Movatterモバイル変換


[0]ホーム

URL:


US20020019059A1 - Devices, systems and methods for time domain multiplexing of reagents - Google Patents

Devices, systems and methods for time domain multiplexing of reagents
Download PDF

Info

Publication number
US20020019059A1
US20020019059A1US09/238,467US23846799AUS2002019059A1US 20020019059 A1US20020019059 A1US 20020019059A1US 23846799 AUS23846799 AUS 23846799AUS 2002019059 A1US2002019059 A1US 2002019059A1
Authority
US
United States
Prior art keywords
reagent
reaction zone
source
channel
reaction
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US09/238,467
Inventor
Calvin Y.H. Chow
J. Wallace Parce
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Caliper Life Sciences Inc
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by IndividualfiledCriticalIndividual
Priority to US09/238,467priorityCriticalpatent/US20020019059A1/en
Assigned to CALIPER TECHNOLOGIES CORP.reassignmentCALIPER TECHNOLOGIES CORP.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: CHOW, CALVIN Y.H., PARCE, J. WALLACE
Priority to EP00905831Aprioritypatent/EP1147417A4/en
Priority to PCT/US2000/002265prioritypatent/WO2000045172A1/en
Priority to CA002357761Aprioritypatent/CA2357761A1/en
Priority to AU27452/00Aprioritypatent/AU770913B2/en
Publication of US20020019059A1publicationCriticalpatent/US20020019059A1/en
Priority to US10/418,008prioritypatent/US7276330B2/en
Abandonedlegal-statusCriticalCurrent

Links

Images

Classifications

Definitions

Landscapes

Abstract

Time dependent iterative reactions are carried out in microscale fluidic channels by configuring the channels such that reagents from different sources are delivered to a central reaction zone at different times during the analysis, allowing for the performance of a variety of time dependent, and/or iterative reactions in simplified microfluidic channels. Exemplary analyses include the determination of dose responses for biological and biochemical systems.

Description

Claims (41)

What is claimed is:
1. A device for performing a plurality of successive reactions on at least a first reagent, comprising:
a body structure;
a first reaction zone disposed within the body structure, the first reaction zone being fluidly connected to a source of the at least first reagent;
a source of a second reagent in fluid connection to the first reaction zone;
a source of a third reagent in fluid connection to the first reaction zone;
wherein the fluid connections between the second and third reagent sources and the reaction zone are configured to deliver a third reagent from the third reagent source to the first reaction zone subsequent to delivery of a second reagent from the second reagent source to the reaction zone.
2. The device ofclaim 1, wherein the fluid connections between the second and third reagent sources and the reaction zone are configured to deliver a third reagent from the third reagent source to the first reaction zone subsequent to delivery of a second reagent from the second reagent source to the reaction zone, when subjected to a same applied driving force.
3. The device ofclaim 1, wherein the fluid connection between the second reagent source and the reaction zone, and the third reagent source and reaction zone comprise first and second connector channels, respectively, wherein the second channel is longer than the first connector channel.
4. The device ofclaim 1, wherein the fluid connection between the second reagent source and the reaction zone, and the third reagent source and reaction zone comprise first and second connector channels, respectively, wherein the second channel comprises a larger cross-sectional area than the first connector channel.
5. The device ofclaim 1, wherein the fluid connection between the second reagent source and the reaction zone, a nd the third reagent source and reaction zone comprise first and second connector channels, respectively, wherein the second channel comprises a greater fluidic resistance than the first connector channel.
6. The device ofclaim 1, wherein the fluid connection between the second reagent source and the reaction zone, and the third reagent source and reaction zone comprise first and second connector channels, respectively, wherein the second channel comprises one or more of a smaller cross-sectional area and greater length than first channel to deliver a third reagent from the third reagent source to the first reaction source subsequent to delivery of the second reagent from the second reagent source to the reaction zone.
7. The device ofclaim 1, wherein the first and second reagents comprise first and second dilutions of a same reagent.
8. The device ofclaim 7, wherein the first reagent comprises a lower concentration of the same reagent than the second reagent.
9. The device ofclaim 1, further comprising a source of at least a fourth reagent in fluid connection with the reaction zone.
10. The device ofclaim 9, wherein the fluid connection between the fourth reagent source and the reaction zone is configured to deliver a fourth reagent from the fourth reagent source to the reaction zone, subsequent to the third reagent
11. The device ofclaim 10, wherein the fluid connection between the fourth reagent source and the reaction zone comprises a third connector channel, wherein the third connector channel is longer than the second connector channel.
12. The device ofclaim 10, wherein the fluid connection between the fourth reagent source and the reaction zone comprises a third connector channel, wherein the third connector channel comprises a greater cross-sectional area than the second connector channel.
13. The device ofclaim 10, wherein the fluid connection between the fourth reagent source and the reaction zone comprises a third connector channel, wherein the third connector channel comprises a greater fluidic resistance than the second connector channel.
14. The device ofclaim 1, wherein:
the reaction zone comprises a first channel region, the first channel region having first and second ends, the first end being fluidly connected to the source of first reagent, and the second end being fluidly connected to a port disposed in the body structure; and
the fluid connection between the third reagent source and the reaction channel is disposed between the fluid connection between the second reagent source and the reaction channel and the port.
15. The device ofclaim 14, wherein the port is configured to receive a vacuum source, for applying a vacuum to the port and first reaction channel, whereby the first, second and third reagents are drawn into and through the reaction channel.
16. The device ofclaim 1, wherein the first reagent comprises at least a first component of a biochemical system.
17. The device ofclaim 16, wherein the at least first component of a biochemical system comprises cells.
18. The device ofclaim 16, wherein the at least first component of a biochemical system comprises complementary members of a specific binding pair.
19. The device ofclaim 18, wherein the specific binding pair is selected from a ligands and its receptor, an antibody and its antigen, and complementary single stranded nucleic acid sequences.
20. The device ofclaim 16, wherein the at least first component of a biochemical system comprises an enzyme and its substrate.
21. The device ofclaim 1, wherein at least one of the reaction zone and fluid connections between the second and third reagent sources and the reaction zone comprise at least one microscale cross-sectional dimension.
22. A kit, comprising:
the device ofclaim 1;
a volume of at least the first reagent;
and packaging for containing the microfluidic device and the volume of first reagent.
23. A system, comprising:
the device ofclaim 1; and
a material transport system for transporting the first reagent through the reaction zone and for transporting the second reagent and third reagent from the second and third reagent sources, respectively, into the reaction zone.
24. The system ofclaim 23, wherein the material transport system comprises a vacuum source fluidly connected to the reaction zone.
25. The system ofclaim 23, wherein the material transport system comprises an electrical controller operably coupled to the device ofclaim 1, for applying a voltage gradient between the second and third reagent sources and the reaction zone.
26. A device, comprising:
a reaction zone;
a source of first reagent;
a source of second reagent;
a first fluid path connecting the first reagent source to the reaction zone, the first fluid path configured to deliver first reagent to the reaction zone under a driving force at a first time point; and
a second fluid path connecting the second reagent source to the reaction zone, the second fluid path configured to deliver the second reagent to the reaction zone under the driving force at a second time point, the second time point being subsequent to the first time point.
27. The device ofclaim 26, wherein at least a portion of the first fluid path comprises at least a portion of the second fluid path.
28. The device ofclaim 26, further comprising a port disposed in the microfluidic device, the port being fluidly connected to the reaction zone.
29. The device ofclaim 28, wherein the port is configured to receive a pressure source for applying a pressure differential between the first and second reagent sources and the reaction zone, the pressure differential comprising the driving force.
30. The device ofclaim 29, wherein the pressure source comprises a vacuum source.
31. The device ofclaim 28, wherein each of the source of first reagent, source of second reagent, and the port is configured to receive an electrode disposed therein, the electrode being in contact with a fluid disposed in the port, the electrodes providing a potential gradient between the first and second reagent sources and the port.
32. The device ofclaim 26, wherein the reaction zone comprises a first reaction channel having first and second ends, the device further comprising a source of a third reagent fluidly connected to the first end of the reaction channel, and a port fluidly connected to the second end of the first reaction channel.
33. The device ofclaim 32, wherein the first and second reagent sources are in fluid connection with the reaction channel at a single point along the reaction channel.
34. The device ofclaim 32, wherein the first and second reagent sources are in fluid communication with the reaction channel at first and second points along the reaction channel, respectively.
35. The device ofclaim 28, wherein at least one of the reaction zone, the first fluid path and the second fluid path comprise a channel having at least one microscale cross-sectional dimension.
36. A method of performing, successive reactions in a microfluidic device, comprising:
providing a device which comprises a reaction zone disposed within the microfluidic device, wherein the reaction zone is in fluid communication with a source of first reagent, a source of second reagent and a source of third reagent, the fluid connection between the second and third reagent sources and the reaction one being configured to deliver the second reagent to the reaction zone prior to the third reagent;
applying a driving force to at least one of the reaction zone, the first reagent source, the second reagent source and the third reagent source to flow the first reagent through the reaction zone, introduce the second reagent into the reaction zone causing a first reaction between the first reagent and the second reagent, and subsequently introduce the third reagent into the reaction zone to cause a reaction between the first reagent and the third reagent.
37. A method of performing, successive reactions in a microfluidic device, comprising:
providing a device which comprises a reaction zone disposed within the microfluidic device, wherein the reaction zone is in fluid communication with a source of first reagent, a source of second reagent and a source of third reagent, the fluid connection between the second and third reagent sources and the reaction one being configured to deliver the second reagent to the reaction zone prior to the third reagent;
applying a driving force to at least one of the reaction zone, the first reagent source, the second reagent source and the third reagent source to flow the first reagent through the reaction zone, introduce the second reagent into the reaction zone causing a first reaction between the first reagent and the second reagent to produce a first product, and subsequently introduce the third reagent into the reaction zone to cause a reaction between the first product and the third reagent.
38. A method of determining a dose response of a first reagent on a biochemical system, comprising:
providing a device that comprises a body structure, a first reaction zone disposed within the body structure, the first reaction zone being fluidly connected to a first reagent source, a second reagent source and a third reagent source, the first reagent source comprising a first reagent, the second reagent source comprising a second reagent at a first concentration and the third reagent source comprising the second reagent at a second concentration greater than the first concentration, wherein the fluid connection between the second reagent source and the reaction zone and the third reagent source and the reaction zone are configured to deliver the second concentration to the reaction zone subsequent to delivering the first concentration of the second reagent to the reaction zone;
detecting an effect of each of the first concentration of the second reagent and the second concentration of the second reagent on the first reagent within the reaction zone; and
generating a dose response curve from the detected effect.
39. A microfluidic system comprising:
a microfluidic device that comprises a body structure having at least a first reaction channel disposed therein, the reaction channel being in fluid communication with a source of at least a first component of a biochemical system; and
a detection system for detecting a reaction at a plurality of different points along the reaction channel.
40. The microfluidic system ofclaim 39, wherein the reaction channel comprises a serpentine channel portion, and the detection system scans across adjacent portions of the serpentine channel portion.
41. The microfluidic system ofclaim 39, wherein the first reaction channel is also in fluid communication with a plurality of sources of test compounds.
US09/238,4671999-01-281999-01-28Devices, systems and methods for time domain multiplexing of reagentsAbandonedUS20020019059A1 (en)

Priority Applications (6)

Application NumberPriority DateFiling DateTitle
US09/238,467US20020019059A1 (en)1999-01-281999-01-28Devices, systems and methods for time domain multiplexing of reagents
EP00905831AEP1147417A4 (en)1999-01-282000-01-28Devices, systems and methods for time domain multiplexing of reagents
PCT/US2000/002265WO2000045172A1 (en)1999-01-282000-01-28Devices, systems and methods for time domain multiplexing of reagents
CA002357761ACA2357761A1 (en)1999-01-282000-01-28Devices, systems and methods for time domain multiplexing of reagents
AU27452/00AAU770913B2 (en)1999-01-282000-01-28Devices, systems and methods for time domain multiplexing of reagents
US10/418,008US7276330B2 (en)1999-01-282003-04-17Devices, systems and methods for time domain multiplexing of reagents

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US09/238,467US20020019059A1 (en)1999-01-281999-01-28Devices, systems and methods for time domain multiplexing of reagents

Related Child Applications (1)

Application NumberTitlePriority DateFiling Date
US10/418,008DivisionUS7276330B2 (en)1999-01-282003-04-17Devices, systems and methods for time domain multiplexing of reagents

Publications (1)

Publication NumberPublication Date
US20020019059A1true US20020019059A1 (en)2002-02-14

Family

ID=22898025

Family Applications (2)

Application NumberTitlePriority DateFiling Date
US09/238,467AbandonedUS20020019059A1 (en)1999-01-281999-01-28Devices, systems and methods for time domain multiplexing of reagents
US10/418,008Expired - Fee RelatedUS7276330B2 (en)1999-01-282003-04-17Devices, systems and methods for time domain multiplexing of reagents

Family Applications After (1)

Application NumberTitlePriority DateFiling Date
US10/418,008Expired - Fee RelatedUS7276330B2 (en)1999-01-282003-04-17Devices, systems and methods for time domain multiplexing of reagents

Country Status (5)

CountryLink
US (2)US20020019059A1 (en)
EP (1)EP1147417A4 (en)
AU (1)AU770913B2 (en)
CA (1)CA2357761A1 (en)
WO (1)WO2000045172A1 (en)

Cited By (41)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20030186426A1 (en)*2000-03-152003-10-02The Regents Of The University Of CaliforniaMultichannel flow cell for interacting single optically trapped, DNA molecules with different chemical species
WO2003084629A3 (en)*2002-04-022004-02-05Caliper Techn CorpMethods and apparatus for separation and isolation of components from a biological sample
US20050011761A1 (en)*2000-10-312005-01-20Caliper Technologies Corp.Microfluidic methods, devices and systems for in situ material concentration
US20050016851A1 (en)*2003-07-242005-01-27Jensen Klavs F.Microchemical method and apparatus for synthesis and coating of colloidal nanoparticles
US20070243627A1 (en)*2004-09-302007-10-18Shuichi TakayamaComputerized control method and system for microfluidics and computer program product for use therein
US20070298433A1 (en)*2003-12-312007-12-27President And Fellows Of Harvard CollegeAssay Device and Method
US20080038839A1 (en)*2004-01-262008-02-14Vincent LinderFluid Delivery System And Method
US20080090256A1 (en)*2006-10-132008-04-17Ian GibbonsReducing optical interference in a fluidic device
US20080273918A1 (en)*2007-05-042008-11-06Claros Diagnostics, Inc.Fluidic connectors and microfluidic systems
US20090020556A1 (en)*2007-07-192009-01-22Kabir James MukaddamMetering assembly and method of dispensing fluid
US20090211908A1 (en)*2008-01-232009-08-27Javier FarinasDevices and methods for detecting and quantitating nucleic acids using size-separation of amplicons
US20090266421A1 (en)*2008-04-252009-10-29Claros Diagnostics, Inc.Flow control in microfluidic systems
JP2010522866A (en)*2006-10-132010-07-08セラノス, インコーポレイテッド Reduction of optical interference in fluidic devices.
US20100186841A1 (en)*2009-01-232010-07-29Formulatrix, Inc.Microfluidic dispensing assembly
US20100196207A1 (en)*2009-02-022010-08-05David SteinmillerStructures for controlling light interaction with microfluidic devices
US20110120562A1 (en)*2009-11-242011-05-26Claros Diagnostics, Inc.Fluid mixing and delivery in microfluidic systems
USD645971S1 (en)2010-05-112011-09-27Claros Diagnostics, Inc.Sample cassette
US20120100521A1 (en)*2008-05-162012-04-26Soper Steven AMicrofluidic Isolation of Tumor Cells or Other Rare Cells from Whole Blood or Other Liquids
US8389272B2 (en)2004-01-262013-03-05President And Fellows Of Harvard CollegeFluid delivery system and method
US8501416B2 (en)2005-04-192013-08-06President And Fellows Of Harvard CollegeFluidic structures including meandering and wide channels
EP2636755A1 (en)2006-05-262013-09-11AltheaDx IncorporatedBiochemical analysis of partitioned cells
US8580569B2 (en)2010-04-162013-11-12Opko Diagnostics, LlcFeedback control in microfluidic systems
US8591829B2 (en)2008-12-182013-11-26Opko Diagnostics, LlcReagent storage in microfluidic systems and related articles and methods
KR101385996B1 (en)2011-12-232014-04-17한국전기연구원Micro fluidic chip for lyase reaction
US20140338753A1 (en)*2011-09-282014-11-20President And Fellows Of Harvard CollegeSystems and methods for droplet production and/or fluidic manipulation
US9180449B2 (en)2012-06-122015-11-10Hach CompanyMobile water analysis
US9182353B2 (en)2010-07-222015-11-10Hach CompanyLab-on-a-chip for alkalinity analysis
US9255866B2 (en)2013-03-132016-02-09Opko Diagnostics, LlcMixing of fluids in fluidic systems
USD768872S1 (en)2012-12-122016-10-11Hach CompanyCuvette for a water analysis instrument
USD804682S1 (en)2015-08-102017-12-05Opko Diagnostics, LlcMulti-layered sample cassette
US10156563B2 (en)*2011-02-182018-12-18Koninklijke Philips N.V.Measurement chip, microfluidic device and method
US10279345B2 (en)2014-12-122019-05-07Opko Diagnostics, LlcFluidic systems comprising an incubation channel, including fluidic systems formed by molding
US10309976B2 (en)2014-06-302019-06-04Phc Holdings CorporationSubstrate for sample analysis, sample analysis device, sample analysis system, and program for sample analysis system
US10520521B2 (en)2014-06-302019-12-31Phc Holdings CorporationSubstrate for sample analysis, sample analysis device, sample analysis system, and program for sample analysis system
US10539582B2 (en)2014-06-302020-01-21Phc Holdings CorporationSubstrate for sample analysis, sample analysis device, sample analysis system, and method for removing liquid from liquid that contains magnetic particles
US10539583B2 (en)2014-12-122020-01-21Phc Holdings CorporationSubstrate for sample analysis, sample analysis device, sample analysis system, and program for sample analysis system
US10539560B2 (en)2014-06-302020-01-21Phc Holdings CorporationSubstrate for sample analysis, and sample analysis apparatus
US10672503B2 (en)2012-03-052020-06-02Opko Diagnostics, LlcMethods and apparatuses for conducting analyses
US10852310B2 (en)2015-12-112020-12-01Opko Diagnostics, LlcFluidic systems involving incubation of samples and/or reagents
US20210086172A1 (en)*2007-03-272021-03-25Inflammatix, Inc.Fluidic Methods
US20240328957A1 (en)*2023-04-032024-10-03Burst Diagnostics LlcChemiluminescence microfluidic immunoassay device and methods of use thereof

Families Citing this family (53)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US6048734A (en)1995-09-152000-04-11The Regents Of The University Of MichiganThermal microvalves in a fluid flow method
US6749814B1 (en)1999-03-032004-06-15Symyx Technologies, Inc.Chemical processing microsystems comprising parallel flow microreactors and methods for using same
US6858185B1 (en)1999-08-252005-02-22Caliper Life Sciences, Inc.Dilutions in high throughput systems with a single vacuum source
IL151122A0 (en)2000-02-232003-04-10Caliper Techn CorpMulti-reservoir pressure control system
US7040144B2 (en)2000-02-232006-05-09Caliper Life Sciences, Inc.Microfluidic viscometer
US6681616B2 (en)2000-02-232004-01-27Caliper Technologies Corp.Microfluidic viscometer
AU8095101A (en)2000-08-022002-02-13Caliper Techn CorpHigh throughput separations based analysis systems
US20090118139A1 (en)2000-11-072009-05-07Caliper Life Sciences, Inc.Microfluidic method and system for enzyme inhibition activity screening
US8900811B2 (en)2000-11-162014-12-02Caliper Life Sciences, Inc.Method and apparatus for generating thermal melting curves in a microfluidic device
JP2002236131A (en)*2000-12-082002-08-23Minolta Co LtdMicrochip
US6681788B2 (en)2001-01-292004-01-27Caliper Technologies Corp.Non-mechanical valves for fluidic systems
US6692700B2 (en)2001-02-142004-02-17Handylab, Inc.Heat-reduction methods and systems related to microfluidic devices
US7829025B2 (en)2001-03-282010-11-09Venture Lending & Leasing Iv, Inc.Systems and methods for thermal actuation of microfluidic devices
US7323140B2 (en)2001-03-282008-01-29Handylab, Inc.Moving microdroplets in a microfluidic device
US7303727B1 (en)2002-03-062007-12-04Caliper Life Sciences, IncMicrofluidic sample delivery devices, systems, and methods
US6926989B2 (en)2002-06-052005-08-09Motorola, Inc.Interconnect apparatus for fuel cells
EP1447134A1 (en)*2003-02-152004-08-18Agilent Technologies, Inc., A Delaware CorporationMicrofluidic system
US7820030B2 (en)2003-04-162010-10-26Handylab, Inc.System and method for electrochemical detection of biological compounds
EP2407243B1 (en)2003-07-312020-04-22Handylab, Inc.Multilayered microfluidic device
US8852862B2 (en)2004-05-032014-10-07Handylab, Inc.Method for processing polynucleotide-containing samples
CA2994321C (en)2004-05-032023-08-08Handylab, Inc.A microfluidic device and methods for processing polynucleotide-containing samples
US8057655B1 (en)*2004-08-202011-11-15The Board Of Trustees Of The Leland Stanford Junior UniversitySub-micron object control arrangement and approach therefor
WO2006102640A2 (en)*2005-03-242006-09-28Infotonics Technology Center, Inc.Hyperspectral imaging system and methods thereof
US8092784B2 (en)2005-11-302012-01-10Biotium, Inc.Enzyme substrate comprising a functional dye and associated technology and methods
US10900066B2 (en)2006-03-242021-01-26Handylab, Inc.Microfluidic system for amplifying and detecting polynucleotides in parallel
WO2007112114A2 (en)2006-03-242007-10-04Handylab, Inc.Integrated system for processing microfluidic samples, and method of using same
US8883490B2 (en)2006-03-242014-11-11Handylab, Inc.Fluorescence detector for microfluidic diagnostic system
US11806718B2 (en)2006-03-242023-11-07Handylab, Inc.Fluorescence detector for microfluidic diagnostic system
US7998708B2 (en)2006-03-242011-08-16Handylab, Inc.Microfluidic system for amplifying and detecting polynucleotides in parallel
JP2008122179A (en)*2006-11-102008-05-29Konica Minolta Medical & Graphic IncMicro-integrated analysis chip and micro-integrated analysis system
JP2008122233A (en)*2006-11-132008-05-29Konica Minolta Medical & Graphic IncMicro-integrated analysis chip and micro-integrated analysis system
WO2008061165A2 (en)2006-11-142008-05-22Handylab, Inc.Microfluidic cartridge and method of making same
US9618139B2 (en)2007-07-132017-04-11Handylab, Inc.Integrated heater and magnetic separator
EP3222733B1 (en)2007-07-132021-04-07Handylab, Inc.Polynucleotide capture materials, and methods of using same
US20090136385A1 (en)2007-07-132009-05-28Handylab, Inc.Reagent Tube
US9186677B2 (en)2007-07-132015-11-17Handylab, Inc.Integrated apparatus for performing nucleic acid extraction and diagnostic testing on multiple biological samples
US8105783B2 (en)2007-07-132012-01-31Handylab, Inc.Microfluidic cartridge
US8182763B2 (en)2007-07-132012-05-22Handylab, Inc.Rack for sample tubes and reagent holders
US8133671B2 (en)2007-07-132012-03-13Handylab, Inc.Integrated apparatus for performing nucleic acid extraction and diagnostic testing on multiple biological samples
US8287820B2 (en)2007-07-132012-10-16Handylab, Inc.Automated pipetting apparatus having a combined liquid pump and pipette head system
USD621060S1 (en)2008-07-142010-08-03Handylab, Inc.Microfluidic cartridge
WO2009112038A2 (en)*2008-03-142009-09-17Scandinavian Micro Biodevices ApsA microfluidic system and a method of performing a test
US8093667B2 (en)*2008-06-302012-01-10Intel CorporationFlexible gate electrode device for bio-sensing
USD618820S1 (en)2008-07-112010-06-29Handylab, Inc.Reagent holder
USD787087S1 (en)2008-07-142017-05-16Handylab, Inc.Housing
EP2437887B1 (en)2009-06-042016-05-11Lockheed Martin CorporationMultiple-sample microfluidic chip for dna analysis
US8961764B2 (en)2010-10-152015-02-24Lockheed Martin CorporationMicro fluidic optic design
CN106190806B (en)2011-04-152018-11-06贝克顿·迪金森公司Scan real-time microfluid thermal cycler and the method for synchronous thermal cycle and scanning optical detection
CA2849917C (en)2011-09-302020-03-31Becton, Dickinson And CompanyUnitized reagent strip
USD692162S1 (en)2011-09-302013-10-22Becton, Dickinson And CompanySingle piece reagent holder
WO2013067202A1 (en)2011-11-042013-05-10Handylab, Inc.Polynucleotide sample preparation device
EP2810080B1 (en)2012-02-032024-03-27Becton, Dickinson and CompanyExternal files for distribution of molecular diagnostic tests and determination of compatibility between tests
US9322054B2 (en)2012-02-222016-04-26Lockheed Martin CorporationMicrofluidic cartridge

Family Cites Families (42)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4390403A (en)*1981-07-241983-06-28Batchelder J SamuelMethod and apparatus for dielectrophoretic manipulation of chemical species
US4492752A (en)*1982-09-031985-01-08Ortho Diagnostics Systems Inc.Method for discriminating between unstained and absorbing dye stained cells
CA1227357A (en)*1985-02-121987-09-29Minister Of National DefenceMethod and apparatus for detecting presence and concentration of vapours in gaseous fluids
US4908112A (en)*1988-06-161990-03-13E. I. Du Pont De Nemours & Co.Silicon semiconductor wafer for analyzing micronic biological samples
DE68922390T2 (en)*1988-10-211995-10-05Molecular Devices Corp METHOD AND APPARATUS FOR MEASURING THE EFFECTS OF CELL EFFECTIVE AGENTS ON LIVING CELLS.
US5750015A (en)*1990-02-281998-05-12Soane BiosciencesMethod and device for moving molecules by the application of a plurality of electrical fields
US5126022A (en)*1990-02-281992-06-30Soane Tecnologies, Inc.Method and device for moving molecules by the application of a plurality of electrical fields
EP0497077B1 (en)*1991-01-281996-07-17Ciba-Geigy AgDevice for preparing samples for analyses
US5223219A (en)*1992-04-101993-06-29Biotrack, Inc.Analytical cartridge and system for detecting analytes in liquid samples
US5637469A (en)*1992-05-011997-06-10Trustees Of The University Of PennsylvaniaMethods and apparatus for the detection of an analyte utilizing mesoscale flow systems
US5498392A (en)*1992-05-011996-03-12Trustees Of The University Of PennsylvaniaMesoscale polynucleotide amplification device and method
US5304487A (en)*1992-05-011994-04-19Trustees Of The University Of PennsylvaniaFluid handling in mesoscale analytical devices
US5726026A (en)*1992-05-011998-03-10Trustees Of The University Of PennsylvaniaMesoscale sample preparation device and systems for determination and processing of analytes
GB9307319D0 (en)*1993-04-071993-06-02British Tech GroupLiquid transfer devices
DE59410283D1 (en)*1993-11-112003-06-18Aclara Biosciences Inc Device and method for the electrophoretic separation of fluid substance mixtures
DE4402119C2 (en)*1994-01-251998-07-23Karlsruhe Forschzent Process for the production of micromembrane pumps
US6001229A (en)*1994-08-011999-12-14Lockheed Martin Energy Systems, Inc.Apparatus and method for performing microfluidic manipulations for chemical analysis
US5571410A (en)*1994-10-191996-11-05Hewlett Packard CompanyFully integrated miniaturized planar liquid sample handling and analysis device
US5585069A (en)*1994-11-101996-12-17David Sarnoff Research Center, Inc.Partitioned microelectronic and fluidic device array for clinical diagnostics and chemical synthesis
US5603351A (en)*1995-06-071997-02-18David Sarnoff Research Center, Inc.Method and system for inhibiting cross-contamination in fluids of combinatorial chemistry device
US5856174A (en)*1995-06-291999-01-05Affymetrix, Inc.Integrated nucleic acid diagnostic device
US20010055812A1 (en)*1995-12-052001-12-27Alec MianDevices and method for using centripetal acceleration to drive fluid movement in a microfluidics system with on-board informatics
US5942443A (en)*1996-06-281999-08-24Caliper Technologies CorporationHigh throughput screening assay systems in microscale fluidic devices
US5885470A (en)*1997-04-141999-03-23Caliper Technologies CorporationControlled fluid transport in microfabricated polymeric substrates
US5779868A (en)*1996-06-281998-07-14Caliper Technologies CorporationElectropipettor and compensation means for electrophoretic bias
AU726987B2 (en)*1996-06-282000-11-30Caliper Life Sciences, Inc.Electropipettor and compensation means for electrophoretic bias
NZ333346A (en)1996-06-282000-03-27Caliper Techn CorpHigh-throughput screening assay systems in microscale fluidic devices
US5800690A (en)*1996-07-031998-09-01Caliper Technologies CorporationVariable control of electroosmotic and/or electrophoretic forces within a fluid-containing structure via electrical forces
US5699157A (en)*1996-07-161997-12-16Caliper Technologies Corp.Fourier detection of species migrating in a microchannel
PL335482A1 (en)*1997-02-282000-04-25Burstein LabLaboratory in an optical disk
KR100351531B1 (en)*1997-04-252002-09-11캘리퍼 테크놀로지스 코포레이션Microfludic devices incorporating improved channel geometries
US5976336A (en)*1997-04-251999-11-02Caliper Technologies Corp.Microfluidic devices incorporating improved channel geometries
US5869004A (en)*1997-06-091999-02-09Caliper Technologies Corp.Methods and apparatus for in situ concentration and/or dilution of materials in microfluidic systems
US5882465A (en)*1997-06-181999-03-16Caliper Technologies Corp.Method of manufacturing microfluidic devices
US5876675A (en)*1997-08-051999-03-02Caliper Technologies Corp.Microfluidic devices and systems
US6103537A (en)*1997-10-022000-08-15Aclara Biosciences, Inc.Capillary assays involving separation of free and bound species
US5842787A (en)*1997-10-091998-12-01Caliper Technologies CorporationMicrofluidic systems incorporating varied channel dimensions
US5948227A (en)*1997-12-171999-09-07Caliper Technologies Corp.Methods and systems for performing electrophoretic molecular separations
US6062261A (en)*1998-12-162000-05-16Lockheed Martin Energy Research CorporationMicrofluIdic circuit designs for performing electrokinetic manipulations that reduce the number of voltage sources and fluid reservoirs
US6150119A (en)*1999-01-192000-11-21Caliper Technologies Corp.Optimized high-throughput analytical system
US6972198B2 (en)*1999-02-262005-12-06Cyclacel, Ltd.Methods and compositions using protein binding partners
US6858185B1 (en)*1999-08-252005-02-22Caliper Life Sciences, Inc.Dilutions in high throughput systems with a single vacuum source

Cited By (112)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20030186426A1 (en)*2000-03-152003-10-02The Regents Of The University Of CaliforniaMultichannel flow cell for interacting single optically trapped, DNA molecules with different chemical species
US20050011761A1 (en)*2000-10-312005-01-20Caliper Technologies Corp.Microfluidic methods, devices and systems for in situ material concentration
US7419784B2 (en)2002-04-022008-09-02Dubrow Robert SMethods, systems and apparatus for separation and isolation of one or more sample components of a sample biological material
AU2003228395B2 (en)*2002-04-022006-12-21Caliper Life Sciences, Inc.Methods and apparatus for separation and isolation of components from a biological sample
WO2003084629A3 (en)*2002-04-022004-02-05Caliper Techn CorpMethods and apparatus for separation and isolation of components from a biological sample
US20050016851A1 (en)*2003-07-242005-01-27Jensen Klavs F.Microchemical method and apparatus for synthesis and coating of colloidal nanoparticles
US20100279310A1 (en)*2003-12-312010-11-04President And Fellows Of Harvard CollegeAssay device and method
US10082507B2 (en)2003-12-312018-09-25President And Fellows Of Harvard CollegeAssay device and method
US8574924B2 (en)2003-12-312013-11-05President And Fellows Of Harvard CollegeAssay device and method
US20070298433A1 (en)*2003-12-312007-12-27President And Fellows Of Harvard CollegeAssay Device and Method
US7736890B2 (en)2003-12-312010-06-15President And Fellows Of Harvard CollegeAssay device and method
US8030057B2 (en)2004-01-262011-10-04President And Fellows Of Harvard CollegeFluid delivery system and method
US20080038839A1 (en)*2004-01-262008-02-14Vincent LinderFluid Delivery System And Method
US8389272B2 (en)2004-01-262013-03-05President And Fellows Of Harvard CollegeFluid delivery system and method
US9116148B2 (en)2004-01-262015-08-25President And Fellows Of Harvard CollegeFluid delivery system and method
US10048252B2 (en)2004-01-262018-08-14President And Fellows Of Harvard CollegeFluid delivery system and method
US20070243627A1 (en)*2004-09-302007-10-18Shuichi TakayamaComputerized control method and system for microfluidics and computer program product for use therein
US9683993B2 (en)2005-04-192017-06-20President And Fellows Of Harvard CollegeFluidic structures including meandering and wide channels
US8501416B2 (en)2005-04-192013-08-06President And Fellows Of Harvard CollegeFluidic structures including meandering and wide channels
EP2636755A1 (en)2006-05-262013-09-11AltheaDx IncorporatedBiochemical analysis of partitioned cells
JP7168529B2 (en)2006-10-132022-11-09ラブラドール ダイアグノスティクス エルエルシー Reduction of optical interference in fluidic devices
US20100291609A1 (en)*2006-10-132010-11-18Ian GibbonsReducing Optical Interference in a Fluidic Device
US11215610B2 (en)2006-10-132022-01-04Labrador Diagnostics LlcReducing optical interference in a fluidic device
US8012744B2 (en)2006-10-132011-09-06Theranos, Inc.Reducing optical interference in a fluidic device
US8470524B2 (en)2006-10-132013-06-25Theranos, Inc.Reducing optical interference in a fluidic device
JP2022180441A (en)*2006-10-132022-12-06ラブラドール ダイアグノスティクス エルエルシー Reduction of optical interference in fluidic devices
JP2019219411A (en)*2006-10-132019-12-26セラノス アイピー カンパニー エルエルシーReducing optical interference in fluidic device
JP2014194430A (en)*2006-10-132014-10-09Theranos IncReduction in optical interference in fluid device
US8008034B2 (en)*2006-10-132011-08-30Theranos, Inc.Reducing optical interference in a fluidic device
US11442061B2 (en)2006-10-132022-09-13Labrador Diagnostics LlcReducing optical interference in a fluidic device
JP2017215341A (en)*2006-10-132017-12-07セラノス, インコーポレイテッドReduction in optical interference in fluid device
US20080090256A1 (en)*2006-10-132008-04-17Ian GibbonsReducing optical interference in a fluidic device
JP2010522866A (en)*2006-10-132010-07-08セラノス, インコーポレイテッド Reduction of optical interference in fluidic devices.
US10067123B2 (en)2006-10-132018-09-04Theranos Ip Company LlcReducing optical interference in a fluidic device
JP2013101155A (en)*2006-10-132013-05-23Theranos IncReduction in optical interference in fluid device
US20210086172A1 (en)*2007-03-272021-03-25Inflammatix, Inc.Fluidic Methods
US9234888B2 (en)2007-05-042016-01-12Opko Diagnostics, LlcFluidic connectors and microfluidic systems
US10775369B2 (en)2007-05-042020-09-15Opko Diagnostics, LlcFluidic systems for analyses
US8475737B2 (en)2007-05-042013-07-02Opko Diagnostics, LlcFluidic connectors and microfluidic systems
US8409527B2 (en)2007-05-042013-04-02Opko Diagnostics, LlcFluidic connectors and microfluidic systems
US20080273918A1 (en)*2007-05-042008-11-06Claros Diagnostics, Inc.Fluidic connectors and microfluidic systems
US10408824B2 (en)2007-05-042019-09-10Opko Diagnostics, LlcFluidic connectors and microfluidic systems
US9075047B2 (en)2007-05-042015-07-07Opko Diagnostics, LlcFluidic connectors and microfluidic systems
US8802445B2 (en)2007-05-042014-08-12Opko Diagnostics, LlcFluidic connectors and microfluidic systems
US8202492B2 (en)2007-05-042012-06-19Opko Diagnostics, LlcFluidic connectors and microfluidic systems
US8016260B2 (en)2007-07-192011-09-13Formulatrix, Inc.Metering assembly and method of dispensing fluid
US20090020556A1 (en)*2007-07-192009-01-22Kabir James MukaddamMetering assembly and method of dispensing fluid
US20090211908A1 (en)*2008-01-232009-08-27Javier FarinasDevices and methods for detecting and quantitating nucleic acids using size-separation of amplicons
US10159978B2 (en)2008-04-252018-12-25Opko Diagnostics, LlcFlow control in microfluidic systems
US8222049B2 (en)2008-04-252012-07-17Opko Diagnostics, LlcFlow control in microfluidic systems
US20090266421A1 (en)*2008-04-252009-10-29Claros Diagnostics, Inc.Flow control in microfluidic systems
US9592505B2 (en)2008-04-252017-03-14Opko Diagnostics, LlcFlow control in microfluidic systems
US9849455B2 (en)2008-04-252017-12-26Opko Diagnostics, LlcFlow control in microfluidic systems
US20120100521A1 (en)*2008-05-162012-04-26Soper Steven AMicrofluidic Isolation of Tumor Cells or Other Rare Cells from Whole Blood or Other Liquids
US10416150B2 (en)2008-05-162019-09-17Board Of Supervisors Of Louisiana State University And Agricultural And Mechanical CollegeMicrofluidic isolation of tumor cells or other rare cells from whole blood or other liquids
US10429376B2 (en)*2008-05-162019-10-01Board Of Supervisors Of Louisiana State University And Agricultural And Mechanical CollegeMicrofluidic isolation of tumor cells or other rare cells from whole blood or other liquids
US8591829B2 (en)2008-12-182013-11-26Opko Diagnostics, LlcReagent storage in microfluidic systems and related articles and methods
US9878324B2 (en)2008-12-182018-01-30Opko Diagnostics, LlcReagent storage in microfluidic systems and related articles and methods
US10589265B2 (en)2008-12-182020-03-17Opko Diagnostics, LlcReagent storage in microfluidic systems and related articles and methods
US9561506B2 (en)2008-12-182017-02-07Opko Diagnostics, LlcReagent storage in microfluidic systems and related articles and methods
US20100187452A1 (en)*2009-01-232010-07-29Formulatrix, Inc.Microfluidic dispensing assembly
US20100186841A1 (en)*2009-01-232010-07-29Formulatrix, Inc.Microfluidic dispensing assembly
US8100293B2 (en)2009-01-232012-01-24Formulatrix, Inc.Microfluidic dispensing assembly
US8550298B2 (en)2009-01-232013-10-08Formulatrix, Inc.Microfluidic dispensing assembly
US8221700B2 (en)2009-02-022012-07-17Opko Diagnostics, LlcStructures for controlling light interaction with microfluidic devices
US9827564B2 (en)2009-02-022017-11-28Opko Diagnostics, LlcFluidic systems and methods for analyses
US8802029B2 (en)2009-02-022014-08-12Opko Diagnostics, LlcStructures for controlling light interaction with microfluidic devices
US20100196207A1 (en)*2009-02-022010-08-05David SteinmillerStructures for controlling light interaction with microfluidic devices
US8480975B2 (en)2009-02-022013-07-09Opko Diagnostics, LlcStructures for controlling light interaction with microfluidic devices
US9827563B2 (en)2009-02-022017-11-28Opko Diagnostics, LlcFluidic systems and methods for analyses
US9770715B2 (en)2009-02-022017-09-26Opko Diagnostics, LlcStructures for controlling light interaction with microfluidic devices
US10413899B2 (en)2009-11-242019-09-17Opko Diagnostics, LlcFluid mixing and delivery in microfluidic systems
US9731291B2 (en)2009-11-242017-08-15Opko Diagnostics, LlcFluid mixing and delivery in microfluidic systems
US8567425B2 (en)2009-11-242013-10-29Opko Diagnostics, LlcFluid mixing and delivery in microfluidic systems
US20110120562A1 (en)*2009-11-242011-05-26Claros Diagnostics, Inc.Fluid mixing and delivery in microfluidic systems
US9075051B2 (en)2009-11-242015-07-07Opko Diagnostics, LlcFluid mixing and delivery in microfluidic systems
US9861980B2 (en)2009-11-242018-01-09Opko Diagnostics, LlcFluid mixing and delivery in microfluidic systems
US10953398B2 (en)2009-11-242021-03-23Opko Diagnostics, LlcFluid mixing and delivery in microfluidic systems
US8915259B2 (en)2009-11-242014-12-23Opko Diagnostics, LlcFluid mixing and delivery in microfluidic systems
US9555408B2 (en)2009-11-242017-01-31Opko Diagnostics, LlcFluid mixing and delivery in microfluidic systems
US9116124B2 (en)2010-04-162015-08-25Opko Diagnostics, LlcFeedback control in microfluidic systems
US8932523B2 (en)2010-04-162015-01-13Opko Diagnostics, LlcSystems and devices for analysis of samples
US8580569B2 (en)2010-04-162013-11-12Opko Diagnostics, LlcFeedback control in microfluidic systems
US11458473B2 (en)2010-04-162022-10-04Opko Diagnostics, LlcSystems and devices for analysis of samples
US8765062B2 (en)2010-04-162014-07-01Opko Diagnostics, LlcSystems and devices for analysis of samples
US9981266B2 (en)2010-04-162018-05-29Opko Diagnostics, LlcFeedback control in microfluidic systems
US10456784B2 (en)2010-04-162019-10-29Opko Diagnostics, LlcSystems and devices for analysis of samples
US9682376B2 (en)2010-04-162017-06-20Opko Diagnostics, LlcSystems and devices for analysis of samples
US9643182B2 (en)2010-04-162017-05-09Opko Diagnostics, LlcSystems and devices for analysis of samples
USD645971S1 (en)2010-05-112011-09-27Claros Diagnostics, Inc.Sample cassette
US9182353B2 (en)2010-07-222015-11-10Hach CompanyLab-on-a-chip for alkalinity analysis
US10156563B2 (en)*2011-02-182018-12-18Koninklijke Philips N.V.Measurement chip, microfluidic device and method
US20140338753A1 (en)*2011-09-282014-11-20President And Fellows Of Harvard CollegeSystems and methods for droplet production and/or fluidic manipulation
US11389800B2 (en)*2011-09-282022-07-19President And Fellows Of Harvard CollegeSystems and methods for droplet production and/or fluidic manipulation
KR101385996B1 (en)2011-12-232014-04-17한국전기연구원Micro fluidic chip for lyase reaction
US10672503B2 (en)2012-03-052020-06-02Opko Diagnostics, LlcMethods and apparatuses for conducting analyses
US9180449B2 (en)2012-06-122015-11-10Hach CompanyMobile water analysis
USD768872S1 (en)2012-12-122016-10-11Hach CompanyCuvette for a water analysis instrument
US9255866B2 (en)2013-03-132016-02-09Opko Diagnostics, LlcMixing of fluids in fluidic systems
US9588027B2 (en)2013-03-132017-03-07UPKO Diagnostics, LLCMixing of fluids in fluidic systems
US10684201B2 (en)2013-03-132020-06-16Opko Diagnostics, LlcMixing of fluids in fluidic systems
US10539582B2 (en)2014-06-302020-01-21Phc Holdings CorporationSubstrate for sample analysis, sample analysis device, sample analysis system, and method for removing liquid from liquid that contains magnetic particles
US10539560B2 (en)2014-06-302020-01-21Phc Holdings CorporationSubstrate for sample analysis, and sample analysis apparatus
US10520521B2 (en)2014-06-302019-12-31Phc Holdings CorporationSubstrate for sample analysis, sample analysis device, sample analysis system, and program for sample analysis system
US10309976B2 (en)2014-06-302019-06-04Phc Holdings CorporationSubstrate for sample analysis, sample analysis device, sample analysis system, and program for sample analysis system
US10279345B2 (en)2014-12-122019-05-07Opko Diagnostics, LlcFluidic systems comprising an incubation channel, including fluidic systems formed by molding
US11253853B2 (en)2014-12-122022-02-22Opko Diagnostics, LlcFluidic systems comprising an incubation channel, including fluidic systems formed by molding
US10539583B2 (en)2014-12-122020-01-21Phc Holdings CorporationSubstrate for sample analysis, sample analysis device, sample analysis system, and program for sample analysis system
USD804682S1 (en)2015-08-102017-12-05Opko Diagnostics, LlcMulti-layered sample cassette
USD817511S1 (en)2015-08-102018-05-08Opko Diagnostics, LlcMulti-layered sample cassette
US10852310B2 (en)2015-12-112020-12-01Opko Diagnostics, LlcFluidic systems involving incubation of samples and/or reagents
US20240328957A1 (en)*2023-04-032024-10-03Burst Diagnostics LlcChemiluminescence microfluidic immunoassay device and methods of use thereof

Also Published As

Publication numberPublication date
EP1147417A4 (en)2006-06-28
CA2357761A1 (en)2000-08-03
US7276330B2 (en)2007-10-02
AU770913B2 (en)2004-03-04
AU2745200A (en)2000-08-18
EP1147417A1 (en)2001-10-24
US20030215863A1 (en)2003-11-20
WO2000045172A9 (en)2001-10-11
WO2000045172A1 (en)2000-08-03

Similar Documents

PublicationPublication DateTitle
US7276330B2 (en)Devices, systems and methods for time domain multiplexing of reagents
US6524790B1 (en)Apparatus and methods for correcting for variable velocity in microfluidic systems
US6613580B1 (en)Microfluidic systems and methods for determining modulator kinetics
EP1153285B1 (en)Method and apparatus for continuous liquid flow in microscale channels using wicking
US6529835B1 (en)High throughput methods, systems and apparatus for performing cell based screening assays
US6592821B1 (en)Focusing of microparticles in microfluidic systems
US6589729B2 (en)Methods, devices, and systems for monitoring time dependent reactions
AU770678B2 (en)Focusing of microparticles in microfluidic systems
JP2001502790A (en) High-throughput screening assay system for micro-scale fluidic devices
EP1409989A2 (en)Microfluidic devices and systems for separating components of a mixture
EP1088229A1 (en)High throughput methods, systems and apparatus for performing cell based screening assays
JP2003075444A (en) Measuring chip for measuring object, measuring device for measuring object, and measuring method for measuring object
CA2549094A1 (en)System
WO2001057509A1 (en)Methods, devices, and systems for monitoring time dependent reactions
AU7175500A (en)Apparatus and methods for correcting for variable velocity in microfluidic systems

Legal Events

DateCodeTitleDescription
ASAssignment

Owner name:CALIPER TECHNOLOGIES CORP., CALIFORNIA

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:CHOW, CALVIN Y.H.;PARCE, J. WALLACE;REEL/FRAME:009783/0046;SIGNING DATES FROM 19990216 TO 19990219

STCBInformation on status: application discontinuation

Free format text:ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION


[8]ページ先頭

©2009-2025 Movatter.jp