Dicentric chromosome aberration analysis using giemsa and centromere specific fluorescence in-situ hybridization for biological dosimetry: An inter- and intra-laboratory comparison in Indian laboratories
To facilitate efficient handling of large samples, an attempt towards networking of laboratories in India for biological dosimetry was carried out. Human peripheral blood samples were exposed to 60Co γ-radiation for ten different doses (0–5Gy) at a dose rate of 0.7 and 2Gy/min. The chromosomal aberr...
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Veröffentlicht in: | Applied radiation and isotopes 2014-09, Vol.92, p.85-90 |
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Zusammenfassung: | To facilitate efficient handling of large samples, an attempt towards networking of laboratories in India for biological dosimetry was carried out. Human peripheral blood samples were exposed to 60Co γ-radiation for ten different doses (0–5Gy) at a dose rate of 0.7 and 2Gy/min. The chromosomal aberrations (CA) were scored in Giemsa-stained and fluorescence in-situ hybridization with centromere-specific probes. No significant difference (p>0.05) was observed in the CA yield for given doses except 4 and 5Gy, between the laboratories, among the scorers and also staining methods adapted suggest the reliability and validates the inter-lab comparisons exercise for triage applications.
•This is the first report from India on Networking for Biological Dosimetry preparedness using dicentric chromosomal (DC) aberration assay.•There is no significant difference in the in vitro dose response curve (Slope, Intercept, Curvature) constructed among the two labs.•No significant variation in the scoring of DC aberrations between the scorers irrespective of labs.•The DC results obtained by the labs from the Giemsa stained metaphase preparations were confirmed with centromere specific-FISH for further reliability and validity. |
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ISSN: | 0969-8043 1872-9800 |
DOI: | 10.1016/j.apradiso.2014.06.004 |