Tyagi et al. “Molecular Beacons : Probes that Fluoresce upon Hybridization”, Nature Biotechnology, vol. 14, Mar. 1996, pp. 303-308.* |
B.D. Hames and S.J. Higgins, Eds., “Nucleic Acid Hybridization,” IRL Press, Washington, D.C. (1985). |
P.R. Langer, A.A. Waldrop, and D.C. Ward, “Enzymatic Synthesis of Biotin-Labeled Plynucleotides: Novel Nucleic Acid Affinity Probes,” Proc. Natl. Acad. Sci., U.S.A. 78, 6633-6637 (1981). |
P. Tchen, R.P.P. Ruchs, E. Sage, and M. Leng, “Chemically Modified Nucleic Acids as Immuno-Detectable Probes in Hybridization Experiments,” Proc. Natl. Acad. Sci., US.A. 81, 3466-3470 (1984). |
S. Tomlinson, A. Lyga, E. Huguenel, and N. Dattagupta, “Detection of Biotinylated Nucleic Acid Hybrids by Antibody-Coated Gold Colloid,” Anal. Biochem. 171, 217-222 (1988). |
A.H.N. Hopman, J. Wiegant, G.I. Tesser, and P. Van Dujin, “A Non-Radioactive In Situ Hybridization Method Based on Mercurated Nucleic Acid Probes and Sulfhydryl-Hapten Ligands,” Nucleic Acids Res. 14, 6471-6488 (1986). |
A. Oser, W.K. Roth, and G. Valet, “Sensitive Non-Radioactive Dot-Blot Hybridization Using DNA Probes Labeled with Chelate Group Substituted Psoralen and Quantitative Detection by Europium Ion Fluorescence,” Nucleic Acids res. 16, 1181-1196 (1988). |
L.M. Smith, S. Fung, M.W. Hunkapillar, T.J. Hunkapiller, and L.E. Hood, “The Synthesis of Oligonucleotides Containing an Aliphatic Amino Group at the 5′ Terminus: Synthesis of Fluorescent DNA Primers for Use in DNA Sequence Analysis,” Nucleic Acids Res. 13, 2399-2412 (1985). |
J. Wiegant, T. Ried, P.M. Nederlof, M. van der Ploeg, H.J. Tanke, and A.K. Raap, “In Situ Hybridization with Fluoresceinated DNA,” Nucleic Acids res. 19, 3237-3241 (1991). |
L.E. Morrison, T.C. Halder, and L.M. Stols, “Solution-Phase Detection of Polynucleotides Using Interacting Fluorescent Labels and Competitive Hybridization,” Anal. Biochem. 183, 231-244 (1989). |
M. Ishikawa, K. Hirano, T. Hayakawa, and S. Hosoi, S. Brenner, “Single-Molecule Detection by Laser-Induced Fluorescence Technique,” Jpn. J. Appl. Phys. 33, 1571-1576 (1994). |
M. Eigen and R. Rigler, “Sorting Single Molecules: Application to Diagnostics and Evolutionary Biotechnology,” Proc. Natl. Acad., U.S.A. 91, 5740-5747 (1994). |
S. Nie, D.T. Chiu, and R.N. Zara, “Probing Individual Molecules with Confocal Fluorescence Microscopy,” Science 266, 1018-1021 (1994). |
“DYEnamic Energy Transfer Primers,” Amersham Life Science, 1996. |
“Thermo Sequenase Dyenamic ET Primers,” Reader Enuiry No. 269, American Life Science, 1996. |
“Cassette Labeling for Facile Construction of Energy Transfer Fluorescent Primers,” Jingyue Ju et al., Nucleic Acids Res. 1996, vol. 24, No. 6. |
“New Products for Bioresearch,” Circle Reader Service No. 207, vol. 21, No. 1 (1996). |
“Energy Transfer Primers” A New Fluorescence Labeling Paradigm for DNA Sequencing and Analysis, J. Ju, et al., Nature Medicine, vol. 2, No. 2, pp. 246-249 (1996). |
“Fluorescence Energy Transfer Dye-Labeled Primers for DNA Sequencing and Analysis,” J. Ju, et al., Proc. Natl. Acad. Sci. USA, vol. 92, pp. 4347-4351 (1995). |
“Rapid Sizing of Short Tandem Repeat Alleles Using Vcapillary Array Electrophoresis and Energy-Transfer Fluorescent Primers,” Wang et al., Analytical Chemistry, vo. 67, No. 7, 1197-1203 (1995). |
“Electrophoretically Uniform Fluorescent Dyes for Automated DNA Sequencing,” M. Metzker et al, Science, vol. 271, 1420-122 (1996). |
“Dyes Identified for Automated DNA Sequencing,” Biophotonics International, 34-35 (May/Jun. 1996). |
“New Beacons Serve as Superior Fluorescent Probes,” Biophotonics International, pp. 56-57 (May/Jun. 1996). |
Brochure of Perkin Elmer, Applied Biosystems Div., ABI PRISM™ 7700 Sequence Detection System (1995). |
Brochure of Perkin Elmer, Applied Biosystems Div., ABI PRISM™ 7700 Sequence Detection System (1996). |
Brochure of Perkin Elmer, Applied Biosystems Div., “Quantitation of DNA/RNA Using Real-Time PCR Detection,” Dr. K. Livak, 1-8 (1996). |
“Quantitative PCR by Real Time Detection,” T.M. Woudenberg and J. Stevens, Perkin Elmer, Applied Biosystems, Div., SPIE vol. 2680, 306-314 (1996). |
“Real Time Quantitative PCR,” C. Heid, et al., Genome Research, 986-994 (1996). |
“Towards Fully Automated Genome-Wide Polymorphism Screening,” Nature Genetics, vol. 9, 341-341 (Apr. 1995). |
“Oligonucleotides with Fluorescent Dyes at Opposite Ends Provide a Quenched Probe System Useful for Detecting PCR Product and Nucleic Acid Hybridization,” K. Livak, et al., PCR Methods and Applications, 357, 359, 361 (1995). |
AcuGen Systems Research Products Price List 1994, by Biotronics Technologies Corp., 4 pp. |
Review Paper: “Detection of Poitn Mutations in DNA by Fluorescence Energy Transfer,” K.M. Parkhurst and L.J. Parkhurst, Journal of Biomedical Optics, vol. 1, No. 4, 435 441 (Oct. 1996). |
Nature Biotechnology, vol. 14, p. 264 (Mar. 1996), “Lighting Up Hybridization,” Charles R. Cantor. |
Technical Abstract Digest, Bios '97, International Symposium on Biomedical Optics, p 232 (Feb. 1997, “Detection of Nucleic Acids Using Fluorescence Eenergy Transfer and G-Quartet Probes,” J.B. Pitner, et al. |
Cardullo et al., “Detection of Nucleic Acid Hybridization by Nonradiative Resonance Energy Transfer”, Proceedings of the National Academy of Sciences, USA. Dec. 1998, vol. 85, No. 23, pp. 8790-8794. |
Uchiyama et al., “Detection of Undegraded Oligonucleotides in Vivo by Fluorescence Resonance Energy Transfer”, The Journal of Biological Chemistry, Jan. 1996, vol. 271, No. 1, pp. 380-384. |
Iitia et al., “Detection of a Point Mutation Using Short Oligonucleotide Probes in Allele-Specific Hybridization”, Bio Techniques, Sep. 1994, vol. 17, No. 3, pp. 566-573. |
Pennisi, E., “Sifting Through and Making Sence of Genome Sequences,” Science, vol. 280, Jun. 12, 1998, pp. 1692-1693. |
Ota, N., et al., “Determination of Interactions Between Structured Nucleic Acids by Fluorescence Resonance Energy Transfer (FRET): Selection of Target Sites for Functional Nucleic Acids,” Nucl. Acids. Res., vol. 26, No. 3, 1998, pp. 735-743. |
Parkhurst, K.M., et al., “Detection of Point Mutations in DNA By Fluorescence Energy Transfer,” J. Biomed, Optics, vol. 1, No. 4, Oct. 1996, pp. 435-441. |
Germer, S., et al., Single-Tube Genotyping Without Oligonucleotides Probes, Genome Research, vol. 9, 1999, pp. 72-78. |
Hodgson, J., Shrinking DNA Diagnostics to Fill the Markets of the Future, Nature Biotech., vol. 16, Aug. 1998, pp. 725-727. |
“Thermo BioAnalysis Introduces Two Products for DnA Research,” PRNewswire, May 20, 1999. |
Howell, W.M., et al., “Dynamic Allele-Specific Hybridization,” Nature Biotech., vol. 17, Jan. 1999, pp. 87-88. |
“Hybaid Limited Partners Interactiva GMBH in Emerging Biochip Market,” Hybaid News Release, Dec. 8, 1999. |