Alper J., “Drug discovery on the assembly line”, Science, 264:1399-1401, 1994. |
Basch et al., “Cell separation using positive immunoselective techniques,” J. Immunol. Meths. 56:269-280 (1983). |
Bayer et al., “New polymer supports for solid-liquid-phase synthesis,” Chem. Pept. Proteins 3: 3-8 (1986). |
Berg et al., “Polystyrene-Grafted Polyethylene: Design of Film and Felt Matrices for Solid-Phase Peptide Synthesis,” Innovation Perspect. Solid Phase Synth. Collect. Pap., Int. Symp., 1st, Epton (ed.), (1990) pp. 453-459. |
Brenner et al., Encoded combinatorial chemistry, Proc. Natl. Acad. Sci. USA 89: 5381-5383 (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). |
Czarnik and Nova, No static at all, Chemistry in Britain, 33(10):39-41 (1996). |
Dave et al., “Sol-gel encapsulation methods for biosensors,” Anal. Chem. 66(22): 1120A-1127A (1994). |
Devlin et al., “Random peptide libraries: A Source of specific protein binding molecules,” Science 249:404-406 (1990). |
Dewitt et al., DIVERSOMERS™ technology: Solid phase synthesis, automation, and integration for the generatin of chemical diversity, Drug Develop Res. 33:116-124 (1994). |
Dower & Fodor, “Chapter 28. The search for molecular diversity (ll): recombinant and synthetic randomized peptide libraries,” Annu. Rep. Med. Chem. 26: 271-280 (1991). |
Dunlap, Ed., “Immobilized Biochemicals and Affinity Chromatography,” Symposium on Affinity Chromatography and Immobilized Biochemicals, Charleston, SC, 1973, Plenum Press, NY (1974). |
Fenwick et al., “Application of the scintillation proximity assay technique to the determination of drugs,” Analytical Proceedings Including Analytical Communications, Mar. 1994, vol. 31 (presented at the Euroanalysis VIII Conference held Sep. 5-11, 1993, University of Edinburgh). |
Gallop, et al., “Applications of combinatorial technologies to drug discovery. 1. background and peptide combinatorial libraries,” J. Med. Chem. 37(9):1233-1251 (1994). |
Gordon 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(1994). |
Houghten, General method for the rapid solid-phase synthesis of large numbers of peptides; Specificity of antigen-antibody interaction at the level of individual amino acids, Natl. Acad. Sci. USA 82: 5131 (1985). |
Houghten et al., “The use of synthetic peptide combinatorial libraries for the identification of bioactive peptides,” BioTechniques 13(3):412-421 (1992). |
Houghten et al., “Generation and use of synthetic peptide combinatorial libraries for basic research and drug discovery,” Nature 354:84-86 (1991). |
Immobilized Enzyme, Antigens, Antibodies and Peptides. Preparation and Characterization, Howard H. Weetall, Ed., Marcel Dekker, Inc., N.Y. (1975). |
Jung et al., “Multiple peptide synthesis methods and their applications,” Angew. Chem. Int. Ed. Engl., 21(4):267-486 (1992). |
Kabat and Mayer, Experimental Immunochemistry, Chapter 40, Equilibrium Dialysis, Charles C. Thomas, Springfield Illinois. (1961) pp. 715-718. |
Kessler, “Peptoids—A new approach to the development of pharmaceuticals,” Angew. Chem. Int. Ed. Engl, 32(4): 543-544 (1993). |
Liskamp, Opportunities for new chemical libraries: Unnatural biopolymers and diversomers, Agnew. Chem. Int. Ed. Engl. 33(6):633-636 (1994). |
Maeji et al., Grafted supports used with the multipin mthod of peptide synthesis, Reactive Polymers 22:203-2121 (1994). |
Martin et al., Measuring diversity: Experimental design of combinatorial libraries for drug discovery, J. Med. Chem. 38:1431 (1995). |
Miles & Hales, “Labelled Antibodies and Immunological Assay Systems,” Nature, 219:186-189 (1968). |
Mjalli and Toyonaga, “Solid support combinatorial chemistry in lead discovery and SAR optimization,” NetSci 1(1) (1995). |
Nicolaou et al., “Radiofrequency combinatorial chmistry,” Agnew. Chem. 34: 2289-2291 (1995). |
Nikolaiev et al., Peptide-encoding for structure determination of nonsequencable polymers within libraries synthesized and tested on solid-phase supports, Peptide Research (1992). |
Rapp et al., “Polystyrene-polyoxyethylene graftcopolymers for high spped peptide syntesis,” Pept., Proc. Eur. Pept. symp., 20th, Jung et al., eds., pp. 199-201 (1989). |
Scott and Craig, “Random peptide libraries,” Bio/Technology 5:40-48 (1994). |
Scott et al., “Random peptide libraries,” Current Biology 5:40-48 (1994). |
Stewart and Young, Solid Phase Peptide Synthesis, 2d Ed., Pierce Chemical Co., pp. 53-73 (1984). |
Wong, “Conjugation of proteins to solid matrices,” Chemistry of Protein Conjugation and Cross Linking, 12:295-317 (1993). |