Chang, et al., Doexycytidine Deaminase-resistant Stereoisomer is the Active Form of (-)-2′,3′-thiacytidine in the Inhibition of Hepatitis B Virus Replication, Journal of Biological Chemistry, vol. 267(20), 13938-13942 (1992). |
Davisson, et al., Synthesis of Nucleotide 5′-Diphosphates from 5′-O-Tosyl Nucleosides, J. Org. Chem., 52(9), 1794-1801 (1987). |
Du J et al, Synthesis, “Anti-Human Immunodeficiency Virus and Anti-Hepatitis B Virus Activities of Novel Oxaselenolane Nucleosides,” J of Med. Chem., (40)19, 2991-2993 (1997). |
Furman, et al., “The Anti-Hepatitis B Virus Activities, Cytotoxicities, and Anabolic Profiles of the (-) and (+) Enantiomers of cis-5-Fluoro-1-[2-(Hydroxymethyl)-1,3-oxathiolane-5-yl]-Cytosine” Antimicrobial Agents and Chemotherapy, 36(12) 2686-2692 (1992). |
Ho, D.H.W., Distribution of Kinase and deaminase of 1 -D-rabinofuranosylcytosine in tissues of man and mouse. Cancer Res. 33, 2816-2820; (1973). |
Hoard, et al., Conversion of Mono- and Oligodeoxyribonucleotides to 5′-Triphosphates, J. Am. Chem. Soc., 87(8), 1785-1788 (1965). |
Hong, C.I., Nechaev, A., and West, C.R. (1979) Synthesis and antitumor activity of 1 -3-arabinofuranosylcytosine conjugates of cortisol and cortisone. Biochem. Biophys. Rs. Commun. 88, 1223-1229. |
Hong, C.I., Nechaev, A., Kirisits, A.J. Buchheit, D.J. and West, C.R. (1980) Nucleoside conjugates. 6. Synthesis and comparison of antitumor activity of 1-( -D-arabinofuranosyl) cytosine conjugates of corticosteriods and selected lipophilic alcohols. J. Med. Chem. 28, 171-177. |
Ji, Y.H., Monophosphoric Acid Diesters of 7 -Hydroxycholesterol and of Pyrimidine Nucleosides as Potential Antitumor Agents: Synthesis and preliminary Evaluation of Antitumor Activity, J. Med Chem., 33,2264-2270, (1990). |
Hostetler, K.Y., Korba, B. Sridhar, C., Gardener, M., Antiviral activity of phosphatidyl-dideoxycytidine in hepatitis B-infected cells and enhanced hepatic uptake in mice. Antiviral Res. 24, 59-67; (1994). |
R. Jones and N. Bischofberger, Mini Review: Nucleotide prodrugs, Antiviral Research, 27, 1-17 (1995). |
Kataoka, S., Uchida, R. and Yamaji, N. (1991) A convenient synthesis of adenosine 3′, 5′cyclic phosphate (cAMP) benzyl and methyl triesters. Heterocycles 32, 1351-1356. |
Hostetler, K. Y., Richman, D.D., Sridhar, C.N. Felgner, P.L., Felgner, J., Ricci, J., Gerdener, M.F. Selleseth, D.W. and Ellis, M.N., Phosphatidylazidothymidine and phosphatidyl-ddC: Assessment of uptake in mouse lymphoid tissues and antiviral activities in human immunodeficiency virus-infected cells and in rauscher leukemia virus-infected mice. Antimicrobial Agents Chemother. 38 (12), 2792-2797; (1994). |
Kinchington, D., Harvey, J.J., O'Connor, T.J., Jones, B.C.N.M., Devine, K.G., Taylor-Robinson, D., Jeffries, D.J. and McGuigan, C. (1992) Comparison of antiviral effects of zidovudine phosphoramidate and phosphorodiamidate derivatives against HIV and ULV in vitro. Antiviral Chem. Chemother. 3, 107-112. |
Kodama, K., Morozumi, M., Saitoh, K.I., Kuninaka, H., Yoshino, H. and Saneyoshi, M., Antitumor activity and pharmacology of 1--D-arabinofuranosylcytosine-5′-stearylphosphate; an orally active derivative of 1--D-arabinofuranosylcytosine, J. Cancer Res., 80 (Jul. 1989), 679-685. |
Korba and Milman, A cell culture assay for compounds which inhibit hepatitis B virus replication, Antiviral Res., 15:217 1991. |
Kumar, A., Goe, P.L., Jones, A.S. Walker, R.T. Balzarini, J. and De Clercq, E. (1990) Synthesis and biological evaluation of some cyclic phosphoramidate nucleoside derivatives. J. Med. Chem. 33, 2368-2375. |
LeBec, C., and Huynh-dinh, T., Synthesis of lipophilic phosphate triester derivatives of 5-fluorouridine and arabinocytidine as anticancer prodrugs, Tetrahedron Lett. 32, 6553-6556 (1991). |
Lichtenstein, J., Barner, H.D. and Cohen S.S., The metabolism of exogenously supplied nucleotides by Escherichia coli., J. Biol. Chem. 235, 457-465; (1960). |
McDougal, et al., Immunoassay for the Detection and Quanititation of Infectious Human Retrovirus. Lymphadenopathy-Associated Virus (LAV), J. Immun. Meth. 76, 171-183, (1985). |
McGuigan, C. Tollerfield, S.M. and Riley, P.A., Synthesis and biological evaluation of some phosphate triester derivatives of the anti-viral drug Ara. Nucleic Acids Res. 17, 6065-6075; (1989). |
McGuigan, C., Pathirana, R.N., Mahmood, N., Devine, K.G. and Hay, A.J., Aryl phosphate derivatives of AZT retain activity against HIV1 in cell lines which are resistant to the action of AZT. Antiviral Res. 17, 311-321 (1992). |
McGuigan, C., O'Connor, T.J., Nicholls, S.R. Nickson, C. and Kinchington, D., Synthesis and anti-HIV activity of some novel substituted dialkyl phosphate derivatives of AZT and ddCyd., Antiviral Chem. Chemother. 1, 355-360; (1990). |
McGuigan, C., Pathirana, R.N., Choi, S.M., Kinchington, D. and O'Connor, T.J. , Phosphoramidate derivatives of AZT as inhibitors of HIV; studies on the caroxyl terminus. Antiviral Chem. Chemother. 4, 97-101; (1993). |
McGuigan, C., Pathirana, R.N., Balzarini, J. and De Clercq, E. Intracellular delivery of bioactive AZT nucleotides by aryl phosphate derivatives of AZT. J. Med. Chem. 36, 1048-1052 (1993). |
Meyer, R.B., Jr., Shuman, D.A. and Robins, R.K., Synthesis of purine nucleoside 3′,5′-cyclic phosphoramidates. Tetrahedron Lett., 269-272; (1973). |
Namane, A. Goyette, C., Fillion, M.P., Fillion, G. and Huynh-Dinh, T. (1992) Improved brain delivery of AZT using a glycosyl phosphotriester prodrug. J. Med. Chem. 35, 3939-3044. |
Norbeck, Tetrahedron Letters 30 (46), 6246 (1989). |
Ohno, R., Tatsumi, N., Hirano, M., Imai, K. Mizoguchi, H., Nakamura, T., Kosaka, M., Takatuski, K., Yamaya, T., Toyama, K., Yoshida, T., Masaoka, T., Hashimoto, S., Ohshima, T., Kimura, I., Yamada, K. and Kimura, J., Treatment of myelodyspastic syndromes with orally administered. 1--D-rabinofuranosylcytosine-5′-stearylphosphate. Oncology 48, 451-455 (1991). |
Palomino, E., Kessle, D. and Horwitz, J.P., A dihydropyridine carrier system for sustained delivery of 2′,3′dideoxynucleosides to the brain., J. Med. Chem. 32, 622-625; (1989). |
Piantadosi, C., Marasco, C.J., Jr., Morris-Natschke, S.L., Meyer, K.L., Gumus, F., Surles, J.R., Ishaq, K.S., Kucera, L.S. Iyer, N., Wallen, C.A., Piantadosi, S. and Modest, E.J. (1991) Synthesis and evaluation of novel ether lipid nucleoside conjugates for anti-HIV-1 activity. J. Med. Chem. 34, 1408-1414. |
Prisbe, E.J., Martin, J.C., McGee, D.P.C., Barker, M.F., Smee, D.F. Duke, A.E., Matthews, T.R. and Verheyden, J.P.J. (1986) Synthesis and antiherpes virus activity of phosphate and phosphonate derivatives of 9-[(1,3-dihydroxy-2-propoxy)methyl] guanine. J. Med. Chem. 29, 671-675. |
Philpott, M.S., Ebner, J.P., Hoover, E.A., Evaluation of 9-(2-phosphonylmethoxyethyl) adenine therapy for feline immunodeficiency virus using a quantitative polymerase chain reaction, Vet. Immunol. Immunopathol. 35:155-166, (1992). |
Puech, F., Gosselin, G., Lefebvre, I., Pompon, A., Aubertin, A.M. Dirn, A. and Imbach. J.L. (1993) Intracellular delivery of nucleoside monophosphate through a reductase-mediated activation process. Antiviral Res. 22, 155-174. |
Rosowsky, A., Kim, S.H., Ross and J. Wick, M.M., Lipophilic 5′-(alkylphosphate) esters of 1--D-arabinofuranosylcytosine and its N4-acyl and 2.2′-anhydro-3′0-acyl derivatives as potential prodrugs. J. Med. Chem. 25, 171-178; (1982). |
Ryu, E.K., Ross, R.J., Matsushita, T., MacCoss, M., Hong, C.I. and West, C.R, Phospholipid-nucleoside conjugates 3. Synthesis and preliminary biological evaluation of 1--D-arabinofuranosylcytosine 5′diphosphate[-], 2-diacylglycerols. J. Med. Chem. 25, 1322-1329; (1982). |
Saffhill, R. and Hume, W.J., The degradation of 5-iododeoxyurindine and 5-bromoeoxyuridine by serum from different sources and its consequences for the use of these compounds for incorporation into DNA. Chem. Biol. Interact. 57, 347-355; (1986). |
Sastry, J.K., Nehete, P.N., Khan, S., Nowak, B.J., Plunkett, W., Arlinghaus, R.B. and Farquhar, D., Membrane-permeable dideoxyuridine 5′-monophosphate analogue inhibits human immunodeficiency virus infection. Mol. Pharmacol. 41, 441-445; (1992). |
Schinazi, et al., Mutations in retroviral genes associated with drug resistance, International Antiviral News, Vol. 1(6), International Medical Press(1996). |
Schinazi, et al., Antimicrob. Agents Chemother. 34:1061-1067 (1990). |
Schinazi, et al., Antimicrob. Agents Chemother. 32, 1784-1787 (1988). |
Schinazi, et al., Effect of Combinations of Acylovir with Vidarabine or its Monophosphate on Herpes Simplex Viruses in Cell Culture and in Mice, Antimicrobial Agents and Chemotherapy, 22 (3), 499, (1982). |
Schinazi, et al., Selective Inhibition of Human Immunodeficiency Viruses by Racemates and Enantiomers of cis-5-Fluoro-1-[2-(Hydroxymethyl)-1,3-Oxathiolane-5-yl] Cytosine, Antimicrobial Agents and Chemotherapy,36 (11), 2423-2431 (1992). |
Shuto, S., Ueda, S., Imamura, S., Fukukuawa, K. Matsuda, A. and Ueda, T., A facile one-step synthesis of 5′-phosphatidylnucleosides by an enzymatic two-phase reaction. Tetrahedron Lett. 28, 199-202; (1987). |
Wang, S., Montelaro, R., Schinazi, R.R., Jagerski, B. and Mellors, J.W.: Activity of nucleoside and non-nucleoside reverse transcriptase inhibitors (NNRTI) against equine infectious anemia virus (EIAV). First National Conference on Human Retroviruses and Related Infections, Washington, DC, Dec. 12-16, 1993. |
Nageot et. al., Proc. Natl. Acad. Sci. USA, Neurobiology, vol. 80, pp. 2395-2399, Apr. 1983. |