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US Patent 6884628 Multifunctional polymeric surface coatings in analytic and sensor devices

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
0
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
0
Patent Number
68846280
Patent Inventor Names
Marcus Textor0
Donald L. Elbert0
Jeffrey A. Hubbell0
Laurence Ruiz-Taylor0
Nicholas D. Spencer0
Rolf Hofer0
Stephanie Finken0
Date of Patent
April 26, 2005
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Patent Application Number
095604720
Date Filed
April 28, 2000
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Patent Citations Received
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US Patent 12128402 Microfluidic cartridge
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US Patent 12128405 Microfluidic valve and method of making same
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US Patent D1029291 Single piece reagent holder
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US Patent 11959126 Microfluidic system for amplifying and detecting polynucleotides in parallel
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Patent Primary Examiner
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Long Le
0
Patent abstract

Multifunctional, polyionic copolymers with molecular architectures and properties optimized for specific applications are synthesized on/or applied to substrate surfaces for analytical and sensing purposes. The coatings are particularly useful for suppression of non-specific interaction, adsorption or attachment of molecular or ionic components present in an analyte solution. Chemical, biochemical or biological groups that are able to recognize, interact with and bind specifically to target molecules in the material containing the analyte to be detected can be coupled to, integrated into, or absorbed to the multifunctional copolymers. These multifunctional copolymer coatings are compatible with a variety of different established methods to detect, sense and quantify the target molecule in an analyte. The multifunctional copolymer coatings typically include brush copolymers based on a polycationic or polyanionic (jointly referred to herein as ‘polyionic’) backbone with side chains that control interaction with the environment, such as poly(ethylene glycol) or poly(ethylene oxide)-based side chains that decrease cellular adhesion, and analyte-specific side chains. They can be used to pattern the surfaces into non-adhesive and specifically adhesive areas by applications of known techniques such as microfluidic or contact printing techniques.

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