Bothell, Washington
United States
45
2026-05-28
The entities that hold a legal rights for patent applications filed by inventor Kokoris Mark Stamatios:
Mark Stamatios Kokoris from Bothell, US has applied for patents for these inventions. The list has both pending applications and granted patents:
METHODS AND COMPOSITIONS FOR DNA LIBRARY PREPARATION AND ANALYSIS
#2 | 2025-04-10DPO4 POLYMERASE VARIANTS
#3 | 2025-04-03HIGH THROUGHPUT NUCLEIC ACID SEQUENCING BY EXPANSION
#4 | 2025-03-06ENHANCEMENT OF NUCLEIC ACID POLYMERIZATION BY AROMATIC COMPOUNDS
#5 | 2025-01-16CONCENTRATING A TARGET MOLECULE FOR SENSING BY A NANOPORE
#6 | 2025-01-02DIRECTED EVOLUTION OF ENZYMES BY PLASMID TAGGING IN DROPLETS
#7 | 2024-12-19ENHANCEMENT OF NUCLEIC ACID POLYMERIZATION BY MINOR GROOVE BINDING MOIETIES
#8 | 2024-07-18DP04 POLYMERASE VARIANTS
#9 | 2024-06-13TRANSLOCATION CONTROL FOR SENSING BY A NANOPORE
#10 | 2022-12-29TRANSLOCATION CONTROL ELEMENTS, REPORTER CODES, AND FURTHER MEANS FOR TRANSLOCATION CONTROL FOR USE IN NANOPORE SEQUENCING
#11 | 2022-09-29Concentrating a target molecule for sensing by a nanopore
#12 | 2022-06-16DPO4 polymerase variants
#13 | 2022-04-14ENHANCEMENT OF NUCLEIC ACID POLYMERIZATION BY AROMATIC COMPOUNDS
#14 | 2022-03-10PHOSPHOROAMIDATE ESTERS, AND USE AND SYNTHESIS THEREOF
#15 | 2022-03-03HIGH THROUGHPUT NUCLEIC ACID SEQUENCING BY EXPANSION
#16 | 2022-02-10METHODS, COMPOSITIONS, AND DEVICES FOR SOLID-STATE SYNTEHSIS OF EXPANDABLE POLYMERS FO RUSE IN SINGLE MOLECULE SEQUENCINGS
#17 | 2021-06-03SINGLE MOLECULE NUCLEIC ACID DETECTION BY MISMATCH CLEAVAGE
#18 | 2021-05-20TRANSLOCATION CONTROL FOR SENSING BY A NANOPORE
#19 | 2021-05-13ENHANCEMENT OF NUCLEIC ACID POLYMERIZATION BY MINOR GROOVE BINDING MOIETIES
#20 | 2021-04-15DP04 polymerase variants
#21 | 2021-03-04Enhancement of nucleic acid polymerization by aromatic compounds
#22 | 2020-12-10DP04 polymerase variants
#23 | 2020-01-30Directed evolution of enzymes by plasmid tagging in droplets
#24 | 2020-01-02Translocation control for sensing by a nanopore
#25 | 2019-10-31Phosphoroamidate esters, and use and synthesis thereof
#26 | 2019-03-14DP04 polymerase variants
#27 | 2018-11-22HIGH THROUGHPUT NUCLEIC ACID SEQUENCING BY EXPANSION
#28 | 2018-03-29HIGH THROUGHPUT NUCLEIC ACID SEQUENCING BY EXPANSION AND RELATED METHODS
#29 | 2018-02-15POLYNUCLEOTIDE BINDING PROTEIN SEQUENCING
#30 | 2017-11-02Concentrating a target molecule for sensing by a nanopore
#31 | 2017-06-08SINGLE MOLECULE NUCLEIC ACID SEQUENCING WITH MOLECULAR SENSOR COMPLEXES
#32 | 2017-03-16Translocation control for sensing by a nanopore
#33 | 2017-02-09MULTIPLEXED IDENTIFICATION OF NUCLEIC ACID SEQUENCES
#34 | 2016-07-21High throughput nucleic acid sequencing by expansion
#35 | 2016-05-26Phosphoroamidate esters, and use and synthesis thereof
#36 | 2015-10-08High throughput nucleic acid sequencing by expansion and related methods
#37 | 2014-05-22MULTIPLEXED IDENTIFICATION OF NUCLEIC ACID SEQUENCES
#38 | 2014-05-15Concentrating a target molecule for sensing by a nanopore
#39 | 2013-07-04HIGH THROUGHPUT NUCLEIC ACID SEQUENCING BY EXPANSION
#40 | 2012-04-12HIGH THROUGHPUT NUCLEIC ACID SEQUENCING BY EXPANSION AND RELATED METHODS
#41 | 2012-03-22Multiplexed identification of nucleic acid sequences
#42 | 2011-10-13High throughput nucleic acid sequencing by expansion
#43 | 2011-09-29High throughput nucleic acid sequencing by expansion
#44 | 2010-11-25High throughput nucleic acid sequencing by spacing
#45 | 2009-02-05High throughput nucleic acid sequencing by expansion
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