Reproducibility of measurements of potential doubling time of tumour cells in the multicentre National Cancer Institute protocol T92-0045.

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Serval ID
serval:BIB_13594
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Reproducibility of measurements of potential doubling time of tumour cells in the multicentre National Cancer Institute protocol T92-0045.
Journal
British Journal of Cancer
Author(s)
Wilson G.D., Paschoud N., Pavy J.J., Weber K., Weber P., Dubray B., Coucke P.A.
ISSN
0007-0920
Publication state
Published
Issued date
1999
Volume
79
Number
2
Pages
323-332
Language
english
Notes
Publication types: Clinical Trial ; Journal Article ; Multicenter Study
Abstract
We compared the flow cytometric measurement and analysis of the potential doubling time (Tpot) between three centres involved in the National Cancer Institute (NCI) protocol T92-0045. The primary purpose was to understand and minimize the variation within the measurement. A total of 102 specimens were selected at random from patients entered into the trial. Samples were prepared, stained, run and analysed in each centre and a single set of data analysed by all three centres. Analysis of the disc data set revealed that the measurement of labelling index (LI) was robust and reproducible. The estimation of duration of S-phase (T(S)) was subject to errors of profile interpretation, particularly DNA ploidy status, and analysis. The LI dominated the variation in Tpot such that the level of final agreement, after removal of outliers and ploidy agreement, reached correlation coefficients of 0.9. The sample data showed poor agreement within each of the components of the measurement. There was some improvement when ploidy was in agreement, but correlation coefficients failed to exceed values of 0.5 for Tpot. The data suggest that observer-associated analysis of T(S) and tissue processing and tumour heterogeneity were the major causes of variability in the Tpot measurement. The first two aspects can be standardized and minimized, but heterogeneity will remain a problem with biopsy techniques.
Keywords
Aneuploidy, Cell Division/genetics, Data Interpretation, Statistical, Female, Flow Cytometry, Humans, Neoplasms/genetics, Neoplasms/pathology, Observer Variation, Ploidies, Reproducibility of Results, S Phase/genetics, Time Factors
Pubmed
Web of science
Open Access
Yes
Create date
19/11/2007 13:05
Last modification date
20/08/2019 13:41
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