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US Patent 8481125 Mitigation of biomolecular adsorption with hydrophilic polymer additives

Patent 8481125 was granted and assigned to Advanced Liquid Logic on July, 2013 by the United States Patent and Trademark Office.

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Patent
Patent
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Patent attributes

Current Assignee
Advanced Liquid Logic
Advanced Liquid Logic
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
84811250
Patent Inventor Names
Wayne Po-Wen Liu0
Peter-Patrick De Guzman0
Uichong B. Yi0
Date of Patent
July 9, 2013
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Patent Application Number
119153080
Date Filed
May 18, 2006
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Patent Citations Received
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US Patent 11952618 Integrated multiplex target analysis
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US Patent 11772093 Methods of mechanical microfluidic manipulation
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US Patent 11833516 Digital microfluidic devices and methods
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US Patent 11857969 Digital microfluidics systems and methods with integrated plasma collection device
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US Patent 11857961 Sequencing by synthesis using mechanical compression
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US Patent 11890617 Evaporation management in digital microfluidic devices
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US Patent 11944974 Air-matrix digital microfluidics apparatuses and methods for limiting evaporation and surface fouling
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US Patent 12000847 Instrument for processing cartridge for performing assays in a closed sample preparation and reaction system
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...
Patent Primary Examiner
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Michael Cleveland
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Patent abstract

Molecular adsorption to the microfluidic device surfaces can be passively and actively mitigated by mixing certain hydrophilic polymers (organic polymers with repeating hydrophilic groups—the preferred polymers being amphipathic surfactants—with the sample liquid during or prior to relevant microfluidic operations. Nonionic surfactants such as polyoxyethylene sorbitan monooleate and polyoxyethylene octyl phenyl ether are especially effective. High molecular weight polyethylene polymers are also effective. The hydrophilic polymers appear to prevent binding of the fouling molecules to the microfluidic by occupying the surface sites in place of the fouling molecules or by interacting with the fouling molecules to prevent binding of the fouling molecules the surface. When surface adsorption is thus mitigated, microfluidic devices can readily handle samples containing biomolecules to enable active sample concentration, filtering, washing, transport, mixing and other sample handling operations.

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