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US Patent 10480022 Spatially encoded biological assays

Patent 10480022 was granted and assigned to PROGNOSYS BIOSCIENCES, INC. on November, 2019 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
‌
PROGNOSYS BIOSCIENCES, INC.
Current Assignee
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PROGNOSYS BIOSCIENCES, INC.
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10480022
Date of Patent
November 19, 2019
Patent Application Number
16276235
Date Filed
February 14, 2019
Patent Citations
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US Patent 10179932 Methods for high-throughput labelling and detection of biological features in situ using microscopy
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US Patent 10095832 Strategies for high throughput identification and detection of polymorphisms
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US Patent 10030261 Method and product for localized or spatial detection of nucleic acid in a tissue sample
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US Patent 10138509 Method for generating a three-dimensional nucleic acid containing matrix
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US Patent 10023907 High throughput detection of molecular markers based on AFLP and high through-put sequencing
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US Patent 10002316 Spatially addressable molecular barcoding
Patent Citations Received
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US Patent 12129516 Quantitative and automated permeabilization performance evaluation for spatial transcriptomics
0
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US Patent 11492612 Methods of determining a surgical margin and methods of use thereof
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US Patent 11505828 Methods for spatial analysis using RNA-templated ligation
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US Patent 11512308 Nucleic acid library methods
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US Patent 11519033 Method for transposase-mediated spatial tagging and analyzing genomic DNA in a biological sample
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US Patent 12110541 Methods for preparing high-resolution spatial arrays
0
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US Patent 12117439 Compositions and methods for using fixed biological samples
0
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US Patent 11479809 Methods of detecting analytes
...
Patent Primary Examiner
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James Martinell
Patent abstract

The present invention provides assays and assay systems for use in spatially encoded biological assays. The invention provides an assay system comprising an assay capable of high levels of multiplexing where reagents are provided to a biological sample in defined spatial patterns; instrumentation capable of controlled delivery of reagents according to the spatial patterns; and a decoding scheme providing a readout that is digital in nature.

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