Drug Evaluations by American Medical Association (6th Ed.), pp. 1615-1627 (1986).* |
Nicolau, K.C., et al, “A Novel Strategy for the Solid-Phase Synthesis of Substituted Indolines,” J. Am. Chem. Soc., 122(12), pp. 2966-2967, 2000. |
M. Font, et al, “Indoles and Pyridazino[4,5-b]Indoles as Nonnucleoside Analog Inhibitors of HIV-1 Reverse Transcriptase,” Eur. J. Med. Chem., 30, pp. 963-971, 1995. |
D. L. Romero, et al, J. Med. Chem., 36, pp. 1505-1508, 1993. |
S. D. Young, et al, “2-Heterocyclic Indole-3-Sulfones as Inhibitors of HIV-1 Reverse Transcriptase,” Bioorganic & Medicinal Chemistry Letters, 5(5), pp. 491-496, 1995. |
M. J. Genin, et al, “Synthesis and Bioactivity of Novel Bis(Heteroaryl)Piperazine (BHAP) Reverse Transcriptase Inhibitors: Structure-Activity Relationships and Increased Metabolic Stability of Novel Substituted Pyridine Analogs,” J. Med. Chem., 39, pp. 5267-5275, 1996. |
R. Silvestri, et al, Antiviral Chemistry & Chemotherapy, 9, pp. 139-148, 1998. |
A. Fredenhagen, et al, “Semicochliodinol A and B: Inhibitors of HIV-1 Protease and EGF-R Protein Tyrosine Kinase Related to Asterriquinones Produced by the Fungus Chrysosporium Merdarium,” Journal of Antibiotics, 50(5), pp. 395-401, 1997. |
M. Kato, et al, “New 5-HT3 (Serotonin-3) Receptor Antagonists. IV. Synthesis and Structure-Activity Relationships of Azabicycloalkaneacetamide Derivatives,” Chem. Pharm. Bull., 43(8), pp. 1351-1357, 1995. |
V. Levacher, et al, “Broadening in the Scope of NADH Models by Using Chiral and Non-Chiral Pyrrolo [2,3-b]Pyridine Derivatives,” TETRAHEDRON, 47(3), pp. 429-440, 1991. |