Greene and Wuts. Protective Groups in Organic Synthesis, 2nd ed., pp. 309-397, 1991.* |
Cheng et al. “Novel Solution Phase Strategy . . .” J. Am. Chem. Soc., vol. 118, pp. 2567-2573, Mar. 1996.* |
Cathala et al. “Macrobicyclic and Macrotricyclic Tetralactams . . .” Tet. Lett., vol. 35, No. 12, pp. 18633-1866. 1994.* |
Anderson et al., “Analytical Techniques in Combinatorial Chemistry: MAS CH Correlation in Solvent-Swollen Resin”, J. Org. Chem., 60:2650 (1995). |
Backes et al., “Carbon—Carbon Bond-Forming Methods on Solid Support. Utilization of Kenner's ‘Safety-Catch’Linker” J. Am. Chem. Soc., 116:11171-11172 (1994). |
Bayer et al., “Kinetic Studies of the Liquid Phase Peptide Synthesis”, J. Am. Chem. Soc., 96(23):7333-7336 (1974). |
Bayer et al., “Liquid Phase Synthesis of Peptides”, Nature 237:512-513 (1972). |
Bayer et al., “Automatically Programmed Synthesizer For the Liquid Phase Synthesis”, PEPTIDES: Chemistry, Structure and Biology, Proceedings of the Fourth Annual Peptide Symposium 425-432 (1975). |
Berger et al. “An Antidiabetic Thiazolidinedione Potentiates Insulin Stimulation of Glycogen Synthase in Rat Adipose Tissue”, Endocrinology 137(5):1984-1990 (1996). |
Bonora et al., “PEG-Supported Synthesis of Cyclic Oligodeoxyribonucleotides”, Nucleosides and Nucleotides, 12:21-23 (1993). |
Bonora et al., “HELP (High Efficiency Liquid Phase) New Oligonucleotide Synthesis on Soluble Polymeric Support”, Nucleic Acids Res., 8(11):3155-3159 (1990). |
Bonora et al., “Large-Scale, Peg-Supported DNA Synthesis”, Nucleosides and Nucleotides, 10(1-3):269-273 (1991). |
Brummel et al.,, “A Mass Spectrometric Solution to the Address Problem of Combinatorial Libraries”, Science 264:399-401 (Apr. 15, 1994). |
Bunin et al., “A General and Expedient Method for the Solid-Phase Synthesis of 1,4-Benzodiazepine Derivatives”, J. Am. Chem. Soc., 114:10997-10998 (1992). |
Chen et al., “‘Analogous’ Organic Synthesis of Small-Compound Libraries: Validation of Combinatorial Chemistry in Small-Molecule Synthesis”, J. Am. Chem. Soc. 116:2661-2662 (1994). |
Cheng et al., “Design and Synthesis of Novel Cyclic RGD-Containing Peptides as Highly Potent and Selective Integrin αIIbβ3 Antagonists”, J. Med. Chem. 37(1):1-8 (Jan. 7, 1994). |
Chu et al., “Free Solution Identification of Candidate Peptides from Combinatorial Libraries by Affinity Capillary Electrophoresis/Mass Spectrometry”, J. Am. Chem. Soc., 117:5419-5420 (1995). |
Clark-Lewis et al., “Structure-Activity Relationships of Interleukin-8 Determined Using Chemically Synthesized Analogs”, J. Biol. Chem. 266(34):23128-23134 (1991). |
Egner et al., “Solid Phase Chemistry: Direct Monitoring by Matrix-Assisted Laser Desorption/Ionization Time of Flight Mass Spectrometry. A Tool for Combinatorial Chemistry”, J. Org. Chem. 60:2652-2653 (1995). |
Fitch et al., “High-Resolution 1H NMR in Solid-Phase Organic Synthesis”, J. Org. Chem. 59:7955-7956 (1994). |
Gallop et al., “Applications of Combinatorial Technologies to Drug Discovery. 2. Combinatorial Organic Synthesis, Library Screening Strategies, and Future Directions”, J. Med. Chem. 37(10):1385-1401 (May 13, 1994). |
Hobbes Dewitt et al., “‘Diversomers’: An approach to nonpeptide, nonoligomeric chemical diversity”, Proc. Natl. Acad. Sci. U.S.A. 90:6909-6913 (Aug. 1993). |
Horuk, “Molecular properties of the chemokine receptor family”, TIPS 15:159-165 (May 1994). |
Janda, “Tagged versus untagged libraries: Methods for the generation and screening of combinatorial chemical libraries”, Proc. Natl. Acad. Sci. U.S.A. 91:10779-10785 (Nov. 1994). |
Krepinsky et al., “Polymer-Supported Solution Synthesis of Oligosaccharides”, J. Am. Chem. Soc. 113:5095-5097 (1991). |
Look et al., “Methods for Combinatorial Organic Synthesis: The Use of Fast 13C NMR Analysis for Gel Phase Reaction Monitoring”, J. Org. Chem. 59:7588-7590 (1994). |
Metzger et al., “Ion-Spray Mass Spectrometry and High-Performance Liquid Chromatography—Mass Spectrometry of Synthetic Peptide Libraries”, Angew. Chem., Int. Ed. Engl. 32(6):894-896 (1993). |
Moser et al., “Interleukin-8 Antagonists Generated by N-terminal Modification”, J. Biol. Chem. 268(10):7125-7128 (1993). |
Pavia et al., “The Generation of Molecular Diversity”, Bioorg. Med. Chem. 3(3):387-396 (1993). |
Peterson, “A Simple Approach to Small Molecule Synthetic Libraries for Drug Discovery and Directed Chemical Analoguing”, Exploiting Molecular Diversity: Small Molecule Libraries for Drug Discovery, Conference —La Jolla, CA (Jan. 23-25, 1995). |
Pirrung et al., “Preparation and Screening against Acetylcholinesterase of a Non-Peptide ‘Indexed’ Combinatorial Library”, J. Am. Chem. Soc. 117:1240-1245 (1995). |
Rajarathnam et al., “1H NMR Studies of Interleukin 8 Analogs: Characterization of the Domains Essential for Function” Biochem 33:6623-6630 (1994). |
Ruoslahti, “Integrins”, Clin. Invest. 87:1-5 (1991). |
Ruoslahti et al., “New Perspectives in Cell Adhesion: RGD and Integrins”, Science 238:491-497 (1987). |
Singh et al., “Chemistry and Biological Activity of Thiazolidinones”, Chem. Rev. 81:175-203 (1981). |
Smith et al., “Synthesis and Biological Evaluation of a Library Containing Potentially 1600 Amides/Esters. A Strategy for Rapid Compound Generation and Screening.”, Bioorg. Med. Chem. Lett. 4(24):2821-2824 (1994). |
Stevanovic et al., “Natural and Synthetic Peptide Pools: Characterization by Sequencing and Electrospray Mass Spectrometry” Bioorg. Med. Chem. Lett. 3(3):431-436 (1993). |
Terrett et al., “Combinatorial Synthesis —The Design of Compound Libraries and their Application to Drug Discovery”, Tetrahedron 51(30):8135-8173 (1995). |
Weller et al., “Fibrinogen receptor antagonists —a novel class of promising antithrombotics”, Drugs of the Future 19(5):461-476 (1994). |
Youngquist et al.,, “Matrix-assisted Laser Desorption Ionizatin for Rapid Determination of the Sequences of Biologically Active Peptides Isolated from Support-bound Combinatorial Peptide Libraries”, Rapid Communications In Mass Spectrometry 8:77-81 (1994). |