Claims
- 1. A method for manufacturing a patch-clamp electrode structure from uncured polymeric material, comprising the following steps:
a) placing a predetermined amount of uncured polymeric material in a cavity to form a layer over a support surface; b) piercing said layer with a pointed plunger having a tip conforming to an aperture suitable for forming a high-resistance patch-clamp seal with a biological membrane; (c) curing the layer of polymeric material to form a solid plug within the cavity; and (d) removing the pointed plunger and the support surface from the plug.
- 2. The method of claim 1, wherein said cavity is a perforation in a well of a perfusion chamber.
- 3. The method of claim 1, wherein said pointed plunger conforms to a pointed tip of a patch-clamp micropipette.
- 4. The method of claim 1, wherein said pointed plunger is slidably coupled to a sleeve adapted for removable connection with the cavity.
- 5. The method of claim 1, wherein said support surface is provided by a finger removably coupled to the cavity on a side opposite to said pointed plunger.
- 6. The method of claim 1, wherein said support surface is made of plastic material.
- 7. The method of claim 1, wherein said polymeric material comprises a silicone polymer.
- 8. The method of claim 1, wherein said polymeric material comprises poly-dimethylsiloxane.
- 9. A patch-clamp electrode structure manufactured according to the method of claim 1.
- 10. A patch-clamp electrode structure comprising:
a support structure defining a cavity; a polymeric plug in the cavity; and an aperture through the polymeric plug; wherein said aperture conforms to a pointed tip of a patch-clamp micropipette.
- 11. The electrode structure of claim 10, wherein said polymeric plug comprises a cured silicone polymer.
- 12. The electrode structure of claim 10, wherein said polymeric plug comprises cured poly-dimethylsiloxane.
- 13. The electrode structure of claim 10, wherein said cavity includes a retaining protrusion for anchoring the polymeric plug.
- 14. The electrode structure of claim 10, wherein said aperture has a diameter of about 0.5-20 microns at a smaller end thereof.
- 15. The electrode structure of claim 10, wherein said aperture is at least 0.1 mm deep.
- 16. A method for manufacturing a multi-well tray containing a plurality of patch-clamp electrode structures formed from uncured polymeric material, comprising the following steps:
providing a tray with a plurality of wells and an electrode perforation in each well; placing a predetermined amount of uncured polymeric material in the electrode perforation in each well to form a layer over a support surface; piercing said layer in each well with a pointed plunger having a tip conforming to an aperture suitable for forming a high-resistance patch-clamp seal with a biological membrane; curing the layer of polymeric material to form a solid plug within the electrode perforation; and removing the pointed plunger and the support surface from the plug.
- 17. The method of claim 16, wherein said pointed plunger conforms to a pointed tip of a patch-clamp micropipette.
- 18. The method of claim 16, wherein said pointed plunger is slidably coupled to a sleeve adapted for removable connection with the electrode perforation.
- 19. The method of claim 16, wherein said support surface is provided by a finger adapted for removable connection with the electrode perforation on a side opposite to said pointed plunger.
- 20. The method of claim 16, wherein said support surface is made of plastic material.
- 21. The method of claim 16, wherein said polymeric material comprises a silicone polymer.
- 22. The method of claim 16, wherein said polymeric material comprises poly-dimethylsiloxane.
- 23. The method of claim 16, further comprising the step of providing a cured film of said polymeric material with a plurality of openings overlaying said electrode perforations, and wherein said placing step is carried out such as to extend said layer of uncured polymeric material to each of said openings in the cured film of polymeric material.
- 24. A multi-well tray manufactured according to the method of claim 16.
- 25. A multi-well patch-clamp electrode structure comprising:
a tray with a plurality of wells and an electrode perforation in each well; a polymeric plug in the electrode perforation of each well; and an aperture through each polymeric plug; wherein said aperture conforms to a pointed tip of a patch-clamp micropipette.
- 26. The electrode structure of claim 25, wherein said polymeric plug comprises a cured silicone polymer.
- 27. The electrode structure of claim 25, wherein said polymeric plug comprises cured poly-dimethylsiloxane.
- 28. The electrode structure of claim 25, further comprising a layer of said polymeric material with a plurality of openings overlaying said electrode perforations; and wherein said polymeric plug extends into said overlaying opening in the layer of polymeric material.
- 29. The electrode structure of claim 25, wherein said electrode perforation includes a retaining protrusion for anchoring the polymeric plug.
- 30. The electrode structure of claim 25, wherein said aperture has a diameter of about 0.5-20 microns at a smaller end thereof.
- 31. The electrode structure of claim 25, wherein said aperture is at least 0.1 mm deep.
- 32. Apparatus for manufacturing a multi-well tray for patch-clamp applications by molding a polymeric material into a tray substrate containing an electrode cavity in each of a plurality of wells, comprising:
means for placing a support surface on one side of said electrode cavity in each of said plurality of wells; means for placing a predetermined amount of uncured polymeric material in said electrode cavity in each of said plurality of wells to form a layer of polymeric material over said support surface; means for piercing said layer of polymeric material in each of said plurality of wells with a pointed plunger from a side of said electrode cavity opposite to said support surface, said plunger having a tip conforming to an aperture suitable for forming a high-resistance patch-clamp seal with a biological membrane; means for curing the polymeric material in each of said plurality of wells to form a solid plug within said electrode cavity; and means for removing the pointed plunger and the support surface from the solid plug in each of said plurality of wells.
- 33. The apparatus of claim 32, wherein said pointed plunger conforms to a pointed tip of a patch-clamp micropipette.
- 34. The apparatus of claim 33, wherein said pointed plunger is slidably coupled to a sleeve adapted for removable connection with the electrode cavity.
- 35. The apparatus of claim 32, wherein said support surface is provided by a finger adapted for removable connection with the electrode cavity.
- 36. The apparatus of claim 32, wherein said polymeric material comprises a silicone polymer.
- 37. The apparatus of claim 32, wherein said polymeric material comprises poly-dimethylsiloxane.
- 38. The apparatus of claim 32, wherein said support surface is made of plastic material.
RELATED APPLICATIONS
[0001] This application is based on U.S. Provisional Application Serial No. 60/299,675, filed on Jun. 20, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60299675 |
Jun 2001 |
US |