Embryos”, Antisense Res. Dev., 1991, 1, 11-20. |
Dagle, J.M. et al., “Physical properties of oligonucleotides containing phosphoramidite-modified internucleoside linkages”, Nucl. Acids Res., 1991, 19, 1805-1810 (Issue No. 8). |
Dean, N.M. et al., “Inhibition of protein kinase C-α Expression in Human A549 Cells by Antisense Oligonucleotides Inhibits Induction of Intercellular Adhesion Molecule 1 (ICAM-1) mRNA by Phorbol Esters”, J. Biol. Chem., 1994, 269, 16416-16424 (Issue No. 23, Jun. 10, 1994). |
Eder, P.S. et al., “Ribonuclease H from K562 Human Erythroleukemia Cells”, J. Biol. Chem., 1991, 266, 6472-6479 (Issue No. 10, Apr. 5, 1991). |
Gryaznov, S. et al., “Stabilization of DNA:RNA Duplexes by Substitution of 2′-deoxyadenosine with 2′-deoxy2-aminoadenosine”, Tetrahedron Letts., 1994, 35, 2489-2492 (Issue No. 16). |
Guinosso, C.J. et al., “Synthesis and Biophysical and Biological Evaluation of 2′-Modified Antisense Oligonucleotides”, Nucleosides & Nucleotides, 1991, 10, 259-262 (Issues 1-3). |
Guschlbauer, W., et al., “Nucleoside conformation is determined by the electronegativity of the sugar substituent”, Nuc. Acids. Res., 1980, 8, 1421-1433 (Iss. No. 6). |
Hewitt, J.M. et al., “Structural Determination of Silicon-Containing Oligonucleotides by 1H−29Si Long-Range Heteronuclear Multiple Quantum Correlation NMR Spectroscopy”, 1992, 11, 1661-1666 (Issue No. 9). |
Iyer, R.P. et al., “3H-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. |
Izatt, R.M. et al., “Proton Ionization from Adenosine”, J. Am. Chem. Soc., 1965, 87, 2760-2761 (Issue No. 12, Jun. 20, 1965). |
Krolikiewicz, K., et al., “The Synthesis of 2-Fluorpurine Nucleosides”, Nucleosides & Nucleotides, 1994, 13, 673-678 (Issues 1-3). |
Manoharan, M. et al., “Novel Functionalization of the Sugar Moiety of Nucleic Acids for Multiple Labeling in the Minor Groove”, Tetrahedron Letts., 1991, 32, 7171-7174 (Issue No. 49). |
Martin, P., “Ein neuer Zugang zu 2′-O-Alkylribonucleosiden und Eigenschaften deren Oligonucleotide”, Helvetica Chemical Acta, 1995, 78, 486-504. |
Mertes, M.P. et al., “Synthesis of Carbonate Analogs of Dinucleosides. 3′-Thimidinyl 5′-Thymidinyl Carbonate, 3′-Thymidinyl 5′-(5-Fluoro-2′-deoxyuridinyl) Carbonate, and 3′-(5-Fluoro-2′-deoxyuridinyl) 5′-Thymidinyl Carbonate”, J. Med. Chem., 1969, 12, 154-157 (Jan., 1969). |
Monia, B.P. et al., “Evaluation of 2′-Modified Oligonucleotides Containing 2′-Deoxy Gaps as Antisense Inhibitors of Gene Expression”, J. Biol. Chem., 1993, 268, 14514-14522 (Issue No. 19, Jul. 5, 1993). |
Mungall, W.S. et al., “Carbamate Analogues of Oligonucleotides”, J. Org. Chem., 1977, 42, 703-706 (Issue No. 4). |
Musicki, B. et al., “Synthesis of Carbohydrate Sulfonates and Sulfonate Esters”, J. Org. Chem., 1990, 55, 4231-4233 (Jul. 6, 1990). |
Ohtsuka, E., et al., “Recognition by restriction endonuclease EcoRI of Deoxyoctanucleotides containing modified sugar moieties”, European J. Biochem., 1984, 139, 447-450. |
Reynolds, R.C. et al., “Synthesis of Thymidine Dimers Containing Internucleoside Sulfonate and Sulfonamide Linkages”, J. Org. Chem., 1992, 57, 2983-2985 (Issue No. 11). |
Saison-Behomoaras, T. et al., “Short modified antisense oligonucleotides directed against Ha-ras point mutation induce selective cleavage of the mRNA and inhibit T24 cells proliferation”, EMBO J., 1991, 10, 1111-1118 (Issue No. 5). |
Sambrook, J. et al., “Labeling of Synthetic oligonucleotides by Phosphorylation with Bacteriophage T4 Polynucleotide Kinase”, Molecular Cloning: A Laboratory Manual, 1989, Cold Spring Harbor Laboratory Press, 11.31-11.32. |
Shibahara, S., et al., “Inhibition of human immunodeficiency virus (HIV-1) replication by synthetic oligo-RNA derivatives”, Nuc. Acids. Res., 1989, 17, 239-252 (Issue No. 1). |
Sood, A. et al., “Boron-Containing Nucleic Acids. 2. Synthesis of Oligodeoxynucleoside Boranophosphates”, J. Am. Chem. Soc., 1990, 112, 9000-9001. |
Stirchak, E.P. et al., “Uncharged stereoregular nucleic acid analogs: 2. Morpholino nucleoside oligomer with carbamate internucleoside linkages”, Nucl. Acids Res., 1989, 17, 6129-6134 (Issue No. 15). |
Stirchak, E.P. et al., “Uncharged Stereoregular Nucleic Acid Analogs. I. Synthesis of a Cytosine-Containing Oligomer with Carbamate Internucleoside Linkages”, J. Org. Chem., 1987, 52, 4202-4206 (Issue No. 19). |
Takaku, H. et al., “Synthesis of Oligoribonucleotides Using 4-Methoxybenzyl Group as a New Protecting Group of the 2′-Hydroxyl Group of Adenosine”, Chem. Letts., 1982, 189-192. |
Vasseur, J.J. et al., “Oligonucleosides: Synthesis of a Novel Methylhydroxylamine-linked Nucleoside Dimer and Its Incorporation into Antisense Sequences”, J. Am. Chem. Soc., 1992, 114, 4006-4007. |
Wang, H. et al., “Solid Phase Synthesis of Neutral Oligonucleotide Analogues”, Tetrahedron Letts., 1991, 32, 7385-7388 (Issue No. 50). |
Yano, J., et al., “A Simple Method of the Preparation of 2′-O-Methyladenosine”, Biochim.Biophys. Acta, 1980, 629, 178-183. |
Zhang, Z., et al., “Uptake of N-(4′-pyridoxyl)amines and release of amines by renal cells: A model for transporter-enhanced delivery of bioactive compounds”, Proc. Natl. Acad. Sci., 1991, 88, 10407-10410 (Dec., 1991). |
Zhong,Y.L. et al., “Efficient and Facile Glycol Cleavage Oxidation Using Improved Silica Gel-Supported Sodium Metaperiodate”, J. Org. Chem., 1997, 62, 2622-2624 (Issue No. 8). |