Claims
- 1. A gel electrophoresis cassette, which includes two plates and at least one seal separating these plates, the seal being implemented as a one-piece, annular seal and may essentially be positioned in the region of the outer edge of the plates, one of these plates comprising in its plane within the annular seal a recess,
wherein the size and shape of this recess is adapted to a strip holder with a base plate comprising a carrier surface for accommodating a gel strip for the isoelectric focusing of molecules using gel electrophoresis, the base plate including at least one stop, which is offset to a lower level in relation to the carrier surface and at least one sealing surface, this stop being implemented to be applied to counter surfaces of an electrophoresis chamber, wherein by the offset of this stop to a lover level in relation to the carrier surface, the installation depth of the strip holder, which carries a gel strip, into this electrophoresis cassette is determined, and whereby the strip holder is insertable into this recess in such a way that the stop of the base plate is applied to the outer surface of the plate and the sealing surface presses tightly against the inner surface of the recess.
- 2. The cassette according to claim 1,
wherein the seal is implemented as a flat seal and includes a peripheral, annular, elastically deformable sealing edge on both of the sides which press against the plates.
- 3. The cassette according to claim 1,
wherein the seal is implemented as an O-ring seal with one or two O-rings.
- 4. The cassette according to claim 1,
wherein the seal is implemented as a lip seal with one or two sealing lips.
- 5. The cassette according to one of the claims 2, 3 or 4,
wherein at least one of the two plates has elevations implemented for being abutted by the other plate, these elevations defining the measure of deformation of the seal and therefore the distance of the plates to each other.
- 6. The cassette according to claim 1,
wherein at least one of the plates includes first openings and/or second openings, positioned in the region of the space defined inside the seal, for ventilation or for introducing a gel, buffer, or stain.
- 7. The cassette according to claim 1,
wherein at least one of the plates includes third openings, positioned in the region of the space covered inside the seal, for introducing a separating medium or for applying a partial vacuum.
- 8. A system for performing 2-D gel electrophoresis,
which comprises a working platform for arranging one or more gel electrophoresis cassettes according to claim 1 for performing an SDS-PAGE gel electrophoresis.
- 9. The system according to claim 8,
which further comprises one or more chambers for the isoelectric focusing of molecules in gel strips, whereby each one of these chambers comprises a strip holder insertable into a recess in plates of a gel electrophoresis cassette and a frame having a peripheral wall and an upper and lower counter surface, the strip holder being insertable into the frame in such a way that at least one stop is applied to the lower counter surface and the sealing surface presses tightly against an inner surface of the wall.
- 10. The system according to claim 8 or 9,
which comprises a temperature control device for the SDS-PAGE cassettes and/or the IEF Chambers.
- 11. The system according to claim 10,
the temperature control device for the SDS-PAGE cassettes comprising at least one temperature control wall, which controls the temperature of the gel during the polymerization and/or during the electrophoresis via a planar contact with the cassette wall, wherein the temperature control device includes two temperature control walls, which accommodate a cassette between them and which each include suction openings directed toward a wall of the inserted cassette.
- 12. The system according to claim 9,
which comprises a robot arm for transferring individual parts of the chambers and/or cassettes to and from these IEF chambers and/or these SDS-PAGE cassettes, as well as a computer for controlling the robot, a single-channel high-voltage control for individual control of the IEF chambers, and a display screen.
- 13. A 2-D gel electrophoresis method,
wherein a dehydrated gel strip is positioned on the carrier surface of a base plate of a strip holder, this base plate comprising at least one stop offset to a lower level in relation to the carrier surface and at least one sealing surface, whereby this stop being implemented to be applied to counter surfaces of an IEF-chamber as well as of an SDS-PAGE cassette, and by the offset of this stop to a lover level in relation to the carrier surface the installation depth of the strip holder, which carries a gel strip, in this electrophoresis cassette is determined.
- 14. The method according to claim 13,
wherein this strip holder is inserted into a frame having a peripheral wall as well as an upper and lower counter surface to form an IEF-chamber in such a way that the at least one stop is applied to the lower counter surface and the sealing surface presses tightly against an inner surface of the wall, the gel strip is layered with rehydration solution in the inside of this chamber, and a sample is applied to the gel strip.
- 15. The method according to claim 14,
wherein the sample is applied to the gel and the chamber is closed with a cover to be applied to the upper counter surface of the frame and with two electrode holders insertable in this cover, in that the electrode holders are inserted in an upper or lower level, through which one electrode at a time, which are each restrictedly movable perpendicular to the surface of a gel strip lying on the carrier surface of the strip holder, is positioned at an interval to this surface or comes into contact with this surface.
- 16. The method according to claim 15,
the gel strips being subjected to electrical high voltage via the electrodes until the isoelectric focusing of the molecules in the gel has occurred and the temperature of the gel being controlled during this electrophoresis of the first dimension using a temperature control device, wherein the electrical high-voltage is generated using a single-channel control device, which regulates the electrical current parameters and, in addition, stores them so they may be called up and, for example, displayed on a display screen.
- 17. The method according to claim 13,
wherein an SDS-PAGE cassette according to claim 1 is positioned between two temperature control walls of a system for performing 2-D gel electrophoresis according to the claims 10 or 11, and the walls are applied to it in such a way that the seal is elastically deformed and the interval between the plates of the cassette is essentially defined by elevations on one plate implemented for being abutted by the other plate, and wherein a partial vacuum is produced between each plate of the cassette and each temperature control wall via the suction openings.
- 18. The method according to claim 17,
wherein the recess is sealed using a gel comb or a blank cover, and wherein, while using a blank cover, a means for defining a straight casting edge of the gel to be cast is put into the cassette and a free-flowing gel material and a displacement liquid, which is not miscible with this gel material, are introduced into the cassette via the second openings to define a first buffer volume.
- 19. The method according to claim 18,
wherein glass fiber stripes with holes are laid between the plates of the cassette, and wherein these glass fibers are at least partially polymerized into the gel material.
- 20. The method according to claim 18,
wherein the seal comprises clips, these clips are laid between the plates of the cassette and are then polymerized into the gel material.
- 21. The method according to claim 19 or 20,
wherein the SDS gel is polymerized in the cassette under controlled temperature conditions, and—if present—the means for defining a straight casting edge in the SDS gel and the displacement liquid are removed from the cassette, a strip holder having an IEF strip is sealingly inserted into the recess, and—while forming a second buffer volume—a contact gel for producing contact of the IEF strip to the SDS gel is introduced into the cassette via the first openings and polymerized.
- 22. The method according to claim 21,
wherein the first and second buffer volumes are essentially filled with buffer solution via the second and first openings, these buffer volumes are each connected to a pole of a high-voltage source, and the SDS gel electrophoresis is performed under controlled temperature conditions.
- 23. The method according to claim 22,
wherein the SDS gel electrophoresis is performed in a position of the cassette standing upright lengthwise.
- 24. The method according to claim 22 or 23,
wherein, for staining and/or scanning the SDS gel, a separating medium is introduced via the third openings in at least one cassette wall and one plate or both plates of the cassette are separated from the SDS gel and the seal, after which one or both exposed surfaces of the SDS gel are exposed to a staining solution and aligned in relation to a scanning device after the staining.
- 25. The method according to claim 24,
wherein the SDS-gel is taken off a plate by approaching a taking-off cylinder comprising take-off pins is approached to the holes of the glass fiber stripes polymerized into the gel until the taking-off pins engage with the holes in the glass fiber stripes, after which the SDS-gel is taken up by the rotating take-off cylinder.
- 26. The method according to claim 25,
wherein the taking-off cylinder comprises suction holes situated on its surface, by which at least one or more glass fiber stripes polymerized into the gel are attracted together with an adjacent portion of the gel and are held on the take-off cylinder.
- 27. The method according to claim 13,
wherein all method steps are automatically performed in a system according to claim 7.
Priority Claims (1)
Number |
Date |
Country |
Kind |
CH 0611/02 |
Apr 2002 |
CH |
|
RELATED APPLICATION DATA
[0001] This patent application claims priority of the Swiss patent application No. CH 0611/02 filed on Apr. 12, 2002 and of the U.S. provisional application No. 60/377,326 filed on May 2, 2002. The entire disclosure of the text and the drawings of this US provisional application is incorporated into this regular application by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60377326 |
May 2002 |
US |