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The optimization of sample treatment for spectral karyotyping with applications for human tumour cells
T. Loja, P. Kuglik, A. Oltova, P. Smuharova, K. Zitterbart, V. Bajciova, R. Veselska
Language English Country Switzerland
Grant support
NR9125
MZ0
CEP Register
Digital library NLK
Full text - Article
Source
NLK
Karger Journals
from 2002 to 2009
ProQuest Central
from 2001 to 2015-11-30
Medline Complete (EBSCOhost)
from 2002-01-01 to 1 year ago
Health & Medicine (ProQuest)
from 2001 to 2015-11-30
- MeSH
- Child MeSH
- Financing, Organized MeSH
- Nucleic Acid Hybridization MeSH
- Indoles MeSH
- Blood Cells cytology drug effects MeSH
- Humans MeSH
- Metaphase drug effects MeSH
- Neuroblastoma genetics pathology MeSH
- Specimen Handling methods MeSH
- Peptide Hydrolases pharmacology MeSH
- Spectral Karyotyping methods MeSH
- Cellular Senescence drug effects MeSH
- Wilms Tumor genetics pathology MeSH
- Check Tag
- Child MeSH
- Humans MeSH
Spectral karyotyping (SKY) represents an important tool for the investigation of the complex chromosomal rearrangements (CCRs) in many human malignancies which may be difficult to characterize by conventional banding techniques. The main goal of our work was to optimize the most important steps in the preparation of molecular cytogenetic slides for a SKY protocol. This approach consisted of optimization of both the aging procedure and protease pretreatment of the slides, with special regard given to the preservation of chromosome structure and shape, as well as to the intensity of hybridization signals. The best results were obtained with a chemical aging procedure using SSC or ethanol in combination with trypsin pretreatment applied at a higher concentration for a shorter period of pretreatment. A resulting protocol for SKY also applicable to human solid tumour cells was subsequently proposed. The practical potential of the SKY technique was demonstrated on examples of two types of human embryonal tumours--neuroblastoma and Wilms' tumour, in which some kinds of chromosomal aberrations were not detectable by means of classic cytogenetic methods. Copyright 2007 S. Karger AG, Basel.
Department of Biology School of Medicine Masaryk University Brno Czech Republic
Department of Medical Genetics University Hospital Brno Brno Czech Republic
Department of Pediatric Oncology University Hospital Brno Brno Czech Republic
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- $a Spectral karyotyping (SKY) represents an important tool for the investigation of the complex chromosomal rearrangements (CCRs) in many human malignancies which may be difficult to characterize by conventional banding techniques. The main goal of our work was to optimize the most important steps in the preparation of molecular cytogenetic slides for a SKY protocol. This approach consisted of optimization of both the aging procedure and protease pretreatment of the slides, with special regard given to the preservation of chromosome structure and shape, as well as to the intensity of hybridization signals. The best results were obtained with a chemical aging procedure using SSC or ethanol in combination with trypsin pretreatment applied at a higher concentration for a shorter period of pretreatment. A resulting protocol for SKY also applicable to human solid tumour cells was subsequently proposed. The practical potential of the SKY technique was demonstrated on examples of two types of human embryonal tumours--neuroblastoma and Wilms' tumour, in which some kinds of chromosomal aberrations were not detectable by means of classic cytogenetic methods. Copyright 2007 S. Karger AG, Basel.
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