| Leamon et all. “Delivery of macromolecules into living cells: A method that exploits folate receptor endocytosis” PNAS, vol. 88, pp. 5572-5576.* |
| Rosowsky et al. “Nucleosides. 1.9-(3′-Alkyl-3′-deoxy-beta-D-ribofuranosyl)adenines as lipophilic analogues of cordycepin. Synthesis and preliminary biological studies” Journal of Medicinal Chemistry, vol. 19, No. 11, pp. 1265-1270, Nov. 1976.* |
| Atherton, E. et al., “The Fluorenylmethoxycarbonyl Amino Protecting Group”, The Peptides, 1987, 9, 1-39. |
| Samukov, V. V. et al., “2-(4-Nitrophenyl) sulfonylethoxycarbonyl (Nse) Group as a Base-Labile α-Amino Protection for Solic Phase Peptide Synthesis”, Tetrahedron Letts., 1994, 35, 7821-7824. |
| Verhart, C.G.J., “New base-labile amino-protective groups for peptide synthesis”, Recl. Trav. Chim. Pays-Bas, 1988, 107, 621-626. |
| Cohen in Oligonucleotides: Antisense Inhibitors of Gene Expression, CRC Press, Inc., Boca Raton, FL, 1989. |
| Ekstein, F. (Ed.), Oligonucleotides and Analogues A Practical Approach, IRL Press, N.Y., 1991. |
| Asseline, U. et al., “Nucleic acid-binding molecules with high affinity and base sequence specificity: Intercalating agents covalently linked to oligodeoxynucleotides”, Proc. Natl. Acad. Sci., 1984, 81, 3297-3301. |
| Beaucage, S.L. et al., “The Functionalization of Oligonucleotides Via Phosphoramidite Derivatives,” Tetrahedron, 1993, 49(10), 1925-1963. |
| Beaucage, S.L. et al., “The Synthesis of Specific Ribonucleotides and Unrelated Phosphorylated Biomolecules by the Phosphoramidite Method,” Tetrahedron, 1993, 49(46), 10441-10488. |
| Beaucage, S.L. et al., “Advances in the Synthesis of Oligonucleotides by the Phosphoramidite Approach”, Tetrahedron, 1992, 48, 2223-2311. |
| Buzayan, J.M. et al., “Satellite tobacco ringspot virus RNA: A subset of the RNA sequence is sufficient for autolytic processing”, Proc. Natl. Acad. Sci. USA, 1986, 83, 8859-8862. |
| Chollet, A., “Selective Attachment of Oligonucleotides to Interleukin 1β and Targeted Delivery to Cells”, Nucleosides & Nucleotides, 1990, 9, 957-966. |
| Corey, D.R. et al., “Sequence-Selective Hydrolysis of Duplex DNA by and Oligonucleotide-Directed Nuclease”, J. Am. Chem. Soc., 1989, 11, 8523-8525. |
| Corey, D.R. et al., “Generation of a Hybrid Sequence-Specific Single-Stranded Deoxyribonuclease”, Science, 1987, 238, 1401-1403. |
| Crooke, S.T. et al., “Pharmacokinetic Properties of Several Novel Oligonucleotide Analogs in mice”, J. Pharmacol. Exp. Therapeutics, 1996, 277, 923-937. |
| Dingwall et al., “Protein Import into the Cell Nucleus”, Ann. Rev. Cell Biol., 1986, 2, 367-390. |
| Dreyer, G.B. et al., “Sequence-specific cleavage of single-stranded DNA: Oligodeoxynucleotide-EDTA•Fe(II)”, Proc. Natl. Acad. Sci., 1985, 82, 968-972. |
| Englisch, U. et al., “Chemically Modified Oligonucleotides as Probes and Inhibitors”, Angew. Chem. Int. Ed. Eng., 1991, 30, 613-629. |
| Forster, A.C. et al., “Self-Cleavage of Virusoid RNA is Performed by the Proposed 55-Nucleotide Active Site”, Cell, 1987, 50, 9-16. |
| Freier, S.M. et al., “The ups and downs of nucleic acid duplex stability: structure-stability studies on chemically-modified DNA:RNA duplexes”, Nucl. Acids Res., 1997, 25, 4429-4443. |
| Guerra, F.I. et al., “Synthetic 6-Glucosyl Phospholipid as a Drug Transport System”, Tetrahedron Letts., 1987, 28, 3581-3584. |
| Haralambidis, J. et al., “Preparation of base-modified nucleosides suitable for non-radioactive label attachment and their incorporation into synthetic oligodeoxynucleotides”, Nucl. Acids. Res., 1987, 15, 4857-4876. |
| Haralambidis, J. et al., “The Solid Phase Synthesis of Oligonucleotides Containing a 3′-Peptide Moeity”, Tetrahedron Letts., 1987, 28, 5199-5202. |
| Jablonski, E. et al., “Preparation of oligodeoxynucleotide—alkaline phosphatase conjugates and their use as hybridization probes”, Nucl. Acids Res., 1986, 14, 6115-6128. |
| Juby, C.D. et al., “Facile Preparation of 3′Oligonucleotide-Peptide Conjugates”, Tetrahedron Letts., 1991, 32, 879-882. |
| Kabanov, A. V., “A new class of antivirals: antisense olgonucleotides combined with a hydrophobic substituent effectively inhibit influenza virus reproduction and synthesis of virus-specific proteins in MDCK cells”, FEBS Letts., 1990, 259, 327-330. |
| Kornberg, A. et al., DNA Replication, 1980, W.H. Freeman & Co., San Francisco, 4-7. |
| Krieg, A.M. et al., “Uptake of Oligodeoxyribonucleotides by Lymphoid Cells Is Heterogeneous and Inducible”, Antisense Res. & Dev., 1991, 1, 161-171. |
| Kroschwitz, J.I., “Polynucleotides”, Concise Encyclopedia of Polymer Science and Engineering, 1990, John Wiley & Sons, New York, 858-859. |
| Lehninger, “The amino acid building blocks of proteins”, Biochemistry, Second Edition, Worth Publishers, Inc., 1975, Ch. 4, 73-77. |
| Lemairte, M. et al., “Specific antiviral activity of a poly(L-lysine)-conjugated oligodeoxyribonucleotide sequence complementary to vesicular stomatitis virus N protein mRNA initiation site”, Proc. Natl. Acad. Sci., 1987, 84, 648-652. |
| Leonetti, J.P. et al., “Biological Activity of Oligonucleotide-Poly(L-lysine) Conjugates: Mechanism of Cell Uptake”, Bioconjugate Chem., 1990, 1, 149-153. |
| Letsinger, R.L. et al., “Cholesteryl-conjugated oligonucleotides: Synthesis, properties and activity as inhibitors of replication of human immunodeficiency virus in cell culture”, Proc. Natl. Acad. Sci.,1989, 86, 6553-6556. |
| Manoharan, M. et al., “Lipidic Nucleic Acids”, Tetrahedron Letts., 1995, 36, 3651-3654. |
| Manoharan M. et al., “Cholic Acid-Oligonucliotide Conjugates for Antisense Applications”, Bioorganic Med. Chem. Letts., 1994, 4, 1053-1060. |
| Manoharan, M. et al., “Chemical Modifications to Improve Uptake and Bioavailability of Antisense Oligonucleotides”, Annals NY Acad. Sciences, 1992, 660, 306-309. |
| Manoharan, M. et al., “Introduction of a Lipophilic Thioether Tether in the Minor Groove of Nucleic Acids for Antisense Applications”, Bioorg. Med. Chem. Letts., 1993, 3, 2765-2770. |
| Manoharan M. et al., “Oligonucleotide Conjugates: Alteration of the Pharmacokinetic Properties of Antisense Agents”, Nucleosides and Nucleotides, 1995, 14, 969-973. |
| Miller, P.S. et al., “A New approach to chemotherapy based on molecular biology and nucleic acid chemistry: Matagen (masking tape for gene expression)”, Anti-Cancer Drug Des., 1987, 2, 117-128. |
| Martin, P., “Ein neuer Zugang zu 2′-O-Alkylribonucleosiden und Eigenschaften deren Oligonucleotide”, Helvetica Chemica Acta, 1975, 78, 486-504 (English summary included). |
| Mishra, R.K. et al., “Improved leishmanicidal effect of phosphorotioate antisense oligonucleotides by LDL-medicated delivery”, Biochim. Et Biophysica, 1995, 1264, 229-237. |
| Nelson, P.S. et al., “Bifunctional oligonucleotide probes synthesized using a novel CPG: support are able to detect single base pair mutations”, Nucl. Acids. Res., 1989, 17, 7187-7195. |
| Nielsen, P.E. et al., “Sequence-Selective Recognition of DNA by Strand Displacement with a Thymine-Substituted Polyamide”, Science, 1991, 254, 1497-1500. |
| Oberhauser, B. et al., “Effective incorporation of 2′-O-methyl-oligonucleotides into liposomes and enhanced cell association through modification with thiocholesterol”, Nucl. Acids Res., 1992, 20, 533-538. |
| Ramirez, F. et al., “Nucleotidophospholipids: Oligonucleotide Derrivatives with Membrane-Recognition Groups”, J. Am. Chem. Soc., 1982, 104, 5483-5486. |
| Saison-Behmoaras, 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. |
| Sanghvi, Y.S., “Heterocyclic Base Modifications in Nucleic acids and their Applications in Antisense Oligonucleotides”, Antisense Research and Applications, Crooke, S.T. et al. (eds.), CRC Press, 1993, Chapter 15, 273-288. |
| Shea, R.G. et al., “Synthesis, hybridization properties and antiviral activity of lipid-oligodeoxynucletide conjugates”, Nucl. Acids Res., 1990, 18, 3777-3783. |
| Svinarchuk, F.P. et al., “Inhibition of HIV proliferation in MT-4 cells by antisense oligonucleotide conjugated to lipophilic groups”, Biochimie, 1993, 79, 49-54. |
| Telser, J. et al., “Synthesis and Characterization of DNA Oligomers and Duplexes Containing Covalently Attached Molecular Labels: Comparison of Biotin, Fluorescein, and Pyrene Labels by Thermodynamic and Optical Spectroscopic Measurements”, J. Am. Chem. Soc., 1989, 111, 6966-6975. |
| Wychowski, C. et al., “The Intranuclear Location of Simian Virus 40 Polypeptides VP2 and VP3 Depends on a Specific Amino Acid Sequence”, J. Virology, 1987, 61, 3862-3869. |
| Yamana, K. et al., “Synthesis and Interactive Properties of an Oligonucleotide with Anthraquinone at the Sugar Frament”, Bioconjugate Chem, 1990, 1, 319-324. |
| Yoneda et al., “Synthetic Peptides Containing a Region of SV40 Large T-Antigen Involved in Nuclear Localization Direct the Transport of Proteins into the Nucleus”, Exp. Cell Res., 1987, 170, 439-452. |
| 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. |
| Zuckerman, R.N. et al., “Site-Selective Cleavage of RNA by a Hybrid Enzyme”, J. Am. Chem. Soc., 1988, 110, 1614-1615. |
| Greene et al., Protective Groups in Organic Synthesis, 2d ed., Chapter 2, John Wiley & Sons, New York, 1991. |
| Habus, I. et al., “A Mild and Efficient Solid-Support Synthesis of Novel Oligonucleotide Conjugates,” Bioconj. Chem., 1998, 9, 283-291. |
| Nomura, Y., et al., “Site-specific introduction of functional groups into phosphodiester oligodeoxynucoleotides and their thermal stability and nuclease-resistance properties,” Nucleic Acids Res., 1997, 25(14), 2784-2791. |
| Wasner, M., et al., “6-aminohexanoyl-linked conjugates of monomeric and trimeric cordycepin,” Helvetica Chimica Acta, 1997, 80, 1061-1072. |