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Detection of irradiated quail meat by using DNA comet assay and evaluation of comets by image analysis

Date

2009

Author

Erel, Yakup
Yazici, Nizamettin
Ozvatan, Sumer
Ercin, Demet
Cetinkaya, Nurcan

Metadata

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Abstract

A simple technique of microgel electrophoresis of single cells (DNA comet assay) was used to detect DNA comets in irradiated quail meat samples. Obtained DNA comets were evaluated by both photomicrographic and image analysis. Quail meat samples were exposed to radiation doses of 0.52, 1.05, 1.45. 2.00, 2.92 and 4.00 kGy in gamma cell (gammacell Co-60, dose rate 1.31 kGy/h) covering the permissible limits for enzymatic decay and stored at 2 degrees C. The cells isolated from muscle (chest, thorax) in cold PBS were analyzed using the DNA comet assay on 1, 2, 3, 4, 7, 8 and 11 day post irradiation. The cells were lysed between 2, 5 and 9 min in 2.5% SDS and electrophorosis was carried out at a voltage of 2 V/cm for 2 min. After propidium iodide staining, the slides were evaluated through a fluorescent microscope. In all irradiated samples, fragmented DNA stretched towards the anode and damaged cells appeared as a comet. All measurement data were analyzed using BS 200 Prol' with software image analysis (BS 200 ProP, BAB Imaging System, Ankara, Turkey). The density of DNA in the tails increased with increasing radiation dose. However, in non-irradiated samples, the large molecules of DNA remained relatively intact and there was only minor or no migration of DNA: the cells were round or had very short tails only. The values of tail DNA%, tail length and tail moment were significantly different and identical between 0.9 and 4.0 kGy dose exposure, and also among storage times on day 1, 4 and 8. In conclusion, the DNA Comet Assay EN 13784 standard method may be used not only for screening method for detection of irradiated quail meat depending on storage time and condition but also for the quantification of applied dose if it is combined with image analysis. Image analysis may provide a powerful tool for the evaluation of head and tail of comet intensity related with applied doses. (C) 2009 Elsevier Ltd. All rights reserved.

Source

Radiation Physics and Chemistry

Volume

78

Issue

9

URI

https://doi.org/10.1016/j.radphyschem.2009.05.023
https://hdl.handle.net/20.500.12712/18490

Collections

  • Scopus İndeksli Yayınlar Koleksiyonu [14046]
  • WoS İndeksli Yayınlar Koleksiyonu [12971]



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