Microdevices for screening biomolecules
First Claim
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1. A multi-channel sample detection device, comprising(a) a substrate having an upper surface;
- (b) a plurality of open channels formed in or on said substrate adjacent said upper surface, each channel extending between first and second ends and having a bottom wall surface defining a substantially planar immobilization region intermediate the first and second ends;
(c) a transparent cover attached to said substrate and forming with each channel a closed channel having open first and second ends, where the first ends of the channels are linearly aligned so that said channels can each be both independently loaded with a fluid having a fluid surface and containing one or more analytes or simultaneously loaded with said fluid by simultaneously placing said aligned first open ends of said channels in contact with said fluid surface;
(d) a thinfilm having a hydrophilic display surface, and covering each immobilization region, said thinfilm being effective to resist non-specific protein binding; and
, (e) a plurality of immobilization groups for immobilizing selected proteins or peptides or small molecules, said immobilization groups being attached to said thinfilm in each channel;
wherein when said liquid containing said one or more analytes is introduced into said channels to interact with said peptides or proteins or small molecules, such interactions, if any, can be observed through said transparent cover.
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Abstract
Devices for the parallel, in vitro screening of biomolecular activity using miniaturized microfabricated devices are provided. The biomolecules immobilized on the surface of the devices of the present invention include proteins, polypeptides, polynucleotides, polysaccharides, phospolipids, and related unnatural polymers of biological relevance. These devices are useful drug development, functional proteomics and clinical diagnostics and are preferably used for the parallel screening of families of related proteins.
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4 Claims
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1. A multi-channel sample detection device, comprising
(a) a substrate having an upper surface; -
(b) a plurality of open channels formed in or on said substrate adjacent said upper surface, each channel extending between first and second ends and having a bottom wall surface defining a substantially planar immobilization region intermediate the first and second ends;
(c) a transparent cover attached to said substrate and forming with each channel a closed channel having open first and second ends, where the first ends of the channels are linearly aligned so that said channels can each be both independently loaded with a fluid having a fluid surface and containing one or more analytes or simultaneously loaded with said fluid by simultaneously placing said aligned first open ends of said channels in contact with said fluid surface;
(d) a thinfilm having a hydrophilic display surface, and covering each immobilization region, said thinfilm being effective to resist non-specific protein binding; and
,(e) a plurality of immobilization groups for immobilizing selected proteins or peptides or small molecules, said immobilization groups being attached to said thinfilm in each channel;
wherein when said liquid containing said one or more analytes is introduced into said channels to interact with said peptides or proteins or small molecules, such interactions, if any, can be observed through said transparent cover. - View Dependent Claims (2, 3, 4)
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Specification