Claims
- 1. An apparatus to measure a microforce generated by an interaction between an enzymatic substrate and an enzyme, the apparatus comprising: at least one microcantilever, wherein the microcantilever has a length, a width, and a thickness; a coating material deposited on a first surface of the microcantilever; an enzyme bound to the coating material; and at least one interaction cell, wherein a presence of the microforce is indicated by deflection of the microcantilever due ro the presence in the sample of the substrate.
- 2. An apparatus according to claim 1, wherein the apparatus further comprises a second microcantilever in a second interaction cell for receiving a second sample.
- 3. An apparatus according to claim 2, wherein the substrate is a pseudo-substrate.
- 4. An apparatus according to claim 2, wherein the second interaction cell contains a potential inhibitor of binding of the enzyme to the substrate.
- 5. An apparatus according to claim 4, wherein the the second interaction cell contains a potential inhibitor of binding of the enzyme which is a competitive inhibitor.
- 6. An apparatus according to claim 5, wherein the competitive inhibitor is an eluting agent having greater affinity for the enzyme than the substrate.
- 7. An apparatus according to claim 1, wherein the interaction cell with the microcantilever is housed in a microfluidics device for receiving a sample.
- 8. An apparatus to measure a microforce generated by an interaction between a protein and an effector of the protein, the apparatus comprising: at least one microcantilever, wherein the microcantilever has a length, a width, and a thickness; a coating material deposited on a first surface of the microcantilever, the protein attached to the coating material; and at least one interaction cell, wherein the interaction cell with the microcantilever is housed in a microfluidics device for receiving a sample, and detection of the microforce is indicated by deflection of the microcantilever due ro the presence in the sample of the effector.
- 9. An apparatus according to claim 8, wherein the protein is an enzyme.
- 10. An apparatus according to claim 8, wherein the at least one microcantilever and the at least one interaction cell are a first microcantilever in a first interaction cell and a second microcantilever in a second interaction cell.
- 11. An apparatus according to claim 10, wherein the second interaction cell contains an candidate effector and the first interaction cell lacks the candidate effector.
- 12. An apparatus to measure a microforce generated by an interaction between an enzyme and a biomaterial, the apparatus comprising at least one microcantilever, wherein the microcantilever has a length, a width, and a thickness; a coating material deposited on a first surface of the microcantilever, the enzyme attached to the coating material; and at least one interaction cell containing the microcantilever, wherein the interaction cell with the microcantilever is housed in a microfluidics device for receiving a sample, and detection of the microforce is indicated by deflection of the microcantilever due to the presence in the sample of the biomaterial.
- 13. An apparatus according to claim 12, wherein the biomaterial comprises an enzymatic substrate.
- 14. An apparatus according to claim 12, wherein the biomaterial comprises an enzymatic pseudosubstrate.
- 15. An apparatus according to claim 12, wherein the at least one microcantilever further comprises a block array having a plurality of microcantilevers.
- 16. An apparatus according to any of claims 1, 8 and 12, wherein the microcantilever length is about 250 μm to about 750 μm, the width is about 20 μm to about 300 μm, and the thickness is about 0.1 μm to about 10 μm.
- 17. An apparatus according to any of claims 1, 8 and 12, wherein the coating material is selected from at least one of the group consisting of copper, gold, aluminum, chromium, titanium, and silver.
- 18. An apparatus according to any of claims 1, 8 and 12, wherein the coating material is gold.
- 19. An apparatus according to claim 12, wherein a second surface of the microcantilever is selected from the group consisting of silicon, silicon nitride, other silicon compounds, metal compounds, gallium arsenide, germanium, germanium dioxide, glass, zinc oxide, diamond, quartz, palladium and a plastic polymer.
- 20. An apparatus according to claim 12, wherein the apparatus is disposable.
- 21. An apparatus according to claim 12, wherein the apparatus is reusable.
- 22. An apparatus according to claim 12, further comprising at least a second microcantilever in a second interaction cell for receiving a second sample.
- 23. An apparatus to identify an inhibitor of a microforce generated by an interaction between an enzymatic substrate and an enzyme, comprising: at least one microcantilever, wherein the microcantilever has a length, a width, and a thickness; a coating material deposited on a first surface of the microcantilever; the enzyme attached to the microcantilever by covalent binding to the coating material; and at least one interaction cell, wherein the interaction cell with the microcantilever is housed in a microfluidics device for receiving a sample containing a potential inhibitor, and detection of the inhibitor of the microforce is indicated by an altered deflection of the microcantilever due ro the presence in the sample of the inhibitor, compared to in the absence of the inhibitor.
- 24. An apparatus according to claim 23, wherein the apparatus further comprises a second microcantilever in a second interaction cell for receiving a second sample.
- 25. A method for identifying an inhibitor of an enzyme from among a plurality of potential inhibitors of binding of the enzyme to a substrate, the method comprising:
adding a sample of one of the potential inhibitors with the substrate to a first interaction cell in a microfluidics apparatus, the first interaction cell containing the enzyme bound to a surface of a first microcantilever; and, comparing a deflection of the first microcantilever in the first interaction cell to that of a second microcantilever in a second interaction cell, wherein the first and second microcantilevers are identically configured with enzyme bound to the surface, and the first and second interaction cells are identically configured to contain substrate, with the exception that the second cell does not receive a sample of the potential inhibitor, such a decrease in deflection of the first microcantilever in comparison to the second microcantilever is an indication that the inhibitor has been identified.
- 26. A method according to claim 25, wherein the substrate is a pseudosubstrate.
- 27. A method according to claim 25, wherein the method further comprises using a third interaction cell containing a third microcantilever identically configured with enzyme bound to the surface.
- 28. A method according to claim 27, wherein the third interaction cell receives an inhibitor that is a positive control which inhibits binding of substrate to the enzyme.
- 29. A method according to claim 27, wherein the third interaction cell receives a control buffer lacking substrate.
- 30. A method for identifying an elutant of a protein bound to an associating substance from among a plurality of candidate elutants, wherein the protein is attached to a surface of a first microcantilever in a first interaction cell and a second microcantilever in a second interaction cell, and wherein the protein is bound to the associating substance under non-enzymatic conditions, the method comprising:
adding a sample of at least one of the candidate elutants to the first interaction cell; and comparing the deflection of the first microcantilever to that of the second microcantilever identically configured except for the absence of the candidate, such that a return to a base-line position of deflection of the first microcantilever compared to the second microcantilever indicates that the composition is an elutant.
- 31. A method according to claim 30, further comprising comparing deflection of the first microcantilever to that of a third microcantilever in a third interaction cell, wherein the third interaction cell contains a microcantilever identically configured with associating substance, however in the absence of bound protein, such that the position of deflection of the third microcantilever is an indication of a base-line position.
- 32. A method according to claim 30, further comprising comparing deflection of the first microcantilever to that of a third microcantilever in a third interaction cell, wherein the third interaction cell contains a microcantilever identically configured with associating substance, however in the presence of a different concentration of the candidate elutant.
- 33. A method of screening a library of a plurality of candidate inhibitors to identify an inhibitor of an enzyme immobilized on a microcantilever, the method comprising:
binding the enzyme to a first side of each of a first microcantilever and a second microcantilever, the enzyme binding the substrate absent an inhibitor; exposing the first microcantilever with the enzyme to a sample of a candidate inhibitor; and measuring a deflection of the first microcantilever in comparison to a deflection of the second microcantilever identically exposed to the substrate except in the absence of the candidate inhibitor, wherein an altered pattern of deflection of the first microcantilever compared to the second microcantilever identifies the inhibitor.
- 34. A method according to claim 33, wherein the first microcantilever is located in a first interaction cell and the second microcantilever is located in a second interaction cell of a microfluidics device.
- 35. A method according to claim 33, wherein a third microcantilever located in a third interaction cell and a fourth microcantilever located in a fourth interaction cell are exposed to a different concentration of the candidate than the first cell.
- 36. A method according to claim 33, wherein a third microcantilever located in a third interaction cell and a fourth microcantilever located in a fourth interaction cell are exposed to different candidate inhibitors than the candidate in the first interaction cell.
RELATED APPLICATIONS
[0001] This application is a continuation-in-part of and claims priority in part from U.S. application Ser. No. 09/951,131, filed in the U.S. Patent and Trademark Office on Sep. 12, 2001, and which is hereby incorporated herein in its entirety.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09951131 |
Sep 2001 |
US |
Child |
10346443 |
Jan 2003 |
US |