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Methods and apparatus for template capture and normalization for submicroliter reaction 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C12P-019/34
  • C12Q-001/68
  • G01N-033/00
  • C07H-021/02
  • C07H-021/04
출원번호 US-0262476 (2002-09-30)
§371/§102 date 20021125 (20021125)
발명자 / 주소
  • Hadd, Andy
  • Jovanovich, Stevan
출원인 / 주소
  • Amersham Biosciences (SV) Corp
인용정보 피인용 횟수 : 37  인용 특허 : 13

초록

Methods for preparing nanoscale reactions using nucleic acids are presented. Nucleic acids are captured saturably, yet reversibly, on the internal surface of the reaction chamber, typically a capillary. Excess nucleic acid is removed and the reaction is performed directly within the capillary. Alter

대표청구항

1. A method of performing an enzymatic reaction in a capillary tube using a normalized quantity of DNA, comprising:introducing an enzymatic reaction mixture into a capillary tube, said tube having a normalized quantity of DNA, wherein said reaction mixture comprises an oligonucleotide primer, a DNA

이 특허에 인용된 특허 (13)

  1. Briggs Jonathan (Los Altos Hills CA) McCormick Randy M. (Santa Clara CA) Hoyt David W. (Saratoga CA), Capillary electrophoresis apparatus and method.
  2. Wilding Peter (Paoli PA) Kricka Larry J. (Berwyn PA), Mesoscale polynucleotide amplification device and method.
  3. Dunn James M.,CAX ; Leushner James,CAX ; Renfrew John,CAX ; Waterhouse Paul,CAX ; Izmailov Alexandre M.,CAX ; Zaleski Henryk,CAX, Method and apparatus for thermal cycling and for automated sample preparation with thermal cycling.
  4. Andy Hadd ; Stevan Jovanovich, Methods and apparatus for template capture and normalization for submicroliter reaction.
  5. Soper Steven A. ; Davies Jack D. ; Vladimirsky Yuli, Microsystem for rapid DNA sequencing.
  6. Fields Robert E., Molecular analyzer and method of use.
  7. Haff Lawrence A. ; Picozza Enrico ; Bloch Will ; Ragusa Robert ; DiCesare Joseph ; Tracy David ; Saviano Paul ; Woudenberg Timothy M., Nucleic acid amplification reaction apparatus.
  8. Haff Lawrence A. ; Picozza Enrico ; Bloch Will ; Ragusa Robert ; DiCesare Joseph ; Tracy David ; Saviano Paul ; Woudenberg Timothy M. ; Noreiks Richard W., Nucleic acid amplification reaction apparatus and method.
  9. Seubert Ronald ; Olson Maynard V. ; Meldrum Deirdre ; Hannaford Blake ; Wiktor Peter ; Friedman Neal A. ; Snow Donald B. ; Kraft Ray, Precision small volume fluid processing apparatus.
  10. Boom Willem R. (Amsterdam NLX) Adriaanse Henritte M. A. (Arnhem NLX) Kievits Tim (The Hague NLX) Lens Peter F. (Amsterdam NLX), Process for isolating nucleic acid.
  11. Wittwer Carl T. (Salt Lake City UT) Hillyard David R. (Salt Lake City UT) Ririe Kirk M. (Idaho Falls ID), Rapid thermal cycling device.
  12. Papen Roeland F. ; Pelc Richard E. ; Chibucos Nicholas S. ; Meyer Wilhelm,DEX, System for dispensing microvolume quantities of liquids.
  13. Becker Thomas,DEX ; Koster Hubert ; Cantor Charles, Systems and methods for performing reactions in an unsealed environment.

이 특허를 인용한 특허 (37)

  1. Milgrew, Mark J., Active chemically-sensitive sensors with in-sensor current sources.
  2. Rothberg, Jonathan; Rearick, Todd, Apparatus for measuring analytes including chemical sensor array.
  3. Johnson, Kim; Jordan, Jeremy; Levine, Peter; Milgrew, Mark, Array configuration and readout scheme.
  4. Johnson, Kim L.; Jordan, Jeremy; Levine, Peter M.; Milgrew, Mark James, Chemical detection device having multiple flow channels.
  5. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Chemical sensor array having multiple sensors per well.
  6. Fife, Keith G., Chemical sensor array with leakage compensation circuit.
  7. Fife, Keith G.; Owens, Jordan; Li, Shifeng; Bustillo, James, Chemical sensor with consistent sensor surface areas.
  8. Fife, Keith; Bustillo, James; Owens, Jordan, Chemical sensor with protruded sensor surface.
  9. Fife, Keith G.; Owens, Jordan; Li, Shifeng; Bustillo, James, Chemical sensor with sidewall sensor surface.
  10. Fife, Keith G.; Bustillo, James; Owens, Jordan, Chemical sensor with sidewall spacer sensor surface.
  11. Fife, Keith; Bustillo, James; Owens, Jordan, Chemical sensor with sidewall spacer sensor surface.
  12. Fife, Keith G.; Owens, Jordan; Li, Shifeng; Bustillo, James, Chemical sensors with consistent sensor surface areas.
  13. Fife, Keith G., Chemically sensitive sensor with lightly doped drains.
  14. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Chemically sensitive sensors with sample and hold capacitors.
  15. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Chemically-sensitive sample and hold sensors.
  16. Fife, Keith G.; Yang, Jungwook, High data rate integrated circuit with power management.
  17. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, High density sensor array without wells.
  18. Fife, Keith G., Ion-sensing charge-accumulation circuits and methods.
  19. Fife, Keith G.; Yang, Jungwook, Method and system for delta double sampling.
  20. Fife, Keith G.; Yang, Jungwook, Method and system for delta double sampling.
  21. Lange, Berthold; Schoen, Christian; Eichmann, Tobias, Method for mixing at least one sample solution having at least one reagent, and device.
  22. Rothberg, Jonathan; Hinz, Wolfgang, Methods and apparatus for detecting molecular interactions using FET arrays.
  23. Rearick, Todd; Davey, Melville; Beauchemin, Mark, Methods and apparatus for measuring analytes.
  24. Rothberg, Jonathan; Hinz, Wolfgang; Davidson, John; van Oijen, Antoine; Leamon, John; Huber, Martin, Methods and apparatus for measuring analytes.
  25. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L., Methods and apparatus for measuring analytes using large scale FET arrays.
  26. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  27. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James; Leamon, John; Schultz, Jonathan, Methods and apparatus for measuring analytes using large scale FET arrays.
  28. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  29. Jovanovich,Stevan Bogdan; Salas Solano,Oscar; Li,Jeng Thun, Methods and apparatus for performing submicroliter reactions with nucleic acids or proteins.
  30. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Methods for calibrating an array of chemically-sensitive sensors.
  31. Bustillo, James; Li, Shifeng, Methods for manufacturing well structures for low-noise chemical sensors.
  32. Baker, Tony, Removal of molecular assay interferences.
  33. Putnam, Jonathan; Li, Shifeng, Self-aligned well structures for low-noise chemical sensors.
  34. Jordan, Jeremy; Rearick, Todd, System for reducing noise in a chemical sensor array.
  35. Jordan, Jeremy; Rearick, Todd, System for reducing noise in a chemical sensor array.
  36. Jordan, Jeremy; Rearick, Todd, System for reducing noise in a chemical sensor array.
  37. Fife, Keith G.; Johnson, Kim L.; Milgrew, Mark James, Two-transistor pixel array.
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