Fluorescence in situ hybridization (fish): A user's guide to optimal preparation of cytologic specimens
- 1 December 1995
- journal article
- focus on-technology
- Published by Wiley in Diagnostic Cytopathology
- Vol. 13 (5) , 486-492
- https://doi.org/10.1002/dc.2840130518
Abstract
Fluorescence in situ hybridization (FISH) is a reliable method for tagging centromeric regions of specific chromosomes in interphase nuclei. Not only is FISH useful for chromosome enumeration, but as region-specific chromosome probes are developed, the clinical applications and potentials for use by pathologists are extensive. This technique lends itself particularly to use in cytology preparations because the cells are disaggregated and monolayer preparations yield excellent technical hybridization results. Over a 7-mo period we processed cytologic samples in an attempt to define and outline a method for optimal specimen processing for FISH use in cell suspensions, techniques applicable to all fresh cytology specimens which can also be used for the processing of surgical pathology aspirates and other material. All samples should be promptly processed to ensure specimen viability, and triaged on an individual basis to ensure preparation of moderately cellular monolayered cytospins. Equivalent nuclear probe signals have been obtained with several sample fixation methods air-drying, 95% ethanol, methanol (Diff-Quik fixative), and Carnoy's solution. No difference was noted in the nuclear probe signals or specimen adhesion on positively charged or noncharged slides. After initial fixation our slides remained at room temperature until FISH was performed, without any adverse effects. A short digestion with proteinase K and subsequent rehybridization yielded positive results on samples that originally yielded poor nuclear probe signals.Keywords
This publication has 10 references indexed in Scilit:
- Comparative study of interphase cytogenetics, flow cytometric analysis, and nuclear grade of fine-needle aspirates of breast carcinomaDiagnostic Cytopathology, 1994
- Fluorescence in situ hybridization: A new tool for the pathologistHuman Pathology, 1994
- Chromosomal aneuploidy in proliferative breast diseaseHuman Pathology, 1994
- Chromosome Analysis by Multicolor in Situ Hybridization Using Direct-Labeled Fluorescent ProbesClinical Chemistry, 1993
- Detection of complete and partial chromosome gains and losses by comparative genomic in situ hybridizationHuman Genetics, 1993
- Detection of numerical chromosomal abnormalities in malignant cells on body fluids by fluorescence in situ hybridization of interphase cell nuclei with chromosome‐specific probesDiagnostic Cytopathology, 1992
- Application of fluorescence in situ hybridization in hematological disordersCancer Genetics and Cytogenetics, 1992
- An Approach to Definition of Genetic Alterations in Prostate CancerDiagnostic Molecular Pathology, 1992
- ERBB2 amplification in breast cancer analyzed by fluorescence in situ hybridization.Proceedings of the National Academy of Sciences, 1992
- Detection of chromosome aberrations in metaphase and interphase tumor cells by in situ hybridization using chromosome-specific library probesHuman Genetics, 1988