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公开(公告)号:US20220185653A1
公开(公告)日:2022-06-16
申请号:US17559440
申请日:2021-12-22
Applicant: LIFE TECHNOLOGIES CORPORATION
Inventor: Todd ROSWECH , Jonathan SCHULTZ , Chun HO
Abstract: A fluidic interconnect includes a first interface including a liquid port, a gas port, and a cradle; a second interface including a liquid port, a gas port, and a swing bar to engage the cradle, a weight of a container attached to one of the first or second interfaces to drive the liquid port of the first interface into connection with the liquid port of the second interface and the gas port of the first interface into connection with the gas port of the second interface.
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公开(公告)号:US20220177939A1
公开(公告)日:2022-06-09
申请号:US17405548
申请日:2021-08-18
Inventor: Todd PETERSON , Axel TREFZER , Thomas POEHMERER
Abstract: The disclosure generally relates to compositions and methods for the production of nucleic acid molecules. In some aspects, the invention allows for the microscale generation of nucleic acid molecules, optionally followed by assembly of these nucleic acid molecules into larger molecules. In some aspects, the invention allows for efficient production of nucleic acid molecules (e.g., large nucleic acid molecules such as genomes).
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公开(公告)号:US20220145231A1
公开(公告)日:2022-05-12
申请号:US17582257
申请日:2022-01-24
Applicant: Life Technologies Corporation
Inventor: Nephi Jones , Steven Kjar , Daniel Price , Mark Smith , Paul Thacker , Tony Hsiao
IPC: C12M1/42 , C12M1/00 , C12N5/071 , C12M1/06 , B01F23/233 , B01F27/054 , B01F27/92 , B01F27/114 , B01F27/213 , B01F35/43 , B01F35/513 , B01F35/32 , B01F35/41 , C12M1/36
Abstract: A method of installing a flexible bioprocess container in a bioprocessing system having a rigid housing with an interior compartment and extending between a top and an opposing base. The method includes coupling a first surface of the flexible bioprocess container to a moveable platform positioned within the interior compartment of the rigid housing; coupling a second surface of the flexible bioprocess container to the base of the rigid housing; and moving the movable platform relative to the rigid housing and toward the top of the rigid housing so as to at least partially expand the flexible bioprocess container within the interior compartment of the rigid housing.
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公开(公告)号:US20220145230A1
公开(公告)日:2022-05-12
申请号:US17609351
申请日:2020-05-13
Applicant: LIFE TECHNOLOGIES CORPORATION
Inventor: Stephan KAISER
Abstract: The present set of embodiments relate to a system, method, and apparatus for separating cells from a suspension using a gravity driven cell separation device. The apparatus may include a chamber that is separated into a gas compartment and a liquid compartment allowing for transfer of gas through a membrane into the liquid compartment where the cell suspension flows during operation. The embodiments are designed to maximize the gravitational separation effect on the suspension while mitigating the loss of surface area through which gas transfer can occur through a membrane to provide nutrients to cells in the suspension by tilting the cell separation device on two or more axes.
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公开(公告)号:US20220136632A1
公开(公告)日:2022-05-05
申请号:US17576671
申请日:2022-01-14
Applicant: Life Technologies Corporation
Inventor: Ryan S. Beus , Brandon R. Burtenshaw , Eric Davis , Patrick L. Draper , Michael E. Goodwin , Brandon M. Knudsen , Jeremy K. Larsen , Kevin R. Pickup
Abstract: A method for coupling a tube to a tube fitting includes radially outwardly expanding a tubular compression collar from a constricted state to an expanded state, the compression collar having a throughway extending there through and being made of a resiliently flexible material. An end of the tube is inserted within the throughway of the expanded compression collar, the tube bounding a passage. A tube fitting is inserted within the passage of the tube. The compression collar is allowed to resiliently rebound back towards the constricted state so that the compression collar pushes the tube against the tube fitting.
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公开(公告)号:US11319587B2
公开(公告)日:2022-05-03
申请号:US16292087
申请日:2019-03-04
Applicant: LIFE TECHNOLOGIES CORPORATION
Inventor: Wolfgang Hinz , David Light , Todd Rearick , James A. Ball
IPC: C12Q1/6874 , G01N27/414
Abstract: The disclosure relates to novel particle compositions and methods of making said compositions having applications in nucleic acid analysis, as well as apparatuses and systems for the same.
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公开(公告)号:USD948746S1
公开(公告)日:2022-04-12
申请号:US29749440
申请日:2020-09-04
Designer: Katsuhiro Aritome , Takeshi Ooura , Asami Terakado , Sandro David Klein
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公开(公告)号:USD946169S1
公开(公告)日:2022-03-15
申请号:US29733407
申请日:2020-05-01
Applicant: LIFE TECHNOLOGIES CORPORATION
Designer: Earl Zergiebel
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公开(公告)号:US20220072681A1
公开(公告)日:2022-03-10
申请号:US17478096
申请日:2021-09-17
Applicant: LIFE TECHNOLOGIES CORPORATION
Inventor: Yerramalli Subramaniam , Puneet Suri , Sylvia Chang , Chengyong Yang
Abstract: Systems and methods of providing run-time quality control and monitoring of a single or multiple sequencing runs are provided herein. In some embodiments, the run-time system includes or is in communication with a processor capable of determining various types of run-time information relating to the quality, progress, etc. of various sequencing runs. In some embodiments, the system can also be in communication with a user interface, for example, a GUI, capable of representing and communicating various types of information to a user regarding the quality of the individual or multiple runs, the functioning of the instrument, an error event, etc. Additionally, the system can capable of receiving actionable information from a user via the GUI thereby allowing the user to terminate or repeat various sequencing steps in a particular run, terminate a entire run, terminate all runs, allow a run to proceed, etc.
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公开(公告)号:US20220065890A1
公开(公告)日:2022-03-03
申请号:US17524840
申请日:2021-11-12
Applicant: LIFE TECHNOLOGIES CORPORATION
Inventor: Albert L. Carrillo , John Donohue
Abstract: Various embodiments of a fluidic system of the present teachings are configured to execute a sequence of fluidic operations over the course of a next generation sequencing analysis for the sequential delivery of various solutions used over the course of analysis to a multilane sensor device. Exemplary fluidic operations include washing, priming and nucleotide reagent delivery through a fluidic multiplexer block that is configured to provide independent fluid distribution to each lane of a multilane sensor device used for detection during an analysis. Accordingly, any number or combination of lanes can be used during an analysis, so that during an analysis one lane in any position can be used singly during a run, all four lanes can be used simultaneously during a run, or any combination of lanes can be used simultaneously during a run.
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