Patents by Inventor Robert Batchelor
Robert Batchelor has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 11970785Abstract: This invention relates to methods and materials for multiplexed utilization of collections of functional ligands, particularly to methods and materials for selecting for and/or utilizing particular desirable traits of functional ligands in a multiplexed manner, and more particularly to methods and materials for selecting for and/or utilizing particular structural changes of functional ligands in a multiplexed manner.Type: GrantFiled: August 30, 2021Date of Patent: April 30, 2024Assignee: BASE PAIR BIOTECHNOLOGIES, INC.Inventors: George W. Jackson, Robert Batchelor, Alexander S. Chiu, Rafal Drabek, Deepak Thirunavukarasu, Caitlin Bruns
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Publication number: 20240110237Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules.Type: ApplicationFiled: July 28, 2023Publication date: April 4, 2024Inventors: Jasmine Kaur, Rafal Drabek, George W. Jackson, Robert Batchelor, Alexander Chiu
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Publication number: 20240075361Abstract: A hybrid golf accessory and method of use thereof is described. Embodiments of the hybrid golf accessory can include a drinking vessel and a golf tee guide integrated with the drinking vessel.Type: ApplicationFiled: August 9, 2023Publication date: March 7, 2024Inventors: Nathan Osborne, Robert Batchelor
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Patent number: 11725240Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as opioids and opioid derivatives.Type: GrantFiled: January 19, 2021Date of Patent: August 15, 2023Assignee: BASE PAIR BIOTECHNOLOGIES, INC.Inventors: Jasmine Kaur, Rafal Drabek, George W. Jackson, Robert Batchelor, Alexander Chiu
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Patent number: 11608356Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as antibiotics, such as colistin.Type: GrantFiled: February 22, 2020Date of Patent: March 21, 2023Assignee: BASE PAIR BIOTECHNOLOGIES, INC.Inventors: Robert Batchelor, George W. Jackson, Truong Nguyen, Vinoth Sankarapani
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Publication number: 20220323801Abstract: The disclosed technology includes a fire suppression device including a non-conductive support layer and an intumescent coating. The non-conductive support layer can include a plurality of non-conductive strands arranged to form a plurality of apertures. The intumescent coating can be disposed on at least a portion of the plurality of non-conductive strands. The intumescent coating can be configured to expand to at least partially close a portion of the plurality of apertures upon the intumescent coating being heated to a temperature greater than or equal to a threshold temperature.Type: ApplicationFiled: April 4, 2022Publication date: October 13, 2022Inventors: Douglas Herdman, Robert Batchelor
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Patent number: 11427825Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as drug compounds, such as levamisole and cocaine.Type: GrantFiled: February 28, 2018Date of Patent: August 30, 2022Assignee: Base Pair Biotechnologies, Inc.Inventors: George W. Jackson, Robert Batchelor, Truong Nguyen, Rafal Drabek, Alexander S. Chiu, Deepak Thirunavukarasu, Vinoth Sankarapani
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Publication number: 20210395920Abstract: This invention relates to methods and materials for multiplexed utilization of collections of functional ligands, particularly to methods and materials for selecting for and/or utilizing particular desirable traits of functional ligands in a multiplexed manner, and more particularly to methods and materials for selecting for and/or utilizing particular structural changes of functional ligands in a multiplexed manner.Type: ApplicationFiled: August 30, 2021Publication date: December 23, 2021Inventors: George W. Jackson, Robert Batchelor, Alexander S. Chiu, Rafal Drabek, Deepak Thirunavukarasu, Caitlin Bruns
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Publication number: 20210348226Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as opioids and opioid derivatives.Type: ApplicationFiled: January 19, 2021Publication date: November 11, 2021Inventors: Jasmine Kaur, Rafal Drabek, George W. Jackson, Robert Batchelor, Alexander Chiu
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Patent number: 11111603Abstract: This invention relates to methods and materials for multiplexed utilization of collections of functional ligands, particularly to methods and materials for selecting for and/or utilizing particular desirable traits of functional ligands in a multiplexed manner, and more particularly to methods and materials for selecting for and/or utilizing particular structural changes of functional ligands in a multiplexed manner.Type: GrantFiled: January 30, 2019Date of Patent: September 7, 2021Assignee: Base Pair Biotechnologies, Inc.Inventors: George W. Jackson, Robert Batchelor, Alexander S. Chiu, Rafal Drabek, Deepak Thirunavukarasu, Caitlin Bruns
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Publication number: 20210123056Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as herbicides, such as dicamba.Type: ApplicationFiled: May 3, 2019Publication date: April 29, 2021Inventors: George W. Jackson, Robert Batchelor, Truong Nguyen, Anna Hickey, Caitlin Huddleston, Vinoth Sankarapani
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Patent number: 10941444Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as lipoarabinomannan (LAM).Type: GrantFiled: January 30, 2019Date of Patent: March 9, 2021Assignee: Base Pair Biotechnologies, Inc.Inventors: George W. Jackson, Robert Batchelor, Rafal Drabek, Caitlin Bruns
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Patent number: 10927381Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as molecules used proteins or peptides, such as LL37.Type: GrantFiled: November 7, 2019Date of Patent: February 23, 2021Assignee: Base Pair Biotechnologies, Inc.Inventors: George W. Jackson, Robert Batchelor, Truong Nguyen, Victoria Singer, Garam Lee, Rafal Drabek
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Patent number: 10920228Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as biocide molecules.Type: GrantFiled: January 30, 2019Date of Patent: February 16, 2021Assignee: Base Pair Biotechnologies, Inc.Inventors: George W. Jackson, Robert Batchelor, Alexander S. Chiu, Rafal Drabek, Deepak Thirunavukarasu
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Publication number: 20210041470Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as opioids and opioid metabolites.Type: ApplicationFiled: March 27, 2020Publication date: February 11, 2021Inventors: Jasmine Kaur, Rafal Drabek, George W. Jackson, Robert Batchelor
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Publication number: 20200172906Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as molecules used proteins or peptides, such as LL37.Type: ApplicationFiled: November 7, 2019Publication date: June 4, 2020Inventors: George W. Jackson, Robert Batchelor, Truong Nguyen, Victoria Singer, Garam Lee, Rafal Drabek
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Publication number: 20190382766Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as drug compounds, such as levamisole and cocaine.Type: ApplicationFiled: February 28, 2018Publication date: December 19, 2019Inventors: George W. Jackson, Robert Batchelor, Truong Nguyen, Rafal Drabek, Alexander S. Chiu, Deepak Thirunavukarasu, Vinoth Sankarapani
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Publication number: 20190249245Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as lipoarabinomannan (LAM).Type: ApplicationFiled: January 30, 2019Publication date: August 15, 2019Inventors: George W. Jackson, Robert Batchelor, Rafal Drabek, Caitlin Bruns
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Publication number: 20190242030Abstract: This invention relates to methods and materials for multiplexed utilization of collections of functional ligands, particularly to methods and materials for selecting for and/or utilizing particular desirable traits of functional ligands in a multiplexed manner, and more particularly to methods and materials for selecting for and/or utilizing particular structural changes of functional ligands in a multiplexed manner.Type: ApplicationFiled: January 30, 2019Publication date: August 8, 2019Inventors: George W. Jackson, Robert Batchelor, Alexander S. Chiu, Rafal Drabek, Deepak Thirunavukarasu, Caitlin Bruns
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Publication number: 20190233822Abstract: The present invention relates functional ligands to target molecules, particularly to functional nucleic acids and modifications thereof, and to methods for simultaneously generating, for example, numerous different functional biomolecules, particularly to methods for generating numerous different functional nucleic acids against multiple target molecules simultaneously. The present invention further relates to functional ligands which bind with affinity to target molecules, such as biocide molecules.Type: ApplicationFiled: January 30, 2019Publication date: August 1, 2019Inventors: George W. Jackson, Robert Batchelor, Alexander S. Chiu, Rafal Drabek, Deepak Thirunavukarasu