1 FISH Techniques, FISH Probes and Their Applications in Medicine and Biology - An Overview
41
Acknowledgements. We wish to thank. Anja Christoffersen, Kirsten Knudsen, Alice Nielsen
and Helle Str0Inkjrer for expert technical assistance. Dr. Gitte Kerndrup, Odense University
Hospital is acknowledged for fruitful collaboration with the SKY-system. This work was
supported in part by The Karen Elise Foundation, The Danish National Cancer Society,
and the Danish Center for Molecular Gerontology.
References
Anastasi J, Vardiman JW, Rudinsky R, Patel M, Nachman J, Rubin CM, Le Beau MM
(l991) Direct correlation of cytogenetic findings with cell morphology using in situ
hybridization: an analysis of suspicious cells in bone marrow specimens of two patients completing therapy for acute lymphoblastic leukemia. Blood 77:2456-2462
Avery OT, MacLeod CM, McCarty M (l944) Studies on chemical nature of substance
inducing transformation of pneomococcal types; induction of transformation by
deoxyribonucleic acid fraction isolated from pneumococcus type III. J Exp BioI
Med 79:137-158
Bailey SM, Goodwin EH, Meyne J, Cornforth MN (l996) CO-FISH reveals inversions
associated with isochromosome formation. Mutagenesis 11:139-144
Baldini A, Ward DC (1991) In situ hybridization banding of human chromosomes with
Alu-PCR products: a simultaneous karyotype for gene mapping studies. Genomics
9:770-774
Barlow AL, Hulten MA (1996) Combined immunocytogenetics and molecular cytogenetic analysis of meiosis I human spermatocytes. Chromosome Res 4:562-573
Bernell P, Avidsson I, Jacobsen B, Hast R (1996) Fluorescence in situ hybridization in
combination with morphology detects minimal residual disease in remission and
heralds relapse in acute leukemia. Br J Haematol 95:666-672
Bobrow MN, Harris TD, Shaughnessy KJ, Litt GJ (1989) Catalyzed reporter deposition,
a novel method of signal amplification. Application to immunoassays. J Immunol
Methods 125:279-285
Bolzer A, Craig JM, Cremer T, Speicher MR (1999) A complete set of repeat-depleted,
PCR-amplifiable, human chromosome-specific painting probes. Cytogenet Cell
Genet 84:233-240
Carter NP, Ferguson-Smith MA, Pemyman MT Telenius H, Pelmear AH, Leversha MA,
Glancy MT, Wood SL, Cook K, Dyson HM, et al. (1992) Reverse chromosome painting: a method for for rapid analysis of aberrant chromosomes in clinical cytogenetics. J Med Genet 29:299-307
Casperson T, Faber S, Foley GE, Kudynowski J, Modest EJ, Simonsson E, Wagh U, Zech
L (l968) Chemical differentiation along metaphase chromosomes. Experimental
Cell Research 49:219-222
Caspersson T, Lomakka G, Zech L (1971) The 24 fluorescence patterns of the human
metaphase chromosomes - distinguishing characters and variability. Hereditas
67:89-102
Chang H, Bouman 0, Boerkoel CF, Stewart AK, Squire JA (l999) Frequent monoallelic
loss of D13S319 in multiple myeloma patients shown by interphase fluorescence in
situ hybridization. Leukemia 13:105-109
Chaudhuri JP, Vogel W, Voiculescu I, Wolf U (l971) A simplified method of demonstrating Giemsa-band pattern in human chromosomes. Humangenetik 14:83-83
Précédent

- 50/493

Suivant