IP Library Granted Patent US 7,939,312
Granted Patent B2
US 7,939,312 · App. 11/697,917 · Granted May 10, 2011

Rapid thermocycler with movable cooling assembly

Assignee: DxNA LLC
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Quick Facts
Patent No.
US 7,939,312
App. No.
11/697,917
Granted
May 10, 2011
Kind
B2
Abstract

Methods and apparatus for effecting rapid thermocycling in connection with the polymerase chain reaction are disclosed. A sample assembly having a relatively small thermal mass is heated to desired PCR operating temperatures, and a separate cooling assembly is used to rapidly lower the temperature as required. In one embodiment, a sample assembly with an integrated heating element is isolated from a relatively large thermal mass cold sink when the temperature of a sample is to be raised or maintained, and brought in contact with the cold sink when the temperature is desired to be lowered.

Claims (32)

1. A thermocycler for use in connection with the amplification of DNA, said thermocycler comprising:

a sample module configured for holding at least one sample, said sample module having a first thermal mass;

a heating element positioned to supply heat to said sample module;

a cooling assembly configured to receive heat from said sample module and transmit heat to exterior said cooling assembly, said cooling assembly being movable between a first position wherein it is in thermal contact with said sample module to receive heat therefrom and a second position wherein it is spaced from said sample module, said cooling assembly having a second thermal mass larger than said first thermal mass and said cooling assembly having removing means operable to remove heat from said second thermal mass;

a mechanism for moving said cooling assembly between said first position and said second position; and

a controller connected to said heating element, said cooling assembly and said mechanism,

said controller being configured to operate said heating element between an on position in which said heating element supplies heat to said sample module and an off position in which it does not supply heat,

said controller being configured to operate said mechanism to position said cooling assembly in said second position when said heating element is in said on position and to position said cooling assembly in said first position when said heating element is in said off position, and

said controller being configured to operate said removing means to remove heat from said second thermal mass when said cooling assembly is in said second position.

2. The thermocycler of claim 1 , wherein the sample module has a top with an aperture formed therein for holding said at least one sample, and wherein said sample module has a bottom for thermal contact with said cooling assembly.

3. The thermocycler of claim 1 , wherein the first thermal mass is selected to change the temperature at the rate of at least 5 degrees C. per second.

4. The thermocycler of claim 1 , wherein the sample module has a plurality of sample wells.

5. The thermocycler of claim 1 , wherein the sample module has a bore therethrough, and wherein the heating element is sized for positioning within said bore.

6. The thermocycler of claim 1 , further including a housing, and wherein the sample module is mechanically associated with said housing to be held immobile relative to said housing.

7. The thermocycler of claim 2 , wherein the cooling assembly includes a cold sink having at least one side and a top surface positioned for contact with said bottom of said sample module and sized to effect heat transfer therebetween, and wherein said removing means includes at least one thermoelectric cooling device in contact with said at least one side of said cold sink.

8. The thermocycler of claim 1 , further comprising a PCR detection assembly which monitors the status of PCR during operation.

9. The thermocycler of claim 8 , wherein the controller controls the cycling of the temperature of the sample holder in response to the monitoring of the status of PCR during operation.

10. The thermocycler of claim 1 , further comprising a battery connected to said heating element, to said controller and to said cooling assembly.

11. The thermocycler of claim 7 wherein said cooling assembly includes a heat sink for removing heat from said thermoelectric cooling device.

12. The thermocycler of claim 11 wherein said cooling assembly includes a fan to urge air past said heat sink.

13. The thermocycler of claim 7 wherein said cold sink has two sides and where each side of said two sides has a thermoelectric cooling device in contact therewith, and wherein a heat sink is positioned proximate each of said thermoelectric cooling devices for removing heat therefrom.

14. The thermocycler of claim 1 wherein said cooling assembly has a bottom, and wherein said mechanism includes a solenoid and a lever, said mechanism includes a lever positioned to urge said cooling assembly from said second position toward said first position.

15. The thermocycler of claim 12 wherein said thermoelectric cooling device is secured to said side of said cold sink by a thermoconductive material.

16. A thermocycler for effecting a polymerase chain reaction (PCR) said thermocycler comprising:

a sample module configured for holding at least one sample, said sample module having a first thermal mass;

a heating element positioned to supply heat to said sample module;

a cooling assembly configured to receive heat from said sample module and transmit heat to exterior said cooling assembly, said cooling assembly being movable between a first position wherein it is in thermal contact with said sample module to receive heat therefrom and a second position wherein it is spaced from said sample module, said cooling assembly having a second thermal mass larger than said first thermal mass and said cooling assembly having removing means operable to remove heat from said second thermal mass;

a mechanism for moving said cooling assembly between said first position and said second position; and

a controller including a set of instructions to perform each step of said polymerase chain reaction (“PCR”) and connected to operate said heating element, said mechanism and said cooling assembly in accordance with said set of instructions,

said controller being configured to operate said heating element between an on position in which said heating element supplies heat to said sample module and an off position in which it does not supply heat,

said controller being configured to operate said mechanism to position said cooling assembly in said second position when said heating element is in said on position and to position said cooling assembly in said first position when said heating element is in said off position, and

said controller being configured to operate said removing means to remove heat from said second thermal mass when said cooling assembly is in said second position.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded Apr 9, 2020
From: DXNA LLC
To: GLORY BIOVENTURES, LLC
Reel/Frame 052360/0113 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2020
From: DXNA LLC
To: GENESTAT MOLECULAR DIAGNOSTICS, LLC
Reel/Frame 052322/0666 →
CORRECTION OF NATURE OF CONVEYANCE BY "COLLATERAL ASSIGNMENT" RECORDED AT REEL 024626, FRAME 0744. DXNA HEREBY CONFIRMS THE "COLLATERAL ASSIGNMENT" IS AN ACKNOWLEDGEMENT OF SECURITY INTEREST, WITH DXNA LLC RETAINING OWNERSHIP. Recorded Apr 21, 2011
From: DXNA LLC
To: GLORY BIOVENTURES LLC
Reel/Frame 026165/0670 →
COLLATERAL ASSIGNMENT Recorded Jul 1, 2010
From: DXNA LLC
To: GLORY BIOVENTURES LLC
Reel/Frame 024626/0744 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2008
From: ADVANCED MOLECULAR SYSTEMS, LLC
To: DXNA LLC
Reel/Frame 021050/0988 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2007
From: BICKMORE, WILLIAM D., JR., MR.; HUMMEL, JARED S., MR.; ROBERTS, DANVERN R., MR.
To: ADVANCED MOLECULAR SYSTEMS, LLC
Reel/Frame 019136/0270 →
Continuity (2)
Provisional Application 60824027 · Aug 30, 2006
Related Publication 20080057542A1 · Mar 6, 2008