Claims
- 1. A microarray of non-contiguous polynucleotides, the array comprising:
a solid support having a surface; and a plurality of elements arranged in a defined manner and stably associated with the surface, wherein each element comprises two or more combined, distinct polynucleotides having distinct sequences.
- 2. The array of claim 1, wherein the solid support is selected from the group consisting of glass, silica, plastic, ceramic, beads, and nylon, and combinations thereof.
- 3. The array of claim 1, wherein each element comprises about two to about ten combined, distinct polynucleotides having distinct sequences.
- 4. The array of claim 1, wherein each element comprises about two to about five combined, distinct polynucleotides having distinct sequences.
- 5. The array of claim 1, wherein the polynucleotide sequences are complementary to a single target polynucleotide.
- 6. The array of claim 1, wherein the polynucleotides independently comprise from about 5 to about 10000 nucleotides.
- 7. The array of claim 6, wherein the polynucleotides independently comprise from about 20 to about 300 nucleotides.
- 8. The array of claim 7, wherein the polynucleotides independently comprise from about 50 to about 65 nucleotides.
- 9. The array of claim 1, wherein the polynucleotides are double stranded.
- 11. The array of claim 1, wherein the elements are associated with the surface by non-covalent means.
- 12. The array of claim 1, wherein the elements are associated with the surface by covalent means.
- 13. The array of claim 12, wherein the covalent means comprises a linker.
- 14. The array of claim 1, wherein the elements are associated with the surface by non-covalent and covalent means.
- 15. The array of claim 1, wherein the array is a microarray made by high density contact deposition printing.
- 16. A hybridization assay comprising the steps of:
contacting the array of claim 1 with detectable nucleic acid probes under hybridization conditions to produce a hybridization pattern; and detecting the hybridization pattern.
- 17. The assay of claim 16, wherein the contacting step is preceded by the step of making the array by high density contact deposition printing.
- 18. A method for analyzing polynucleotide sequences, the method comprising the steps of:
making an array according to claim 1 by high deposition contact printing; contacting the array with detectable polynucleotide probes under hybridization conditions to produce a hybridization pattern; detecting the hybridization pattern.
- 19. The method of claim 18 wherein the detectable probes are fluorescently labeled and the detection step comprises detecting fluorescent emissions from immobilized probes.
- 20. A kit for use in measuring hybridization, comprising:
an array according to claim 1; and instructional material for measuring hybridization with the array.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuing application of and claims priority under 35 U.S.C. § 120 to Ser. No. 09/532,656, filed Mar. 20, 2000, having the same title and inventors, which is incorporated herein by reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09532656 |
Mar 2000 |
US |
Child |
10013737 |
Nov 2001 |
US |