AU2008317492A1

Intergrated apparatus for performing nucleic acid extraction and diagnostic testing on multiple biological samples

Abstract

The present technology provides for an apparatus for detecting polynucleotides in samples, particularly from biological samples. The technology more particularly relates to microfluidic systems that carry out PCR on nucleotides of interest within microfluidic channels, and detect those nucleotides. The apparatus includes a microfluidic cartridge that is configured to accept a plurality of samples, and which can carry out PCR on each sample individually, or a group of, or all of the plurality of samples simultaneously.

Term

1.8 yearsto projected expiry

Projected expiry 14 July 2028, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

84 claims: 10 independent, 74 dependent

  1. 1
    WHAT IS CLAIMED IS:1. A diagnostic apparatus, comprising: a first module configured to extract nucleic acid simultaneously from a plurality of nucleic-acid containing samples, wherein the first module comprises: one or more racks, each configured to accept a number of samples and a corresponding number of holders, wherein each holder comprises a process chamber, a waste chamber, one or more pipette tips, and one or more receptacles, wherein the one or more receptacles contain respectively sufficient quantities of one or more reagents for carrying out extraction of nucleic acid from a sample;a magnetic separator configured to move relative to the process chambers of each holder;a heater assembly configured to independently heat each of the process chambers;and a liquid dispenser configured to carry out fluid transfer operations on two or more holders simultaneously;and a second module configured to simultaneously amplify the nucleic acid extracted from the plurality of samples, wherein the second module comprises: one or more bays, each configured to receive a microfluidic cartridge, wherein the cartridge is configured to separately accept and to separately amplify the nucleic acid extracted from multiple samples;and one or more detection systems.
  2. 37
    The apparatus of claim 37, wherein the aluminum is 0.1 - 1 microns thick, and the polypropylene is 25 - 30 microns thick.
  3. 38
    The apparatus of claims 34 or 36, wherein the polymer layer is polypropylene. - 140WO 2009/054870 PCT/US2008/008640
  4. 70
    A diagnostic apparatus comprising:one or more racks, on each of which is mounted a number of nucleic acid containing samples and a corresponding number of holders, wherein each holder comprises a process chamber, a waste chamber, one or more pipette tips, and one or more receptacles, wherein the one or more receptacles contain, respectively, sufficient quantities of one or more reagents for carrying out extraction of nucleic acid from a sample;a magnetic separator movable from a first position to a second position adjacent to the process chamber of each of the one or more holders;a heater assembly comprising a number of heater units, each of which is in thermal contact with one of the process chambers;one or more bays, each bay having a shape complementary to a shape of a microfluidic cartridge, wherein the cartridge comprises a number of inlets each of which is in fluid communication with one of a number of channels in which nucleic acid extracted from one of the number of samples is amplified, and wherein the cartridge further comprises one or more windows that permit detection of amplified nucleic acid;a liquid dispenser having one or more dispensing heads, wherein the liquid dispenser is movable from a first position above a first holder to a second position above a second holder, and is movable from the first position above the first holder to a - 144WO 2009/054870 PCT/US2008/008640 different position above the first holder, and is further movable from a position above one of the holders to a position above one of the number of inlets;and one or more detection systems positioned in proximity to the one or more windows.
  5. 71
    A diagnostic instrument comprising:a liquid handling unit that extracts nucleic acid from a sample in a unitized reagent strip;a microfluidic cartridge that, in conjunction with a heater element, carries out realtime PCR on nucleic acid extracted from the sample;and a detector that provides a user with a diagnosis of whether the sample contains a nucleotide of interest.
  6. 73
    A unitized reagent holder, comprising:a strip, to which is attached: a single process tube;one or more receptacles, each of which holding a reagent selected from the group consisting of: a sample preparation reagent, PCR reagents for a first analyte, and one or more liquid reagents;a waste tube;one or more sockets configured to hold one or more pipette tips;and a pipette tip sheath configured to surround the one or more pipette tips.
  7. 79
    A liquid dispenser, comprising:one or more sensors;a manifold;one or more pumps in fluid communication with the manifold;one or more dispense heads in fluid communication with the manifold;a gantry that provides freedom of translational motion in three dimensions;and electrical connections that accept electrical signals from an external controller, wherein the liquid dispenser has no inlet or outlet for fluids, other than through the one or more pumps.
  8. 80
    A separator for magnetic particles, comprising:one or more magnets aligned linearly;a motorized shaft upon which the one or more magnets can rise or fall in such a manner that the one or more magnets attains close proximity to one or more receptacles containing magnetic particles;and control circuitry to control motion of the motorized shaft.
  9. 81
    An integrated separator and heater, comprising:a heater assembly, wherein the heater assembly comprises a plurality of independently controllable heater units, each of which is configured to accept and to heat a process chamber;one or more magnets aligned linearly;a motorized shaft upon which the one or more magnets can rise or fall in such a manner that the one or more magnets attains close proximity to one or more of the process chambers;and control circuitry to control motion of the motorized shaft and heating of the heater units. - 146 WO 2009/054870 PCT/US2008/008640
  10. 83
    83/121 WO 2009/054870 PCT/US2008/008640
  11. 84
    84/121 Photodiodes FIG. 57 WO 2009/054870 PCT/US2008/008640 WO 2009/054870 PCT/US2008/008640 FIG. 59 WO 2009/054870 PCT/US2008/008640 87/121 FIG. 60 WO 2009/054870 PCT/US2008/008640 ω CD LL WO 2009/054870 n PCT/US2008/008640 +3.3V I+3.3V ~ +3.6V |+3.6V +5.0V | J -5.0V | J -10mV |-10mV O 4—» Σ5 CD Φ tr o ro CD FIG. 62 WO 2009/054870 PCT/US2008/008640 90/121 1702 Multi-pipettor Head Supported and Capable of Moving Up and Down in the Z-axis Fluid Distribution Head FIG. 63 WO 2009/054870 PCT/US2008/008640 CM co co Ν- Ο ο ο ο sr τ- 1403 1404 1403 ιο ο 2 vtWO 2009/054870 PCT/US2008/008640 92/121 CD in co WO 2009/054870 PCT/US2008/008640 CD CD cj ll WO 2009/054870 PCT/US2008/008640 94/121 CD c S ω Ό Peltier-cooled PCR Tube Holder (12 Tubes Each) ω Q o o u CL Φ Q. E 05 ω (12 Samples each) WO 2009/054870 PCT/US2008/008640 95/121 00 co LL WO 2009/054870 PCT/US2008/008640 WO 2009/054870 PCT/US2008/008640 97/121 FIG. 70 WO 2009/054870 PCT/US2008/008640 WO 2009/054870 PCT/US2008/008640 Tray WO 2009/054870 PCT/US2008/008640 Qi O CL g p jg <4— o I— ,g φ cz 32 I CM or o CL _c Φ CD O ,Έ ΗΞ L— T-Z C Q- Φ ro E m O < Q TJ CZ ro c o ro cz 100/121 o CL CZ _g o o o u I CM Φ CZ ro CM Jxi O O CO ω g '·£_ o CO CN LL WO 2009/054870 PCT/US2008/008640 101/121 FIG. 73 WO 2009/054870 PCT/US2008/008640 Cartridge Autoloader PCR Real-time Thermocycler ____ \ (4-color Scanner) FIG. 74 Ο_________ 102/121 OOCCXJOta ΌόόΟζΧ3^χ55ο^55β33ί5 SI la Q a WO 2009/054870 PCT/US2008/008640 103/121 m u0 LL WO 2009/054870 PCT/US2008/008640 104/121 FIG. 76 WO 2009/054870 PCT/US2008/008640 105/121 FIG. 77 WO 2009/054870 PCT/US2008/008640 LL WO 2009/054870 PCT/US2008/008640 Excitation Filter 1 Alignment Structures on the Bottom of the Aperture Plate Helps Align the Cartridge to the Apertures FIG. 79A WO 2009/054870 PCT/US2008/008640 Photodetector WO 2009/054870 PCT/US2008/008640 24 Lane PCR Cartridge WO 2009/054870 PCT/US2008/008640 FIG. 81 WO 2009/054870 PCT/US2008/008640 112/121 FIG. 83 WO 2009/054870 PCT/US2008/008640 113/121 FIG.84 WO 2009/054870 PCT/US2008/008640 % FIG. 85A WO 2009/054870 PCT/US2008/008640 Oht7 Wv 4 C /1 Okf 1 V 7 I L I 00V 069 099 QZ€ sc 099 QVS ii'i’-??!·' OSS Y 02S Y Qis Y TUS 062 092 022 092 OS? QV? QS? 02? 916 \\ 06- 09 'Y 02 y 99- Y Q9 9b 09. 02 - Ob 00 - 06 09 02 0$ Sc 99 OV 9$ Y/ oz Y Ol· Y CO co co IT) oo in X Φ iO X Φ LT3 X φ ω Φ 2 co c ¢/3 Q) s co a es s co r:ex c*5 Φ ex ex o5 Φ ex ex od Φ ex E Φ co E Φ co E φ co co TO ω ^r TO co CO TO co co Φ pen X c T“ CO ¢0 Φ pen X c LQ CO te s pen X c s5- TO L- co TO ex 2 CO TO .9- 2 .CO TO .9· ex X Φ _Q Cl ex X Φ n ex Q. X Φ .n ex TO aS _2 2 TO co’ 3 o TO co’ o L— Q_ οβ it CO X O« co X co X Φ co co X co s ω X ω co X u. π ο. UJ an CX LL j x an ex UJ c TO ex o o -f ex -2 o co ex o o CO C/) Φ Φ φ Φ LO o Φ Φ in C/) x cj o o X o o 6 X ω 6 6 X CL 2 2 2 CL 2 is CL S 2 CO in 00 LL WO 2009/054870 PCT/US2008/008640 —ςζζ ~ozz ///// 9(3 0(3 4 a n a r\A 903 110/ 121 003 96 06 98 08- 9Z . 02 ' 99- o 09. 99 09. ///// 9P 77777 OP 98- 08. 93 - 03- 9(- 0(- 90- 00 - 96 06 98 08 92 02 7//// 99 09 99 09 9V Oh 98 08 93 03 9( ·. -: ·'· · 0( 9 Sample Removal Pick up tips and aspirate sample waste 1-4 Dispense into waste Remove sample foam from 1-4 into waste Pick up tips and aspirate sample waste 5-8 Dispense into waste Remove sample foam from 5-8 into waste Pick up tips and aspirate sample waste 9-12 Dispense into waste Remove sample foam from 9-12 into waste FIG. 85C WO 2009/054870 PCT/US2008/008640 117/121 ▲ ▲ FIG. 86 Electronics Block Diagram WO 2009/054870 PCT/US2008/008640 118/121 Ethernet E 5 Port 10/100 Ethernet Hub Ethernet A Ethernets Ethernet C Ethernet D ¢^ To MUX Boards «< USB(2) Parallel Mouse From System Controller To Internal Interfaces 166 Γ164 VOA ) FIG. 87 Processor Base Board Block Diagram WO 2009/054870 PCT/US2008/008640 119/121 100a FIG. 88 MUX Board Block Diagram WO 2009/054870 PCT/US2008/008640 120/121 FIG. 89 MUX Board Block Diagram WO 2009/054870 PCT/US2008/008640 121/121 110a To Optics Board FIG. 90 Micro-Heater Board Block Diagram From MUX Board To Motors To Limit Sensors FIG. 91 Motor Control Board Block Diagram