· 1. 김 영설, 이홍규. 유전자 진단의 기본 기법, PCR. 유전자 진단의 이론과 실제. 도서출판 한의학 69-75, 1998
· 2. Mullis KB, Faloona FA. Specific synthesis of DNA in vitro via a polymerase-catalyzed chain reaction. Methods Enzymol 155:335-350, 1987
· 3. Zimring JC, Nolte FS. Polymerase chain reaction and other amplification technology. In:Henry JB, ed. Clinical Diagnosis and management by laboratory methods. 20th ed. Philadelphia: WB Saunders 1287-1294, 2001
· 4. Kim DW. Real-time Quantitative PCR. Exp Mo Med 33:101-109, 2001
· 5. Becker-Andre M, Hahlbrock K. Absolute mRNA quantification using the polymerase chain reaction. Proceedings of the National Academy Sciences 86:9717-9721, 1989
· 6. Piatak M, Luk KC, Williams B, Lifson JD. Quantitative competitive polymerase chain reaction for accurate quantification of HIV DNA and RNA species. BioTechniques 14:70-80, 1993
· 7. Higuchi R, Dollinger G, Walsh PS, Griffith R. Simultaneous amplification and detection of specific DNA sequence. Biotechnology 10:413-417, 1992
· 8. Higuchi R, Fockler C, Dollinger G, Waston R. Kinetic PCR: Real time monitoring of DNA amplification reactions. Biotechnology 11:1026-1030, 1993
· 9. Holland PM, Abramson RE, Waston R, Gelfand DH. Detection of specific polymerase chain reaction product by utilizing the 5’ to 3’ exonuclease activity of Thermus aquaticus DNA polymerase. Proceedings of the National Academy of sciences USA 88:7276-7280, 1991
· 10. Lee,LG., Connell CR, Bloch W. Allelic discrimination by nick-translation PCR with fluorogenic probes. Nucleic Acids Research 21:3761-3766, 1993
· 11. Livak KJ, Flood SJA, Marmaro J, Giusti W, Deetz K. Oligonucleotide with Fluorescent dyes at opposite ends provide a quenched probe system useful for detecting PCR product and nucleic acid hybridization. PCR Methods and Application 4:357-362,1995
· 12. Heid CA, Stevens J, Livak KJ, Williams PM. Real-time quantitative PCR. Genome Res 6:968-994, 1996
· 13. Witter CT, Herrmann MG, Moss AA, Rasmussen RP. Continuous fluorescence monitoring of rapid cycle DNA amplification. Biofeature 22:130-138, 1997
· 14. Klein D. Quantification using real-time PCR technology: applications and limitations.
· Trends Mol Med 8:257-60, 2002
· 15. Gibson, UEM. A novel method for real-time quantitative RT-PCR. Genome Res 6:995-1001,1996
· 16. Nurmi J, Ylikoski A, Soukka T, Karp M, Lovgren T. A new label technology for the detection of specific polymerase chain reaction products in a closed tube. Nucleic Acids Res 5; 28(8): E28, 2000
· 17. Nazarenko IA, Bhatnagar SK, Hohman RJ. A closed tube format for amplification and detection of DNA based on energy transfer. Nucleic Acids Res. 15; 25(12):2516-2521, 1997
· 18. Tyagi S, Gramer, FR. Molecular beacons: probes that fluorescence upon hybridization. Nat Biotechnol 14:303-308, 1996
· 19. Mira E, Lacalle RA, Gomez-Mouton C, Leonardo E, Manes S. Quantitative determination of tumor cell intravasation in a real-time polymerase chain reaction-based assay. Clin Exp Metastasis 19: 313-8, 2002
· 20. Bengtsson M, Karlsson HJ, Westman G, Kubista M. A new minor groove binding asymmetric cyanine reporter dye for real-time PCR. Nucleic Acids Res 15; 31(8):e45, 2003
· 21. Lee WI, Kantarjian H, Glassman A, Talpaz M, Lee MS. Quantitative measurement of BCR/abl transcripts using real-time polymerase chain reaction. Ann Oncology 13:781-788, 2002
· 22. Stocher M, Leb V, Berg J. A convenient approach to the generation of multiple internal controls DNA for a panel of real-time PCR assays. J Virol Methods 108:1-8, 2003
· 23. Vu HL, Troubetzkoy S, Nguyen HH, Russell MW, Mestecky J. A method for quantification of absolute amounts of nucleic acids by (RT)-PCR and a new mathematical model for data analysis. Nucleic Acids Res 28(7): E18, 2000
· 24. Delarue B, Breard E, Abeguile G, Lemaire M, Mittre H, Leymarie P. Correcting for different amplification rates of internal standard and template when measuring cDNA by competitive PCR. Biotechniques 28: 396-8, 2000
· 25. Bustin, SA. Absolute quantification of mRNA using real-time reverse transcription polymerase chain reaction assays. J. Mol.Endocrinol. 25:169–193,2000
· 26. Lee WI, Lee MS. Quantitative assessment of the t(14;18) carrying cells by real-time polymerase chain reaction. Int J Hematol in press
· 27. Jordan, JJ. Real-time detection of PCR products and microbiology. New Technologies for Life Sciences: A Trends Guide, 61-66, 2000
· 28. Mild G, Bachmann F, Boulay JL, Glatz K, Laffer U, Lowy A, Metzger U, Reuter J, Terracciano L, Herrmann R, Rochlitz C. DCR3 locus is a predictive marker for 5-fluorouracil-based adjuvant chemotherapy in colorectal cancer. Int J Cancer 102: 254-257, 2002
· 29. Johnson MR, Wang K, Smith JB, Heslin MJ, Diasio RB. Quantitation of dihydropyrimidine dehydrogenase expression by real-time reverse transcription polymerase chain reaction. Anal Biochem 15; 278:175-184, 2000
· 30. Pals, G., Pindolia, K., Worsham, M.J. A rapid and sensitive approach to mutation detection using real-time polymerase chain reaction and melting curve analyses, using BRCA1 as an example. Mol Diagn 4: 241-246, 1999
· 31. Bruning, T., Abel, J., Koch, B., et al. Real-time PCR-analysis of the cytochrome P450 1B1 codon 432-polymorphism. Arch Toxicol 73: 427-430, 1999
· 32. Bernard, P.S., Lay, M.J., Wittwer, C.T. Integrated amplification and detection of the C677T point mutation in the methylenetetrahydrofolate reductase gene by fluorescence resonance energy transfer and probe melting curves. Anal Biochem 255: 101-107, 1998
· 33. Nauck, M, Hoffmann, MM, Wieland, H. Evaluation of the Apo genotyping kit on the Light Cycler. Clin Chem 46: 722-724, 2000
· 34. Kyger, EM, Krevolin, MD, Powell, MJ. Detection of the hereditary hemochromatosis gene mutation by real-time fluorescence polymerase chain reaction and peptide nucleic acid clamping. Anal Biochem 260:142-148,1998