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Method for determining the amount of an analyte with a disc-shaped microfluidic device 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C12M-001/34
  • C12M-003/00
  • C12Q-001/00
  • G01N-009/30
  • G01N-015/06
  • G01N-021/00
  • G01N-031/00
  • G01N-031/22
  • G01N-033/00
  • G01N-033/48
  • G01N-033/53
출원번호 UP-0472421 (2002-03-19)
등록번호 US-7759067 (2010-08-09)
우선권정보 SE-0100951(2001-03-19); SE-0100952(2001-03-19); SE-0103117(2001-09-17); SE-0200242(2002-01-28)
국제출원번호 PCT/SE2002/000537 (2002-03-19)
§371/§102 date 20030919 (20030919)
국제공개번호 WO02/075312 (2002-09-26)
발명자 / 주소
  • Andersson, Per
  • Inganas, Mats
  • Thorsen, Gunnar
  • Kylberg, Gunnar
출원인 / 주소
  • Gyros Patent AB
대리인 / 주소
    Fulbright & Jaworski, L.L.P.
인용정보 피인용 횟수 : 9  인용 특허 : 20

초록

A microscale method for the characterization of one or more reaction variables that influence the formation or dissociation of an affinity complex comprising a ligand and a binder, which have mutual affinity for each other. The method is characterized in comprising the steps of: (i) providing a micr

대표청구항

The invention claimed is: 1. A microscale method for the determination of the amount of an analyte in one or more samples by the formation of an affinity complex comprising a ligand and a binder, which have affinity for each other, wherein said method comprises the steps of: (i) providing a disc-sh

이 특허에 인용된 특허 (20)

  1. Bradshaw James I. (Surfside TX) Baker ; Jr. Ross G. (Houston TX), Active fixation mechanism for lead assembly of an implantable cardiac stimulator.
  2. Sheppard ; Jr. Norman F. ; Mian Alec ; Kellogg Gregory ; Kieffer-Higgins Stephen G. ; Carvalho Bruce L., Affinity binding-based system for detecting particulates in a fluid.
  3. Elings, Virgil B.; Nicoli, David F., Apparatus and method for homogeneous immunoassay.
  4. Kellogg Gregory ; Kieffer-Higgins Stephen G. ; Mian Alec, Capillary microvalve.
  5. Kellogg, Gregory; Kieffer-Higgins, Stephen G.; Jensen, Mona D.; Ommert, Shari; Kob, Mikayla; Pierce, Andrea; Morneau, Keith; Lin, Hsin Chiang, Devices and methods for using centripetal acceleration to drive fluid movement in a microfluidics system for performing biological fluid assays.
  6. Kellogg Gregory ; Kieffer-Higgins Stephen G. ; Carvalho Bruce L. ; Davis Gene A. ; Willis John P. ; Minior Ted ; Chapman Laura L. ; Kob Mikayla ; Oeltjen Sarah D. ; Ommert Shari ; Mian Alec, Devices and methods for using centripetal acceleration to drive fluid movement on a microfluidics system.
  7. Parce J. Wallace ; Kopf-Sill Anne R. ; Bousse Luc J., High throughput screening assay systems in microscale fluidic devices.
  8. Parsons Robert (Libertyville IL) Kowal Robert (Vernon Hills IL) Yue Vincent T. (Deerfield IL), Immunoassays employing generic anti-hapten antibodies and materials for use therein.
  9. Virtanen Jorma, Laboratory in a disk.
  10. Lindmo Tore (Kolbotn NOX), Method of assay.
  11. Kauvar Lawrence M. (San Francisco CA) Villar Hugo O. (Newark CA), Method to identify binding partners.
  12. Hargreaves William R. (Bellevue WA), Methods for conducting specific binding assays.
  13. Bergh, H. Sam; Guan, Shenheng, Methods for identifying and optimizing materials in microfluidic systems.
  14. Chan, Samuel D. H.; Chien, Ring-Ling; Chow, Andrea W.; Wang, Benjamin N., Methods, devices, and systems for monitoring time dependent reactions.
  15. Marc A. Unger ; Hou-Pu Chou ; Todd A. Thorsen ; Axel Scherer ; Stephen R. Quake, Microfabricated elastomeric valve and pump systems.
  16. Michael Knapp ; John Wallace Parce ; Luc J. Bousse ; Anne R. Kopf-Sill, Microfluidic devices and methods for separation.
  17. King Howard Gregg ; Shigeura John ; Nordman Eric S. ; Desmond Sean Matthew, Sample handling system for a multi-channel capillary electrophoresis device.
  18. Litman David J. (Mountain View CA) Ullman Edwin F. (Atherton CA), Simultaneous calibration heterogeneous immunoassay.
  19. Wu Caicai ; Weigl Bernhard ; Kenny Margaret A. ; Yager Paul, Simultaneous particle separation and chemical reaction.
  20. Kuhr Werner G. ; Singhal Pankaj ; Brazill Sara Ann, Spatially-encoded analyte detection.

이 특허를 인용한 특허 (9)

  1. Putnam, Martin A.; Branciforte, Jeffrey T.; Stanwood, Charles O., Methods and systems for epi-fluorescent monitoring and scanning for microfluidic assays.
  2. Putnam, Martin A.; Branciforte, Jeffrey T.; Stanwood, Charles O., Methods and systems for manufacture of microarray assay systems, conducting microfluidic assays, and monitoring and scanning to obtain microfluidic assay results.
  3. Putnam, Martin A.; Branciforte, Jeffrey T.; Stanwood, Charles O.; Tu, Jane M., Micro-tube particles for microfluidic assays and methods of manufacture.
  4. Putnam, Martin A., Microfluidic assay assemblies and methods of manufacture.
  5. Putnam, Martin A.; Branciforte, Jeffrey T.; Stanwood, Charles O., Microfluidic assay operating system and methods of use.
  6. Putnam, Martin A.; Branciforte, Jeffrey T.; Stanwood, Charles O., Microfluidic assay systems employing micro-particles and methods of manufacture.
  7. Putnam, Martin A.; Leamon, John H.; Branciforte, Jeffrey T.; Stanwood, Charles O., PDMS membrane-confined nucleic acid and antibody/antigen-functionalized microlength tube capture elements, and systems employing them, and methods of their use.
  8. Putnam, Martin A., Portable microfluidic assay devices and methods of manufacture and use.
  9. Stanwood, Charles; Daigneault, Noel; Branciforte, Jeffrey, Segmented multi-use automated assay cartridge.
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