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公开(公告)号:US20230065693A1
公开(公告)日:2023-03-02
申请号:US17947984
申请日:2022-09-19
Applicant: Element Biosciences, Inc.
Inventor: Sinan ARSLAN , Molly HE , Michael PREVITE , Ramreddy TIPPANA , Hua YU , William LIGHT , Junhua ZHAO
IPC: C12Q1/6874 , C12Q1/6806
Abstract: The present disclosure provides compositions and methods that employ the compositions for conducting nucleic acid sequencing workflows, where the workflows include library preparation, immobilization and amplification of the library molecules to form immobilized template molecules, and sequencing the template molecules. In some embodiments, the compositions comprise reagents used to conduct nucleic acid sequencing workflows.
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公开(公告)号:US20210387184A1
公开(公告)日:2021-12-16
申请号:US17218027
申请日:2021-03-30
Applicant: Element Biosciences, Inc.
Inventor: Minghao GUO , Leon Zilun ZHANG , Chunhong ZHOU , Matthew KELLINGER , Michael PREVITE , Sinan ARSLAN , Molly HE , Huizhen MAH , Lei SUN
IPC: B01L3/00 , C12Q1/6874 , C12N15/10 , C12Q1/6806 , G01N21/64
Abstract: Flow cell devices, cartridges, and systems are described that provide reduced manufacturing complexity, lowered consumable costs, and flexible system throughput for nucleic acid sequencing and other chemical or biological analysis applications. The flow cell device can include a capillary flow cell device or a microfluidic flow cell device.
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公开(公告)号:US20210123098A1
公开(公告)日:2021-04-29
申请号:US17144945
申请日:2021-01-08
Applicant: ELEMENT BIOSCIENCES, INC.
Inventor: Michael PREVITE , Molly HE , Junhua ZHAO , Hui Zhen MAH , Chunhong ZHOU , Sinan ARSLAN , Matthew KELLINGER , Lorenzo BERTI , Steve CHEN
IPC: C12Q1/6869 , C12Q1/6841
Abstract: Provided are methods and systems for analyzing nucleic acids in a biological sample in a manner that retains the spatial and/or cellular origin of the nucleic acids within the biological sample. Compositions and kits are also provided that enable the methods and systems of the instant disclosure.
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公开(公告)号:US20200347443A1
公开(公告)日:2020-11-05
申请号:US16543351
申请日:2019-08-16
Applicant: Element Biosciences, Inc.
Inventor: Sinan ARSLAN , Molly HE , Michael PREVITE
IPC: C12Q1/6834 , C12Q1/6832 , C12Q1/6806 , B01J19/00
Abstract: Nucleic acid hybridization buffer formulations and uses thereof are described that yield improvements in hybridization specificity, rate, and efficiency. The buffer formulation composition includes a target nucleic acid; at least one organic solvent having a dielectric constant in the range of no greater than 115; and a pH buffer system, wherein the target nucleic acid is attached to the surface via hybridization to a surface bound nucleic acid tethered to the surface, and wherein the hybridization of the target nucleic acid and surface bound nucleic acid has a high stringency and annealing rate.
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25.
公开(公告)号:US20250019760A1
公开(公告)日:2025-01-16
申请号:US18654808
申请日:2024-05-03
Applicant: Element Biosciences, Inc.
Inventor: William LIGHT , Hua YU , Junhua ZHAO , Su ZHANG , Samantha SNOW , Sinan ARSLAN , Matthew KELLINGER , Marco TJIOE , Scott IM , James GHADIALI , Michael KIM , Hermes TAYLOR , Michael PREVITE , Jake LEVIEUX , Ramreddy TIPANNA , Molly HE
IPC: C12Q1/6874 , C12Q1/44 , C12Q1/6806 , C12Q1/6834 , C12Q1/6876
Abstract: The present disclosure provides compositions comprising enzyme-based reagents, and methods using the enzyme-based reagents, for nucleic acid sequencing. The enzyme-based reagents efficiently remove sequencing read products from a first sequenced region of a template molecule, thereby reducing residual signals in a second sequenced region on the same template molecule.
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公开(公告)号:US20230296592A1
公开(公告)日:2023-09-21
申请号:US18202246
申请日:2023-05-25
Applicant: Element Biosciences, Inc.
Inventor: Michael PREVITE , Molly HE , Junhua ZHAO , Hui Zhen MAH , Chunhong ZHOU , Sinan ARSLAN , Matthew KELLINGER , Lorenzo BERTI , Steve Xiangling CHEN
IPC: G01N33/53 , C12Q1/6874 , G01N33/58
CPC classification number: G01N33/5308 , C12Q1/6874 , G01N33/582
Abstract: Multivalent binding compositions including a particle-nucleotide conjugate having a plurality of copies of a nucleotide attached to the particle are described. The multivalent binding compositions allow one to localize detectable signals to active regions of biochemical interaction, e.g., sites of protein-protein interaction, protein-nucleic acid interaction, nucleic acid hybridization, or enzymatic reaction, and can be used to identify sites of base incorporation in elongating nucleic acid chains during polymerase reactions and to provide improved base discrimination for sequencing and array based applications.
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公开(公告)号:US20230038526A1
公开(公告)日:2023-02-09
申请号:US17695494
申请日:2022-03-15
Applicant: Element Biosciences, Inc.
Inventor: Sinan ARSLAN , Molly HE , Michael PREVITE
IPC: C12Q1/6834 , C12Q1/6832 , B01J19/00 , C12Q1/6806
Abstract: Nucleic acid hybridization buffer formulations and uses thereof are described that yield improvements in hybridization specificity, rate, and efficiency. The buffer formulation composition includes a target nucleic acid; at least one organic solvent having a dielectric constant in the range of no greater than 115; and a pH buffer system, wherein the target nucleic acid is attached to the surface via hybridization to a surface bound nucleic acid tethered to the surface, and wherein the hybridization of the target nucleic acid and surface bound nucleic acid has a high stringency and annealing rate.
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公开(公告)号:US20220403463A1
公开(公告)日:2022-12-22
申请号:US17377279
申请日:2021-07-15
Applicant: Element Biosciences, Inc.
Inventor: Sinan ARSLAN , Junhua ZHAO , Molly HE , Samantha SNOW , William LIGHT , Matthew KELLINGER , Michael PREVITE , Michael KIM , Hua YU , Yu-Hsien HWANG-FU , Marco TJIOE , Andrew BODDICKER
IPC: C12Q1/6874
Abstract: The present disclosure provides compositions and methods that employ the compositions for conducting pairwise sequencing and for generating concatemer template molecules for pairwise sequencing. The concatemers can be generated using a rolling circle amplification reaction which is conducted either on-support, or conducted in-solution and then distributed onto a support. The rolling circle amplification reaction generates concatemers containing tandem copies of a sequence of interest and at least one universal adaptor sequence. An increase in the number of tandem copies in a given concatemer increases the number of sites along the concatemer for hybridizing to multiple sequencing primers which serve as multiple initiation sites for polymerase-catalyzed sequencing reactions. When the sequencing reaction employs detectably labeled nucleotides and/or detectably labeled multivalent molecules (e.g., having nucleotide units), the signals emitted by the nucleotides or nucleotide units that participate in the parallel sequencing reactions along the concatemer yields an increased signal intensity for each concatemer.
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公开(公告)号:US20210318294A1
公开(公告)日:2021-10-14
申请号:US17356929
申请日:2021-06-24
Applicant: Element Biosciences, Inc.
Inventor: Michael PREVITE , Molly Min HE , Junhua ZHAO , Hui Zhen MAH , Chunhong ZHOU , Sinan ARSLAN , Matthew KELLINGER , Lorenzo BERTI , Steve Xiangling CHEN
IPC: G01N33/53 , G01N33/58 , C12Q1/6874
Abstract: Multivalent binding compositions including a particle-nucleotide conjugate having a plurality of copies of a nucleotide attached to the particle are described. The multivalent binding compositions allow one to localize detectable signals to active regions of biochemical interaction, e.g., sites of protein-protein interaction, protein-nucleic acid interaction, nucleic acid hybridization, or enzymatic reaction, and can be used to identify sites of base incorporation in elongating nucleic acid chains during polymerase reactions and to provide improved base discrimination for sequencing and array based applications.
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公开(公告)号:US20210269793A1
公开(公告)日:2021-09-02
申请号:US17320042
申请日:2021-05-13
Applicant: Element Biosciences, Inc.
Inventor: Matthew Kellinger , Sinan ARSLAN , Michael PREVITE , Junhua Zhao
IPC: C12N15/10 , C12Q1/6869 , C12N9/12
Abstract: Provided herein are methods for generating circular nucleic acid molecules and circular nucleic acid libraries. The methods can be used to generate clonal populations of target nucleic acid molecules for downstream applications such as sequencing.
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