Gosselin et al., “Synthesis and biological evaluation of new 5,6-dichorobenzimidazole nucleoside derivatives,” Antiviral Chem. Chemotherapy, vol. 5, pp. 243-256 (1994). |
Revankar et al., The synthesis of 2-chloro-1-(β-D-ribofuranosyl)benzimidazole and certain related derivatives (1), J. Heterocycles, vol. 5, pp. 447-483 (1968). |
Revankar et al., The synthesis of 2-chloro-1-β-D-ribofuranosyl-5,6-dimethylbenzimidazole and certain related derivatives (1), J. Heterocycles, vol. 5, No. 4, pp. 615-620 (1968). |
Gordon et al., “Kinetics of Decay in the Expression of Interferon-Dependent mRNAs Responsible for Resistance to Virus,” Proc. Natl. Acad. Sci. USA, 77(1) pp. 452-456 (1980). |
Devivar et al., “Benzimidazole Ribonucleosides: Observation of an Unexpected Nitration When Performing Non-Aqueous Diazotizations with t-butyl Nitrite,” Biorganic & Medicinal Chem. Letters, 2(9), pp. 1105-1110 (Sep. 1992). |
Tigges et a., “Human CD8+ Herpes Simplex Virus-Specific Cytotoxic T-Lymphocyte Clones Recognize Diverse Viron Protein Antigens,” J. Virology, 66(3), pp. 1622-1634 (1992). |
Devivar et al., “Benzimidazole Ribonucleosides: Design, Synthesis, and Antiviral Activity of Certain 2-(Alkylthio)- and-2-(Benzylthio)-5,6-dichloro-1-(β-D-ribofuranosyl)benzimidazoles,” J. Med. Chem. 37(18), pp. 2942-2949 (Sep. 1994). |
Townsend et al., “Design, Synthesis and Antiviral Activity of Certain 2,5,6-Trihalo-1-(β-D-ribofuranosyl)benzimidazoles,” J. Med. Chem. 38(20), pp. 4098-4105 (Sep. 1995). |
Yankulov et al., “The Transcriptional Elongation Inhibitor 5,6-Dichloro-1-β-D-ribofuranosylbenzimidazole Inhibits Translation Factor IIH-Associated Protein Kinase,” J. Biol. Chem., 270(41), pp. 23922-23925 (Oct. 1995). |
Nassiri et al., “Comparison of Benzimidazole Nucleosides and Ganciclovir on the In Vitro Proliferation and Colony Formation of Human Bone Marrow Progenitor Cells,” British J. Haematology, 93(2), pp. 273-279 (May 1996). |
Gundmundsson et al., “Synthesis and Antiviral Activity of Certain 5'-Modified Analogs of 2,5,6-Trichloro-1-(β-D-ribofuranosyl)benzimidazole,” J. Med. Chem. 40(5), pp. 785-793 (Feb. 1997). |
Zou et al., “Design, Synthesis, and Antiviral Evaluation of 2-Chloro-5,6-dihalo-1-(β-D-ribofuranosyl)benzimidazoles as Potential Agents for Human Cytomegalovirus Infections,” J. Med. Chem. 40(5), pp. 811-818 (Feb 1997). |
Physician's Desk Reference, 52nd Ed., Arky and Sifton (eds.), Medical Economics Co., Montvale, NJ, 1998, pp. 2452-2454 (see “Cytovene”). |
The Merck Index, 11th Ed., Budavari et al., (eds.) Merck & Co., Rahway, NJ, 1989, p. 682. |
Methods of Nucleoside Synthesis. Vorbrueggen, Helmut. Res. Lab., Schering A.-G., Berlin, D-1000/65, Fed. Rep. Ger. NATO Adv. Study Inst. Ser., Ser. A (1979), A26(Nucleoside Analogues: Chem., Biol., Med. Appl.), 35-69. |
Vorbrüggen et al., “Nucleoside Synthesis with Trimethylsilyl Triflate and Perchlorate as Catalysts,” Chem. Ber. 114, pp. 1234-1255 (1981). |
Vorbrüggen et al., “New Catalysts for the Synthesis of Nucleosides,” Angew. Chem. Internat. Edit. 14(6), pp. 421-422 (1974). |
F. Meggio et al, European Journal of Biochemistry, vol. 187, No. 1, Jan. 1990, pp. 89-94, “Ribofuranosyl-benzimidazole derivatives as inhibitors of casein kinase-2 and casein kinase-1”. |
M. Oivanen et al, Nucleosides & Nucleotides, vol. 8, No. 1, 1989, pp. 133-144, “Mechanism for acid-catalyzed hydrolysis of nucleoside and acyclonucleoside analogues of benzimidazole”. |
Bucknall, R.A., Journal Gen. Virology, vol. 1, 1967, pp. 89-99, “The effects of substituted bensimidazoles on the growth of viruses and the nucleic acid metabolism of host cells”. |
Dobrowolska G et al, Biochimica Et Biophysica ACTA, vol. 1080, No. 3, Nov. 1991, pp. 221-226, “Benzimidazole Nucleoside Analogues As Inhibitors of Plant (Maze Seedling) Casein Kinases”. |
F. Seela et al, Helvetica Chimica ACTA, vol. 79, Mar. 20, 1996, pp. 488-498, “Synthesis of 4-substituted1H-benzimidazole 2'-deoxyribunucleosides and utility of the 4-nitro compound as universal base”. |
Dawson, W.O. & C. Boyd, Phytopathology, vol. 77, No. 3, 1987, pp. 477-480, “Modifications of nucleic acid precursors that inhibit plant virus modification”. |