Compositions and methods for multiplex biomarker profiling

US9376717B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9376717-B2
Application numberUS-201414577507-A
CountryUS
Kind codeB2
Filing dateDec 19, 2014
Priority dateApr 25, 2011
Publication dateJun 28, 2016
Grant dateJun 28, 2016

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Provided herein are compositions and methods for identifying or quantitating one or more analytes in sample. The composition can comprise an affinity molecule reversibly conjugated to a label moiety via a double-stranded nucleic acid linker or via an adaptor molecule. The affinity molecule and the label moiety can be linked to different strands of the double-stranded nucleic acid linker. Compositions can be used in any biological assays for detection, identification and/or quantification of target molecules or analytes, including multiplex staining for molecular profiling of individual cells or cellular populations. For example, the compositions can be adapted for use in immunofluorescence, fluorescence in situ hybridization, immunohistochemistry, western blot, and the like.

First claim

Opening claim text (preview).

What is claimed is: 1. A composition comprising a plurality of affinity molecules, wherein: (i) each member of the plurality binds a target, wherein each affinity molecule is conjugated via hybridized first and second nucleic acid strands to a label moiety, wherein detectable properties of the label moieties are distinguishable from one another, wherein the targets are distinguishable from one another, wherein the hybridized first nucleic acid strands are distinguishable from one another, wherein members of the plurality of affinity molecules are distinguishable from one another, wherein the affinity molecule is linked to the first nucleic acid strand via an adaptor molecule or via a linker selected from the group consisting of succinimidyl-4-(N-maleimidomethyl)cyclohexane-1-carboxylate (SMCC) linker, sulfo-SMCC linker, succinimidyl-6-hydrazino-nicotinamide (S-HyNic) linker, N-succinimidyl-4-formylbenzamide (S-4FB) linker, bis-aryl hydrazone bond, an amide bond, two amide bonds on a spacer for cross-linking two —NH 2 groups triazole bond from “click” reaction), a phosphodiester linkage, a phosphorothioate linkage, or a combination thereof, and wherein the label moiety is linked to the second nucleic acid strand via an adaptor molecule or via a linker selected from the group consisting of succinimidyl-4-(N-maleimidomethyl)cyclohexane-1-carboxylate (SMCC) linker, sulfo-SMCC linker, succinimidyl-6-hydrazino-nicotinamide (S-HyNic) linker, N-succinimidyl-4-formylbenzamide (S-4FB) linker, bis-aryl hydrazone bond, an amide bond, two amide bonds on a spacer for cross-linking two —NH 2 groups triazole bond from “click” reaction a phosphodiester linkage a phosphorothioate linkage, or a combination thereof; or (ii) each member of the plurality binding a target, wherein each affinity molecule is conjugated to a first single strand nucleic acid molecule that is specifically hybridized to a second single strand nucleic acid molecule, wherein the second single strand nucleic acid molecule is conjugated to a label moiety, such that each affinity molecule is conjugated via hybridized first and second nucleic acid strands to a label moiety, wherein detectable properties of the label moieties are distinguishable from one another, wherein the targets are distinguishable from one another, wherein the first single strand nucleic acid molecules are distinguishable from one another, wherein members of the plurality of affinity molecules are distinguishable from one another, and wherein the affinity molecule is linked to the first single strand nucleic acid molecule via an adaptor molecule or via a linker selected from the group consisting of succinimidyl-4-(N-maleimidomethyl)cyclohexane-1-carboxylate (SMCC) linker, sulfo-SMCC linker, succinimidyl-6-hydrazino-nicotinamide (S-HyNic) linker, N-succinimidyl-4-formylbenzamide (S-4FB) linker, bis-aryl hydrazone bond, an amide bond, two amide bonds on a spacer for cross-linking two —NH 2 groups, triazole bond (from “click” reaction), a phosphodiester linkage, a phosphorothioate linkage, or a combination thereof, and wherein the label is linked to the second single strand nucleic acid molecule via an adaptor molecule or via a linker selected from the group consisting of succinimidyl-4-(N-maleimidomethyl)cyclohexane-1-carboxylate (SMCC) linker, sulfo-SMCC linker, succinimidyl-6-hydrazino-nicotinamide (S-HyNic) linker, N-succinimidyl-4-formylbenzamide (S-4FB) linker, bis-aryl hydrazone bond, an amide bond, two amide bonds on a spacer for cross-linking two —NH 2 groups triazole bond from “click” reaction a phosphodiester linkage, a phosphorothioate linkage, or a combination thereof. 2. A composition comprising a solid support comprising a sample for analysis for the presence of analytes, and a plurality of affinity molecules, each member of the plurality of affinity molecules conjugated to a first single-strand nucleic acid, wherein each member of the plurality of affinity molecules is bound to a different analyte in the sample, and wherein each first single-strand nucleic acid has a different nucleotide sequence, wherein members of the plurality of affinity molecules are distinguishable from one another, and wherein the affinity molecule is linked to the first single-strand nucleic acid via an adaptor molecule or via a linker selected from the group consisting of succinimidyl-4-(N-maleimidomethyl)cyclohexane-1-carboxylate (SMCC) linker, sulfo-SMCC linker, succinimidyl-6-hydrazino-nicotinamide (S-HyNic) linker, N-succinimidyl-4-formylbenzamide (S-4FB) linker, bis-aryl hydrazone bond, an amide bond, two amide bonds on a spacer for cross-linking two —NH 2 groups, triazole bond (from “click” reaction), a phosphodiester linkage, a phosphorothioate linkage, or a combination thereof. 3. The composition of claim 2 , wherein the composition further comprises a plurality of second single strand nucleic acid molecules, each conjugated to a label moiety, wherein each second single strand nucleic acid molecule specifically hybridizes to a first single strand nucleic acid molecule conjugated to a member of the plurality of affinity molecules, such that at least a subset of the plurality of affinity molecules bound to the analytes in the sample is specifically associated with a plurality of label moieties, wherein detectable properties of the label moieties are distinguishable from one another, wherein members of the plurality of second single stand nucleic acid molecules are distinguishable from one another, and wherein the label moiety is linked to the second single strand nucleic acid molecule via an adaptor molecule or via a linker selected from the group consisting of succinimidyl-4-(N-maleimidomethyl)cyclohexane-1-carboxylate (SMCC) linker, sulfo-SMCC linker, succinimidyl-6-hydrazino-nicotinamide (S-HyNic) linker, N-succinimidyl-4-formylbenzamide (S-4FB) linker, bis-aryl hydrazone bond, an amide bond, two amide bonds on a spacer for cross-linking two —NH 2 groups, triazole bond (from “click” reaction), a phosphodiester linkage, a phosphorothioate linkage, or a combination thereof. 4. A method of analyzing a sample for a plurality of analytes, the method comprising, in order: (a) contacting the sample with a plurality of affinity molecules under conditions that permit specific analyte binding by the affinity molecules, wherein each affinity molecule specifically binds a different member of the plurality of analytes, and wherein each affinity molecule is conjugated to a first single strand nucleic acid, such that members of the plurality of affinity molecules become bound to members of the plurality of analytes present in the sample, wherein the first single strand nucleic acids are distinguishable from each other, wherein members of the plurality of affinity molecules are distinguishable from one another, and wherein the affinity molecule is linked to the first single strand nucleic acid via an adaptor molecule or via a linker selected from the group consisting of succinimidyl-4-(N-maleimidomethyl)cyclohexane-1-carboxylate (SMCC) linker, sulfo-SMCC linker, succinimidyl-6-hydrazino-nicotinamide (S-HyNic) linker, N-succinimidyl-4-formylbenzamide (S-4FB) linker, bis-aryl hydrazone bond, an amide bond, two amide bonds on a spacer for cross-linking two —NH 2 groups triazole bond from “click” reaction), a phosphodiester linkage, a phosphorothioate linkage, or a combination thereof; (b) contacting the sample, under conditions that permit specific nucleic acid hybridization, with a first set of second single strand nucleic acid molecules, each conjugated to a label moiety, wherein each second single strand nucleic acid molecule specifically hybridizes to a first single strand nucleic acid molecule conjugated to a member of the plurality of affinity molecules, such that at least a subset of the plurality of affinity molecules bound to members of the plurality of

Assignees

Inventors

Classifications

  • G01N33/588Primary

    with semiconductor nanocrystal label, e.g. quantum dots · CPC title

  • Nucleic acid analysis using immunogens (immunoassay G01N33/53) · CPC title

  • Oligonucleotides as tagging agents for labelling antibodies · CPC title

  • C12Q1/6841Primary

    In situ hybridisation · CPC title

  • Nanoparticles · CPC title

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What does patent US9376717B2 cover?
Provided herein are compositions and methods for identifying or quantitating one or more analytes in sample. The composition can comprise an affinity molecule reversibly conjugated to a label moiety via a double-stranded nucleic acid linker or via an adaptor molecule. The affinity molecule and the label moiety can be linked to different strands of the double-stranded nucleic acid linker. Compos…
Who is the assignee on this patent?
Univ Washington, Univ Washington Ct Commerciali
What technology area does this patent fall under?
Primary CPC classification G01N33/588. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Jun 28 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).