发明名称 Specification method and apparatus for peptide synthesis and screening
摘要 <p>Method and apparatus for simple and rapid preparation of reusable, addressable surface-immobilized arrays of biomolecules (libraries) used for screening for interaction with any biologically significant target. A special plate having on or in its surface a plurality of discreet functionalized substrate areas, typically in arrays of 10x10 to 400x400, is provided for chemical synthesis or bonding thereon of desired families of biomolecules (e.g. peptides, DNA, RNA, oligosaccharides). In the case of peptides, such as hexapeptides, the resulting permanently hexapeptide-loaded plate is a reusable Addressable Synthetic Peptide Combinatorial Library (ASPCL), in which 1 to 3 (typically two) of the positions in the sequence are uniquely identified by the address location. The preferred plate embodiment employs an HPMP wink of porous polyolefin removably received in holes in the plate. A unique multi-slot block assembly is used to prepare the ASPCLs. The wink carrier plate is also employed with a vacuum block system to assist in washing, deprotection, and probing. In library applications, for example determining peptides which bind to functional proteins (enzymes, receptors, antibodies), the substrate-bound peptides are assembled with several positions consisting of uniformly distributed equimolar mixtures of residues, and 2 separated or sequential positions uniquely identified by their spatial location on the substrate array, the "address". Following identification of the known residues giving the greatest affinity for the arrayed positions in the sequence, optimal binding for the complete peptide sequence is determined by an iterative process replacing formerly mixed positions with known AAs at unique addresses.</p>
申请公布号 AU4844593(A) 申请公布日期 1994.03.29
申请号 AU19930048445 申请日期 1993.09.02
申请人 ARRIS PHARM CORP 发明人 HUDSON DEREK;JOHNSON CHARLES R;GIEBEL LUTZ
分类号 B01D61/18;B01J19/00;B01L3/00;C07K1/04;C40B40/06;C40B40/10;C40B40/12;C40B60/14 主分类号 B01D61/18
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