Claims
- 1. A method of conducting a study of biomaterial comprising the steps of:
loading at least one substrate into a substrate holder; moving the substrate holder and the at least one substrate to a microarrayer; depositing a microarray of a first biomaterial on the at least one substrate in the substrate holder at the microarrayer; moving the substrate holder and at least one substrate to a hybridization station; hybridizing a second biomaterial to the first biomaterial on at least one substrate in the substrate holder at the hybridization station; moving the substrate holder and at least one substrate to a substrate dryer; drying the biomaterial on at least one substrate hybridized in the previous step; moving the substrate holder and the at least one substrate to a microarray analyzer station; and analyzing the second biomaterial on the at least one substrate in the substrate holder at the microarray analyzer.
- 2. The method according to claim 1, wherein the biomaterial is a plurality of polynucleotides.
- 3. The method according to claim 1, wherein the second biomaterial is cDNA probes.
- 4. The method according to claim 1, wherein the second biomaterial is oligonucleotide probes.
- 5. The method according to claim 1, wherein the step of loading the at least one substrate further includes:
opening a substrate lock on the substrate holder with a substrate loader; loading the at least one substrate into the substrate loader; and closing the lock with the substrate loader to lock the at least one substrate in the substrate holder.
- 6. The method according to claim 5, wherein:
the substrate loader includes at least one substrate aperture for accommodating the at least one substrate; and the substrate lock includes a plurality of spring loaders disposed around a periphery of the substrate aperture for locking and unlocking the substrate in the substrate holder.
- 7. The method according to claim 6, wherein the step of loading the at least one substrate further comprises:
moving the substrate holder with respect to the substrate loader to abut each of a plurality of pins extending from the substrate loader against a respective one of the spring loaders to open the substrate aperture and allow the substrate to be loaded in the substrate holder; and removing the substrate holder from the substrate loader to move each of the pins from abutment against respective ones of the spring loaders to allow the spring loaders to lock against an outer edge of the substrate.
- 8. The method according to claim 1, further comprising the step of removing the at least one substrate from the substrate holder after the step of analyzing the second biomaterial in the microarrayer.
- 9. The method according to claim 8, wherein the step of removing the at least one substrate further comprises:
pushing the at least one substrate with pins extending from a substrate loader to disengage the at least one substrate from a substrate locking mechanism.
- 10. The method according to claim 1, wherein the step of moving the substrate holder and the at least one substrate to the microarray analyzer station further comprises the steps of:
stacking the substrate holder on a plurality of other substrate holders; and moving the substrate holder from the stack of other substrate holders to the microarray analyzer station.
- 11. The method according to claim 10, wherein the step of moving a substrate holder from the plurality of other substrate holders to the microarray analyzer station is accomplished by using a robotic device.
- 12. The method according to claim 1, wherein the steps of moving the substrate holder to the hybridization station and moving the substrate holder to the microarray analyzer station is accomplished without contacting the substrate.
- 13. The method according to claim 1, wherein the substrate holder accommodates a plurality of substrates.
- 14. The method according to claim 1, further comprising the steps of:
moving the substrate holder and the at least one substrate to a slide dryer after the step of hybridizing; and drying the at least one substrate in the dryer before the step of moving the substrate holder and the at least one substrate to the microarray analyzer station.
- 15. The method according to claim 1, wherein the step of depositing the microarray is performed by a microarraying robot.
- 16. A substrate holder comprising:
a support structure having at least one substrate aperture recessed into a face of the support structure, the aperture sized to accommodate a substrate; and a plurality of substrate locking devices disposed around a periphery of the substrate aperture to lock the substrate in the aperture of the support structure.
- 17. The substrate holder according to claim 16, wherein the support structure further comprises:
a plurality of substrate apertures recessed from the face of the support structure, each of the plurality of substrate apertures sized to accommodate a respective one of a plurality of substrates; and each of the plurality of substrate apertures having respective pluralities of substrate locking devices to lock each of the plurality of substrates to respective ones of the plurality of apertures in the support structure.
- 18. A substrate loading kit comprising:
a substrate holder having at least one substrate aperture recessed from a face of the substrate holder for receiving a substrate, the substrate holder having a locking device disposed around a periphery of the substrate aperture; and a substrate loader having a member adapted to engage the locking device to open or close the locking device when the substrate holder is moved with respect to the substrate loader.
- 19. The substrate loading kit according to claim 18, where in:
the m ember is a plurality of pins extending from the substrate loader; the locking device is a plurality of locking devices, each of the plurality of locking devices includes:
a spring aperture; and a spring mounted within the spring aperture and extending through the spring aperture and into the substrate aperture; wherein movement of the substrate holder with respect to the substrate loader causes each one of the plurality of pins to abut each spring of the plurality of locking mechanisms to move each spring out of the substrate aperture.
- 20. The kit according to claim 18, further comprising a second set of pins extending from the substrate loader adapted to push the substrate out of the substrate aperture when the substrate abuts the second set of pins.
- 21. A method for loading substrates into a substrate holder comprising the steps of:
providing a substrate holder having:
at least one substrate aperture for accommodating a substrate; a spring aperture disposed around a periphery of the substrate aperture; a spring positioned in the spring aperture such that a portion of the spring extends into the substrate aperture; providing a substrate loader having:
a base portion; a pin extending from the base portion; placing the substrate holder on the substrate loader such that the pin extends through the spring aperture; moving the substrate holder with respect to the substrate loader to abut the spring with the pins to move the spring out of the substrate aperture; placing the substrate into the substrate aperture; and removing the substrate holder from the substrate loader to cause the spring to clamp against an edge portion of the substrate.
- 22. A method of conducting a study of biomaterial comprising the steps of:
loading at least one substrate into a substrate holder, the substrate having a preprinted microarray of a first biomaterial; moving the substrate holder and the at least one substrate to a hybridization station; hybridizing a second biomaterial to the first biomaterial on the at least one substrate in the substrate holder at the hybridization station; moving the substrate holder and the at least one substrate to a microarray analyzer station; and analyzing the second biomaterial on the at least one substrate in the substrate holder at the microarray analyzer.
- 23. The method according to claim 22, further comprising the steps of:
moving the substrate holder and the at least one substrate to a slide dryer after the step of hybridizing; and drying the at least one substrate in the dryer before the step of moving the substrate holder and the at least one substrate to the microarray analyzer station.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority based on U.S. Provisional Patent Application No. 60/293,934, filed May 29, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60293934 |
May 2001 |
US |