Combination hydroxypropylamine library

5766963
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Inventors

Baldwin, John J.
Henderson, Ian
Waksmunski, Frank S.

Application #

592654

Filed

Jan-26-1996

Published

Jun-16-1998

Current US Class

435/4
436/501
436/518
436/523
436/524
436/527
436/528
436/529
436/530
436/531

International Classes

G01N 033/543; G01N 033/544; G01N 033/545; G01N 033/551

Field of Search

435/4 435/7.1 435/7.21 435/7.71 435/7.8 435/7.93 435/7.4 435/7.7 435/7.9 436/501 436/518 436/523 436/524 436/527-531

Assignee

Pharmacopeia, Inc. (Princeton, NJ)

Examiners

Achutamurthy; Ponnathapura

Attorney, Agent or Firm

Heslin & Rothenberg, PC

US Patent References

4383031   Homogeneous che...
5525735   Methods for synthes...
5573905   Encoded combinat...

Referenced by:

View Backward References

Other References

Brenner & Lerner, "Encoded Combinatorial Chemistry", Proc. Nat. Acad. Sci. USA 89, 5381-5383 (1992). Burbaum et al. "A Paradigm for Drug Discovery Employing Encoded Combinatorial Libraries", Proc. Natl. Acad. Sci USA 92, 6027-6031 (1995).

Citation

Cite This Patent

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Abstract
A combinatorial library is disclosed which is represented by Formula ##STR1## wherein: ##STR2## is a solid support; T'-L- is an identifier residue; and -L'-II' is a ligand/linker residue. This library contains hydroxypropylamines of the formula: Aa.sup.1 -Aa.sup.2 -(CH.sub.2 Ar.sup.1)-CH.sub.2 CHOH-CH.sub.2 XR.sup.1II wherein: Aa.sup.1 and Aa.sup.2 is each an amino acid joined to each other through an amide bond; Ar.sup.1 is an aromatic ring system; --CH.sub.2 Ar.sup.1 is attached to N on Aa.sup.2 ; and R.sup.1 is H, C.sub.1-20 alkyl, alkenyl, alkynyl, aryl, heteroaryl, aryl or heteroaryl fused to a 3- or 4-membered moiety to form a non-aromatic second ring, or substituted C.sub.1-20 alkyl, alkenyl, or alkynyl.
 
Claims
What is claimed is:

1. A combinatorial chemical library for biological screening, comprising a plurality of members of the formula: ##STR111## wherein: ##STR112## is a solid support; q is 2-30;

L is a first linker;

L' is a second linker;

T' is a tag; and

together T'-L- form an identifier residue;

II' is an attached ligand of formula

-Aa.sup.1 -Aa.sup.2 - (CH.sub.2 Ar.sup.1)-CH.sub.2 CHOH-CH.sub.2 XR.sup.1

wherein:

Aa.sup.1 and Aa.sup.2 is each an amino acid joined to each other through an amide bond with the provisos that Aa.sup.1 cannot contain a linear chain of 3, 4, or 5 atoms which separate the carboxyl carbonyl from the amino group of Aa.sup.1, and Aa.sup.2 cannot be an .alpha.-amino acid;



Description
CROSS-REFERENCE

Lawn Assay for Compounds That Affect Enzyme Activity or Bind to Target Molecules, U.S. Ser. No. 08/553,056, filed Nov. 3, 1995, is incorporated herein by reference.

All patents and other references cited herein are hereby incorporated by reference.

BACKGROUND OF THE INVENTION

There is interest in methods for the synthesis of large numbers of diverse compounds which can be screened for various possible physiological or other activities. Techniques have been developed in which one adds individual units sequentially as part of the chemical synthesis to produce all or a substantial number of the possible compounds which can result from all the different choices possible at each sequential stage of the synthesis. For these techniques to be successful, it is necessary for the compounds to be amenable to methods by which one can determine the structure of the compounds so made. Brenner and Lerner (PNAS USA 81: 5381-83 (1992)) and WO 93/20242, for example, describe a synthesis wherein oligonucleotides are produced in parallel with and are chemically linked as genetic tags to oligopeptides as the compounds of interest. WO 93/06121 teaches methods for particles-based synthesis of random oligomers wherein identification tags on the particles are used to facilitate identification of the oligomer sequence synthesized. A detachable tagging system is described in Ohlmeyer et al., Proc. Natl. Acad. Sci. USA, 90, 10922-10926, Dec. 1993.
 
  The present invention is an assay for determining glycoprotein IIb/IIIa receptor blockade in whole blood. Agglutinization of small polymeric beads coated...  An analytical apparatus comprises a biosensor device (3) which forms the base of a sample chamber. A stirrer (8) extends into the sample chamber and moves...