IP Library Assignment 058737/0664
Patent Assignment
Reel/Frame 058737/0664

Change of Name

Recorded: 2022-01-14 Pages: 5
Assignor
Assignee
OXFORD NANOPORE TECHNOLOGIES PLC
EDMUND HALLEY ROAD, GOSLING BUILDING, OXFORD SCIENCE PARK, OXFORD, OX4 4DQ, UNITED KINGDOM
Covered Properties (83)
Methods for Complement Strand Sequencing
Application: 63/190,689 →
Method of Encoding Data on a Polynucleotide Strand
Application: 17/415,010 →
Publication: US 2022/0042967
Pore
Application: 17/291,656 →
Publication: US 2022/0056517
Method for Determining a Polymer Sequence
Application: 17/272,986 →
Publication: US 2022/0213541
Polynucleotide Synthesis Method, Kit and System
Application: 17/260,621 →
Publication: US 2022/0177938
Polynucleotide Synthesis Method, Kit and System
Application: 17/260,615 →
Publication: US 2022/0213537
Polynucleotide Synthesis Method, Kit and System
Application: 17/260,611 →
Publication: US 2021/0388432
Polynucleotide Synthesis Method, System and Kit
Application: 17/057,140 →
Publication: US 2021/0198710
Method of Characterizing a Polynucleotide
Application: 16/972,039 →
Publication: US 2021/0363577
Nanopore Array with Electrode Connectors Protected from Electrostatic Discharge
Application: 17/057,994 →
Publication: US 2021/0300750
Method of Attaching Adaptors to Single-Stranded Regions of Double-Stranded Polynucleotides
Application: 17/057,876 →
Publication: US 2021/0198718
Method for Selectively Adapting a Target Polynucleotide
Application: 17/057,863 →
Publication: US 2021/0198732
Methods of Detecting Nucleic Acid Barcodes
Application: 17/395,895 →
Publication: US 2022/0059187
Polynucleotide Synthesis Method, Kit and System
Application: 16/966,430 →
Publication: US 2022/0177937
Method for Selecting Polynucleotides Based on Enzyme Interaction Duration
Application: 16/960,006 →
Publication: US 2021/0230665
Microfluidic Device
Application: 16/768,642 →
Publication: US 2021/0170403
Analysis of Nanopore Signal Using a Machine-Learning Technique
Application: 16/696,010 →
Publication: US 2020/0176082
Novel Protein Pores
Application: 17/205,054 →
Publication: US 2022/0162264
Novel Protein Pores
Application: 16/624,341 →
Publication: US 2022/0024985
Transmembrane Pore Consisting of Two Csgg Pores
Application: 16/610,895 →
Publication: US 2022/0024994
Machine Learning Analysis of Nanopore Measurements
Application: 16/610,897 →
Publication: US 2024/0370696
Method of Determining the Presence or Absence of a Target Analyte Comprising Using a Reporter Polynucleotide and a Transmembrane Pore
Application: 16/610,891 →
Publication: US 2021/0148903
Methods and Reagents for Synthesising Polynucleotide Molecules
Application: 17/143,318 →
Publication: US 2021/0324436
Protocol for Detecting Interactions Within One or More Dna Molecules Within a Cell
Application: 17/612,610 →
Publication: US 2022/0213546
Methods and Polynucleotides for Amplifying a Target Polynucleotide
Application: 16/412,346 →
Publication: US 2020/0032248
Methods and Systems for Characterizing Analytes Using Nanopores
Application: 16/465,987 →
Publication: US 2019/0352709
Apparatus and Methods for Controlling Insertion of a Membrane Channel into a Membrane
Application: 16/463,617 →
Publication: US 2020/0179920
Pore
Application: 17/602,339 →
Publication: US 2022/0162568
Method
Application: 16/343,580 →
Publication: US 2019/0249231
Method for Nucleic Acid Detection by Guiding Through a Nanopore
Application: 17/361,821 →
Publication: US 2022/0064723
Droplet Interfaces in Electro-Wetting Devices
Application: 16/955,762 →
Publication: US 2021/0008557
Microfluidic Device
Application: 16/315,602 →
Publication: US 2019/0210021
Sensing System and Method of Operation
Application: 17/297,506 →
Publication: US 2022/0001386
Method of Nanopore Sequencing of Concatenated Nucleic Acids
Application: 17/379,931 →
Publication: US 2022/0090192
Method for Modifying a Template Double Stranded Polynucleotide
Application: 16/304,114 →
Publication: US 2019/0194722
Methods of Characterising Target Polynucleotides
Application: 16/304,077 →
Publication: US 2019/0203288
Mutant Pore
Application: 17/384,889 →
Publication: US 2022/0064230
Mutant Pore
Application: 17/194,472 →
Publication: US 2022/0154269
Mutant Pores
Application: 17/215,506 →
Publication: US 2021/0317520
Mutant Pore
Application: 17/511,391 →
Publication: US 2022/0119879
Droplet Interfaces in Electro-Wetting Devices
Application: 17/057,910 →
Publication: US 2021/0205814
Method for Producing a Hetero-Oligomeric Pore Comprising Two Different Monomers in a Specific Stoichiometric Ratio
Application: 15/551,884 →
Publication: US 2018/0095066
Analysis of a Polymer
Application: 15/930,198 →
Publication: US 2021/0079460
Method for Nanopore Rna Characterisation
Application: 17/246,462 →
Publication: US 2023/0012471
Methods for Delivering an Analyte to Transmembrane Pores
Application: 16/902,306 →
Publication: US 2021/0147904
Nanopore-based method and double stranded nucleic acid construct therefor
Application: 16/743,148 →
Publication: US 2020/0291452
Modified Enzymes
Application: 17/500,831 →
Publication: US 2022/0135956
Mutant Csgg Pores
Application: 17/194,821 →
Publication: US 2021/0292376
Modified Nanopores, Compositions Comprising the Same, and Uses Thereof
Application: 16/484,798 →
Publication: US 2020/0010511
Model Adjustment During Analysis of a Polymer from Nanopore Measurements
Application: 15/311,272 →
Publication: US 2017/0091427
Method of Improving the Movement of a Target Polynucleotide with Respect to a Transmembrane Pore
Application: 17/075,017 →
Publication: US 2021/0139972
Method of Target Molecule Characterisation Using a Molecular Pore
Application: 16/993,601 →
Publication: US 2021/0087621
Method for Characterising a Double Stranded Nucleic Acid Using a Nano-Pore and Anchor Molecules at Both Ends of Said Nucleic Acid
Application: 16/417,742 →
Publication: US 2020/0102608
Sample Preparation Method
Application: 16/855,096 →
Publication: US 2020/0318179
Method for Attaching One or More Polynucleotide Binding Proteins to a Target Polynucleotide
Application: 16/540,425 →
Publication: US 2020/0087724
Methods and Apparatus for Forming Apertures in a Solid State Membrane Using Dielectric Breakdown
Application: 16/788,733 →
Publication: US 2020/0179880
Method of Characterizing a Target Ribonucleic Acid (Rna) Comprising Forming a Complementary Polynucleotide Which Moves Through a Transmembrane Pore
Application: 17/397,320 →
Publication: US 2023/0132387
Modified Helicases
Application: 16/893,332 →
Publication: US 2021/0009971
Adaptors for Nucleic Acid Constructs in Transmembrane Sequencing
Application: 16/568,781 →
Publication: US 2020/0002761
Adaptors for Nucleic Acid Constructs in Transmembrane Sequencing
Application: 16/363,444 →
Publication: US 2019/0376132
Adaptors for Nucleic Acid Constructs in Transmembrane Sequencing
Application: 15/906,964 →
Publication: US 2018/0291440
Hairpin Loop Method for Double Strand Polynucleotide Sequencing Using Transmembrane Pores
Application: 17/496,956 →
Publication: US 2022/0127669
Hairpin Loop Method for Double Strand Polynucleotide Sequencing Using Transmembrane Pores
Application: 16/782,350 →
Publication: US 2020/0239950
Lipid Bilayer Sensor System
Application: 16/240,031 →
Publication: US 2019/0242913
Enzyme Stalling Method
Application: 16/243,357 →
Publication: US 2019/0211390
Ssb Method
Application: 17/481,374 →
Publication: US 2022/0145383
Mutant Lysenin Pores
Application: 17/108,536 →
Publication: US 2021/0324020
Modified Helicases
Application: 17/064,329 →
Publication: US 2021/0123032
Analysis of Measurements of a Polymer
Application: 16/245,306 →
Publication: US 2019/0154655
Aptamer Method
Application: 16/916,305 →
Publication: US 2021/0018500
Enzyme Method
Application: 16/902,301 →
Publication: US 2021/0172011
A Method of Operating a Measurement System to Analyze a Polymer
Application: 16/449,272 →
Publication: US 2019/0310242
Method and System of Estimating a Sequence of Polymer Units
Application: 15/487,329 →
Publication: US 2017/0219557
Apparatus for Supporting an Array of Layers of Amphiphilic Molecules and Method of Forming an Array of Layers of Amphiphilic Molecules
Application: 16/404,107 →
Publication: US 2019/0391128
Coupling Method
Application: 17/094,571 →
Publication: US 2021/0180124
Coupling Method
Application: 17/064,633 →
Publication: US 2021/0095337
Coupling Method
Application: 17/064,628 →
Publication: US 2021/0087623
Biochemical Analysis Instrument
Application: 16/374,703 →
Publication: US 2019/0265193
Enzyme-Pore Constructs
Application: 17/355,668 →
Publication: US 2022/0064722
Formation of Layers of Amphiphilic Molecules
Application: 15/905,440 →
Publication: US 2018/0321188
Polynucleotide Modification Methods
Application: 17/509,988 →
Publication: US 2022/0186274
Analysis of a Polynucleotide via a Nanopore System
Application: 17/369,834 →
Publication: US 2022/0064724
Formation of Array of Membranes and Apparatus Therefor
Application: 17/365,517 →
Publication: US 2022/0023819
Related Assignments (25)
Other recorded transfers of the patents in this record — the chain of ownership.
Assignment of Assignor's Interest Jan 30, 2020
From: MASSINGHAM, TIMOTHY LEE
To: OXFORD NANOPORE TECHNOLOGIES LTD.
Reel/Frame 051666/0013 →
Assignment of Assignor's Interest Jun 2, 2020
From: MASSINGHAM, TIMOTHY LEE; HARVEY, JOSEPH EDWARD
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 052810/0117 →
Assignment of Assignor's Interest Nov 5, 2020
From: WATERMAN, DAVID
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 054280/0726 →
Assignment of Assignor's Interest Nov 16, 2020
From: HERON, ANDREW JOHN
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 054372/0182 →
Assignment of Assignor's Interest Mar 3, 2021
From: JAYASINGHE, LAKMAL; WALLACE, ELIZABETH JAYNE; SINGH, PRATIK RAJ; HAMBLEY, RICHARD GEORGE
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 055466/0182 →
Assignment of Assignor's Interest Mar 3, 2021
From: REMAUT, HAN; VAN DER VERREN, SANDER; VAN GERVEN, NANI
To: VIB VZW
Reel/Frame 055466/0428 →
Assignment of Assignor's Interest Mar 3, 2021
From: REMAUT, HAN; VAN DER VERREN, SANDER EGBERT; VAN GERVEN, NANI
To: VRIJE UNIVERSITEIT BRUSSEL
Reel/Frame 055466/0333 →
Assignment of Assignor's Interest Mar 8, 2021
From: HERON, ANDREW JOHN; BOWEN, REBECCA VICTORIA
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 055521/0001 →
Assignment of Assignor's Interest Apr 7, 2021
From: JAYASINGHE, LAKMAL; WALLACE, ELIZABETH JAYNE; SINGH, PRATIK RAJ; HAMBLEY, RICHARD GEORGE
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 055851/0931 →
Assignment of Assignor's Interest Apr 7, 2021
From: REMAUT, HAN; VAN DER VERREN, SANDER; VAN GERVEN, NANI
To: VIB VZW
Reel/Frame 055851/0853 →
Assignment of Assignor's Interest Apr 7, 2021
From: REMAUT, HAN; VAN DER VERREN, SANDER EGBERT; VAN GERVEN, NANI
To: VRIJE UNIVERSITEIT BRUSSEL
Reel/Frame 055851/0891 →
Assignment of Assignor's Interest Apr 8, 2021
From: FORDHAM, DANIEL GEORGE; JAMES, PHILLIP LAURENCE
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 055865/0964 →
Assignment of Assignor's Interest Apr 8, 2021
From: MILTON, JOHN; NAYYAR, SOBIA; RIEDL, JAN; OGAKI, RYOSUKE
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 055866/0135 →
Assignment of Assignor's Interest Apr 8, 2021
From: MILTON, JOHN; NAYYAR, SOBIA; RIEDL, JAN; OGAKI, RYOSUKE
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 055866/0223 →
Assignment of Assignor's Interest Apr 8, 2021
From: MILTON, JOHN; NAYYAR, SOBIA; OGAKI, RYOSUKE; RIEDL, JAN
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 055866/0323 →
Assignment of Assignor's Interest Apr 9, 2021
From: CLARKE, JAMES; WHITE, JAMES; MUSCAT, RICHARD; JOHNSON, JESSICA MARY MAY
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 055874/0516 →
Assignment of Assignor's Interest Apr 15, 2021
From: WATERMAN, DAVID
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 055930/0016 →
Assignment of Assignor's Interest Apr 15, 2021
From: MILTON, JOHN; NAYYAR, SOBIA; RIEDL, JAN; OGAKI, RYOSUKE
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 055930/0124 →
Assignment of Assignor's Interest May 6, 2021
From: REMAUT, HAN
To: VRIJE UNIVERSITEIT BRUSSEL; VLAAMS INSTITUUT VOOR BIOTECHNOLOGIE (VIB) VZW
Reel/Frame 056152/0229 →
Assignment of Assignor's Interest May 6, 2021
From: JAYASINGHE, LAKMAL; WALLACE, ELIZABETH JAYNE; SINGH, PRATIK RAJ; HAMBLEY, RICHARD GEORGE
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 056151/0986 →
Assignment of Assignor's Interest Jun 9, 2021
From: MOODY, PAUL RICHARD
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 056479/0990 →
Assignment of Assignor's Interest Jun 14, 2021
From: BROWN, CLIVE GAVIN; MASSINGHAM, TIMOTHY LEE; REID, STUART WILLIAM
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 056533/0342 →
Assignment of Assignor's Interest Sep 8, 2021
From: RAIMONDEAU, ETIENNE; GRAHAM, JAMES EDWARD; BOWEN, REBECCA VICTORIA
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 057406/0477 →
Assignment of Assignor's Interest Oct 14, 2021
From: JAYASINGHE, LAKMAL; WALLACE, ELIZABETH JAYNE; SINGH, PRATIK RAJ; HAMBLEY, RICHARD GEORGE
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 057788/0116 →
Assignment of Assignor's Interest Oct 20, 2021
From: BROWN, CLIVE GAVIN; GRAHAM, JAMES EDWARD; HERON, ANDREW JOHN
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 057843/0609 →