Claims
- 1. A nucleic acid accumulation analyzing chip comprising:
i. an first optical waveguide having a radiation input port and a radiation output port; ii. at least one optical microcavity having a bottom face, said at least one optical microcavity placed in said first optical waveguide along its optical path; and iii. at least one oligonucleotide being immobilized to said bottom face of said optical microcavity, such that when said at least one oligonucleotide is contacted with reaction reagents under conditions allowing a nucleic acid accumulation reaction to take place, accumulated nucleic acid is detectable by providing radiation at said radiation input port of said optical waveguide and monitoring radiation signal modulation at said radiation output port of said first optical waveguide.
- 2. The nucleic acid accumulation analyzing chip of claim 1, wherein said first optical waveguide is of Si3N4.
- 3. The nucleic acid accumulation analyzing chip of claim 2, further comprising a support layer supporting said first optical waveguide, said support layer effecting said bottom face of said optical microcavity.
- 4. The nucleic acid accumulation analyzing chip of claim 3, wherein said support layer is of SiO2.
- 5. The nucleic acid accumulation analyzing chip of claim 3, further comprising a foundation layer supporting said support layer, said foundation layer capable of serving as a resistor layer deployed in heat transfer relation with said optical microcavity, said resistor layer being for providing said optical microcavity with heat for generating said conditions allowing said nucleic acid accumulation reaction to take place.
- 6. The nucleic acid accumulation analyzing chip of claim 5, wherein said foundation layer includes a material selected from the group consisting of doped silicon, chromium, titanium-tungsten and tungsten.
- 7. The nucleic acid accumulation analyzing chip of claim 5, further comprising a base layer supporting said foundation layer.
- 8. The nucleic acid accumulation analyzing chip of claim 5, wherein said base layer includes a material selected from the group consisting of silicon and glass.
- 9. The nucleic acid accumulation analyzing chip of claim 1, wherein said optical microcavity has a volume in a range of about 1 to about 10 cubic micrometers.
- 10. The nucleic acid accumulation analyzing chip of claim 1, wherein said at least one oligonucleotide is immobilized to said bottom face of said optical microcavity in a surface density of between about 103 oligonucleotide molecules per square micrometer and about 106 oligonucleotide molecules per square micrometer.
- 11. The nucleic acid accumulation analyzing chip of claim 1, wherein said nucleic acid accumulation reaction is selected from the group consisting of polymerase chain reaction, ligase chain reaction, nucleic acid sequence based amplification and nucleic acid hybridization.
- 12. The nucleic acid accumulation analyzing chip of claim 1, further comprising a second optical waveguide aligned with said first optical waveguide in a Mach-Zender configuration, wherein said nucleic acid accumulation takes place only in said optical microcavity of said first optical waveguide, and wherein said second optical waveguide serves as reference.
- 13. A nucleic acid accumulation analyzing system comprising:
i. a nucleic acid accumulation analyzing chip including an optical waveguide having a radiation input port and a radiation output port, said optical waveguide being formed with at least one optical microcavity along its optical path, at least one oligonucleotide being immobilized to a bottom face of said optical microcavity; ii. a radiation source being in optical communication with said radiation input port; and iii. a radiation detector being in optical communication with said radiation output port; such that when said at least one oligonucleotide is contacted with reaction reagents under conditions allowing a nucleic acid accumulation reaction to take place, accumulated nucleic acid is detectable by providing radiation at said radiation input port of said optical waveguide via said radiation source and monitoring radiation signal modulation at said radiation output port of said optical waveguide via said radiation detector.
- 14. The nucleic acid accumulation analyzing system of claim 13, wherein said optical waveguide is of Si3N4.
- 15. The nucleic acid accumulation analyzing system of claim 13, further comprising a support layer supporting said optical waveguide, said support layer effecting said bottom face of said optical microcavity.
- 16. The nucleic acid accumulation analyzing system of claim 15, wherein said support layer is of SiO2.
- 17. The nucleic acid accumulation analyzing system of claim 16, further comprising a foundation layer supporting said support layer, said foundation layer capable of serving as a resistor layer deployed in heat transfer relation with said microcavity, said resistor layer being for providing said optical microcavity with heat for generating said conditions allowing said nucleic acid accumulation reaction to take place.
- 18. The nucleic acid accumulation analyzing system of claim 17, wherein said foundation layer includes a material selected from the group consisting of doped silicon, chromium, titanium-tungsten and tungsten.
- 19. The nucleic acid accumulation analyzing system of claim 17, further comprising a base layer supporting said foundation layer
- 20. The nucleic acid accumulation analyzing system of claim 19, wherein said base layer includes a material selected from the group consisting of silicon and glass.
- 21. The nucleic acid accumulation analyzing system of claim 13, wherein said optical microcavity has a volume in a range of about 1 to about 10 cubic micrometers.
- 22. The nucleic acid accumulation analyzing system of claim 16, wherein said at least one oligonucleotide is immobilized on said bottom face of said optical microcavity in a surface density of between about 103 oligonucleotide molecules per square micrometer and about 106 oligonucleotide molecules per square micrometer.
- 23. The nucleic acid accumulation analyzing system of claim 13, wherein said nucleic acid accumulation reaction is selected from the group consisting of polymerase chain reaction, ligase chain reaction, nucleic acid sequence based amplification and nucleic acid hybridization.
- 24. The nucleic acid accumulation analyzing system of claim 13, wherein said radiation source provides a coherent radiation.
- 25. The nucleic acid accumulation analyzing system of claim 13, wherein said radiation source includes an ultraviolet radiation source, and said radiation detector includes an ultraviolet radiation detector.
- 26. The nucleic acid accumulation analyzing system of claim 13, wherein said radiation source includes a laser source.
- 27. The nucleic acid accumulation analyzing system of claim 13, wherein said radiation detector serves for detecting radiation intensity modulation associated with nucleic acid accumulation.
- 28. The nucleic acid accumulation analyzing system of claim 13, wherein said radiation detector serves for detecting radiation phase modulation associated with nucleic acid accumulation.
- 29. The nucleic acid accumulation analyzing system of claim 13, wherein said radiation source and said radiation detector are engaged in a nucleic acid accumulation analyzing device, said device is formed with an acceptor for receiving said nucleic acid accumulation analyzing chip.
- 30. A nucleic acid accumulation analyzing device comprising:
i. a housing being formed with an acceptor for accepting a nucleic acid accumulation analyzing chip including an optical waveguide having a radiation input port and a radiation output port, said optical waveguide being formed with at least one optical microcavity along its optical path, and at least one oligonucleotide being immobilized to a bottom face of said optical microcavity; ii. a radiation source being engaged by said housing, said radiation source being in optical communication with said radiation input port of said nucleic acid accumulation analyzing chip when engaged in said acceptor; and iii. a radiation detector being engaged by said housing, said radiation detector being in optical communication with said radiation output port of said nucleic acid accumulation analyzing chip when engaged in said acceptor; such that when said at least one oligonucleotide is contacted with reaction reagents under conditions allowing a nucleic acid accumulation reaction to take place, accumulated nucleic acid is detectable by providing radiation at said radiation input port of said optical waveguide via said radiation source and monitoring radiation signal modulation at said radiation output port of said optical waveguide via said radiation detector.
- 31. The nucleic acid accumulation analyzing device of claim 30, wherein said radiation source provides a coherent radiation.
- 32. The nucleic acid accumulation analyzing device of claim 30, wherein said radiation source provides radiation in the visible range.
- 33. The nucleic acid accumulation analyzing device of claim 30, wherein said radiation source includes a laser source.
- 34. The nucleic acid accumulation analyzing device of claim 30, wherein said radiation detector serves for detecting radiation intensity modulation associated with nucleic acid accumulation.
- 35. The nucleic acid accumulation analyzing device of claim 30, wherein said radiation detector serves for detecting radiation phase modulation associated with nucleic acid accumulation.
- 36. The nucleic acid accumulation analyzing device of claim 30, wherein said radiation source and said a radiation detector are engaged in a nucleic acid accumulation analyzing device, said device is formed with an acceptor for receiving said nucleic acid accumulation analyzing chip.
- 37. A method of monitoring nucleic acid accumulation comprising the steps of:
i. providing an optical waveguide having an input port and an output port and being formed with an optical microcavity in its optical path, said optical cavity containing at least one oligonucleotide being immobilized to a bottom face of said optical microcavity; ii. effecting nucleic acid accumulation by contacting said at least one oligonucleotide with reaction reagents under conditions allowing a nucleic acid accumulation reaction to take place; and iii. monitoring nucleic acid accumulation by providing radiation at said input port, passing radiation through said optical microcavity and monitoring at said output port a signal modulation of said radiation, associated with nucleic acid accumulation.
- 38. The method of claim 37, wherein said step of effecting nucleic acid accumulation further includes adding intercalating agents to said reaction.
- 39. The method of claim 38, wherein said intercalating agents are selected from the group consisting of ethidium bromide, propidium bromide, acridine orange, thiazolium and oxazolium nucleic acid stains.
- 40. The method of claim 37, wherein said step of effecting nucleic said accumulation further includes tagging with fluorescent tags.
- 41. The method of claim 40, wherein said fluorescent tags are selected from the group consiting of FITC, Spectrum Green, Cy2, Cy3, Cy5 and Texas-Red.
- 42. The method of claim 40, wherein said tagging is carried out by hybridizing with said accumulated nucleic acids post said reaction.
Parent Case Info
[0001] This is a continuation of U.S. patent application 09/157,531, filed Sep. 21, 1998.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09157531 |
Sep 1998 |
US |
Child |
09735799 |
Dec 2000 |
US |