Rojanasakul 1996 Advances Drug Delivery Reviews 18, 115-131. |
Fox 1994 Bio/Technology 12, 128. |
Zhu et al. 1993 Science 261, 1179-1181. |
Simons 1996 ASM News 62(4), 177-179. |
Singleton et al. 1987 in: Dictionary of Microbiology and Molecular Biology (Second Edition) John Wiley and Sons, Chichester, GB, pp. 753-756. |
Genesis Report-Rx, vol. 2, No. 4, Jun. 1993, Genesis Group Asssociates (Publ.). |
Infectious Disease Weekly, 23 Oct. 1995, C. W. Henderson (Publ.). |
H el en and Toulm e, "Specific Regulation Of Gene Expression by Antisense, Sence and Antigene Nucleic Acids," Chemica et Biophysica Acta 1049:99-125 (1990). |
Uhlmann and Peyman, "Antisence Oligonucleotides: A New Therapeutic Principle," Chemical Reviews 90:544-584 (1990). |
Majumdar et al., "Stepwise Mechanism of HIV Reverse Transcriptase: Primer Function of Phosphorothioate Oligodeoxynucleotide," Biochemistry 28:1340-1346 (1989). |
Matsukura et al., "Regulation of Viral Expression of Human Immunodeficiency Virus In Vitro by an Antisense Phosphorothioate Oligodeoxynucleotide Against rev (art/trs) in Chronically Infected Cells," Proc. Natl. Acad. Sci. USA 86:4244-4248 (1989). |
Zuker, "Computer Prediction of RNA Structure," Methods in Enzymology 180:262 (1989). |
Green et al., "In Vitro Genetic Analysis of the Tetrahymena Self-Splicing Intron," Nature 347:406-408 (1990). |
Ellington and Szostak, "In Vitro Selection of RNA Molcules That Bind Specific Ligands," Nature 346:818-822 (1990). |
Bock et al., "Selection of Single-Stranded DNA Molecules That Bind and Inhibit Human Thrombin," Nature 355:564-566 (1992). |
Burke and Berzal-Herranz, "In Vitro Selection and Evolution of RNA: Applications For Catalytic RNA, Molecular Recognitioin, and Drug Discovery," FASEB 7:106-112 (1993). |
Nelson, "Detection of Acridinium Esters by Chemiluminescence," Nonisotopic DNA Probe Techniques, ed. Larry J. Kricka, (San Diego: Academic Press, Inc., 1992) pp. 275-310. |
Schwartz et al., "Cloning and Functional Analysis of Multiply Spliced mRNA Species of Human Immuodeficiency Virus Type I," Journal of Virology 64:2519-2529 (1990). |
Goodchild et al., "Inhibition of Human Immunodeficiency Virus Replication by Antisense Oligodeoxynucleotides," Proc. Natl. Acad. Sci. USA 85:5507-5511 (1988). |
Britten and Davidson, "Hybridization Strategy," in Nucleic Acid Hybridization--A Practical Approach, ed. B.D. Hames and S.J. Higgins, (Washington D.C.: IRL Press 1985) pp. 3-15. |
Tenover, "Diagnostic Deoxyribonucleic Acid Probes for Infectious Diseases," Clinical Microbiology Reviews 1:82-101 (1988). |
Liebhaber et al., "Inhibition of mRNA Translation by Antisense Sequences," Gene Regulation: Biology of Antisense RNA and DNA, eds. R.P. Erickson and J.G. Izant, (New York: Raven Press, Ltd., 1992) 163-174. |
Chatterjee et al., "Dual-Target Inhibition of HIV-1 in Vitro by Means of an Adeno-Associated Virus Antisense Vector," Science 258:1485-1488 (1992). |
Lomelli et al., "Quantitative Assay Based on the Use of Replicatable Hybridization Probes," Clin. Chem. 35(9):1826-1831 (1989). |
Ott and Eckstein, "Protection of Oligonucleotide Primers against Degradation by DNA Polymerase I," Biochemistry 26:8237-8241 (1987). |
Sauvaigo et al., "Standardized Nested Polymerase Chain Reaction-Based Assay for Detection of Human Immunodeficiency Virus Type 1 DNA in Whole Blood Lysates," J. Chem. Microbiology 31(5):1066-1074 (1993). |
Agrawal et al., "Inhibition of human immunodeficiency virus in early infected and chronically infected cells by antisense oligodeoxynucleotides and their phosphorothioate analogues," Proc. Natl. Acad. Sci. USA 86:7790-7794 (1989). |
Ratner et al., "Complete nucleotide sequence of the AIDS virus, HTLV-III," Nature 313:277-284 (1985). |
Morvan et al., "Comparative Evaluation of Seven Oligonucleotide Analogues as Potential Antisense Agents," J. Med. Chem. 36:280-287 (1993). |
Stein and Cheng, "Antisense Oligonucleotide as Therapeutic Agents--Is the Bullet Really Magical?," Science 261:1004-1012 (1993). |
Kinchington et al., "A comparison of gag, pol and rev antisense oligodeoxynucleotides as inhibitors of HIV-1," Antiviral Research 17:53-62 (1992). |
Cantin and Woolf, "Antisense oligonucleotides as antiviral agents: prospects and problems," Trends in Microbiology 1:270-276 (1993). |
Thierry and Dritschilo, "Intracellular availability of unmodified, phosphorothioated and liposomally encapsulated oligodeoxynucleotides for antisense activity," Nucleic Acids Research 20:5691-5698 (1992). |
Lisziewicz et al., "Long-term treatment of human immunodeficiency virus-infected cells with antisense oligonucleotide phosphorothioates," Proc. Natl. Acad. Sci. USA 90:3860-3864 (1993). |