Cytogenetic effects in cancer patients lymphocytes depending on the radiation source and the locality of radiation exposure in experiment ex vivo

Aims: Estimation of the cytogenetic lesions yield and their distribution among cells in donor lymphocytes of cancer patients with different tumor localizations depending on the source of radiation and the locality of radiation exposure in a therapeutically significant dose in ex vivo experiment. Me...

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Main Authors: Nataliya Maznyk, Tetiana Sypko, Viktor Starenkiy
Format: Article
Language:English
Published: PC Technology Center 2019-06-01
Series:ScienceRise: Biological Science
Subjects:
Online Access:http://journals.uran.ua/sr_bio/article/view/178907
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spelling doaj-156cf9671d3945e58c40be9e64f75bb92020-11-25T02:05:50ZengPC Technology CenterScienceRise: Biological Science2519-80172519-80252019-06-0103(18)253110.15587/2519-8025.2019.178907178907Cytogenetic effects in cancer patients lymphocytes depending on the radiation source and the locality of radiation exposure in experiment ex vivoNataliya Maznyk0Tetiana Sypko1Viktor Starenkiy2Державна установа «Інститут медичної радіології ім. С. П. Григор’єва Національної академії медичних наук України» вул. Пушкінська, 82, м. Харків, Україна, 61024Державна установа «Інститут медичної радіології ім. С. П. Григор’єва Національної академії медичних наук України» вул. Пушкінська, 82, м. Харків, Україна, 61024Державна установа «Інститут медичної радіології ім. С. П. Григор’єва Національної академії медичних наук України» вул. Пушкінська, 82, м. Харків, Україна, 61024Aims: Estimation of the cytogenetic lesions yield and their distribution among cells in donor lymphocytes of cancer patients with different tumor localizations depending on the source of radiation and the locality of radiation exposure in a therapeutically significant dose in ex vivo experiment. Methods: Cytogenetic analysis was performed in lymphocytes of 30 oncogynecological patients, lung cancer patients and head and neck cancer patients before the start of radiation treatment. Whole peripheral blood was irradiated at 2 Gy dose with a further simulation of partial body irradiation using gamma-irradiation 60Co on the ROKUS-AM and megavolt irradiation on the linear accelerator Clinac 600C. Results of research: An increase of radiation-specific chromosome damage frequency after gamma- and megavolt irradiation of cancer patients’ lymphocytes at 2 Gy dose was shown. With the absence of dependence on the tumor localization the statistically significant excess of the chromosome exchanges level due to irradiation on linear accelerator in compare with gamma-irradiation was found. At 2 Gy dose point with a simulation of partial body irradiation a similar dependence on the applied source was observed. So, the increase of the chromosome type aberrations level was due to 2,5-fold increase of the dicentric and ring chromosomes number under the gamma-irradiation and 5-fold under megavolt irradiation. For local irradiation simulation for both sources the chromosome aberrations level significantly exceeded the values of the zero point, and the dicentrics distribution among cells was over-dispersed according to Poisson statistic. Conclusion: Cytogenetic studies in ex vivo experiment showed that in donors’ lymphocytes, regardless of the tumor location, megavolt irradiation demonstrated a more genotoxic effect in compare with gamma-irradiation. The data obtained indicated that the proposed test experiment of ex vivo irradiation with partial body radiation simulation can be successfully used to detect the fact of irradiation and to confirm, if present, its locality. The study results will contribute to the improvement of the radiobiological basis of cancer patients’ radiation treatment and can be of use for the development of approaches to the individualization of therapeutic irradiationhttp://journals.uran.ua/sr_bio/article/view/178907аберації хромосомонкологічні хворілімфоцитиексперимент ex vivoсимуляція локального опроміненнягамма-опроміненнямегавольтне опромінення на лінійному прискорювачі
collection DOAJ
language English
format Article
sources DOAJ
author Nataliya Maznyk
Tetiana Sypko
Viktor Starenkiy
spellingShingle Nataliya Maznyk
Tetiana Sypko
Viktor Starenkiy
Cytogenetic effects in cancer patients lymphocytes depending on the radiation source and the locality of radiation exposure in experiment ex vivo
ScienceRise: Biological Science
аберації хромосом
онкологічні хворі
лімфоцити
експеримент ex vivo
симуляція локального опромінення
гамма-опромінення
мегавольтне опромінення на лінійному прискорювачі
author_facet Nataliya Maznyk
Tetiana Sypko
Viktor Starenkiy
author_sort Nataliya Maznyk
title Cytogenetic effects in cancer patients lymphocytes depending on the radiation source and the locality of radiation exposure in experiment ex vivo
title_short Cytogenetic effects in cancer patients lymphocytes depending on the radiation source and the locality of radiation exposure in experiment ex vivo
title_full Cytogenetic effects in cancer patients lymphocytes depending on the radiation source and the locality of radiation exposure in experiment ex vivo
title_fullStr Cytogenetic effects in cancer patients lymphocytes depending on the radiation source and the locality of radiation exposure in experiment ex vivo
title_full_unstemmed Cytogenetic effects in cancer patients lymphocytes depending on the radiation source and the locality of radiation exposure in experiment ex vivo
title_sort cytogenetic effects in cancer patients lymphocytes depending on the radiation source and the locality of radiation exposure in experiment ex vivo
publisher PC Technology Center
series ScienceRise: Biological Science
issn 2519-8017
2519-8025
publishDate 2019-06-01
description Aims: Estimation of the cytogenetic lesions yield and their distribution among cells in donor lymphocytes of cancer patients with different tumor localizations depending on the source of radiation and the locality of radiation exposure in a therapeutically significant dose in ex vivo experiment. Methods: Cytogenetic analysis was performed in lymphocytes of 30 oncogynecological patients, lung cancer patients and head and neck cancer patients before the start of radiation treatment. Whole peripheral blood was irradiated at 2 Gy dose with a further simulation of partial body irradiation using gamma-irradiation 60Co on the ROKUS-AM and megavolt irradiation on the linear accelerator Clinac 600C. Results of research: An increase of radiation-specific chromosome damage frequency after gamma- and megavolt irradiation of cancer patients’ lymphocytes at 2 Gy dose was shown. With the absence of dependence on the tumor localization the statistically significant excess of the chromosome exchanges level due to irradiation on linear accelerator in compare with gamma-irradiation was found. At 2 Gy dose point with a simulation of partial body irradiation a similar dependence on the applied source was observed. So, the increase of the chromosome type aberrations level was due to 2,5-fold increase of the dicentric and ring chromosomes number under the gamma-irradiation and 5-fold under megavolt irradiation. For local irradiation simulation for both sources the chromosome aberrations level significantly exceeded the values of the zero point, and the dicentrics distribution among cells was over-dispersed according to Poisson statistic. Conclusion: Cytogenetic studies in ex vivo experiment showed that in donors’ lymphocytes, regardless of the tumor location, megavolt irradiation demonstrated a more genotoxic effect in compare with gamma-irradiation. The data obtained indicated that the proposed test experiment of ex vivo irradiation with partial body radiation simulation can be successfully used to detect the fact of irradiation and to confirm, if present, its locality. The study results will contribute to the improvement of the radiobiological basis of cancer patients’ radiation treatment and can be of use for the development of approaches to the individualization of therapeutic irradiation
topic аберації хромосом
онкологічні хворі
лімфоцити
експеримент ex vivo
симуляція локального опромінення
гамма-опромінення
мегавольтне опромінення на лінійному прискорювачі
url http://journals.uran.ua/sr_bio/article/view/178907
work_keys_str_mv AT nataliyamaznyk cytogeneticeffectsincancerpatientslymphocytesdependingontheradiationsourceandthelocalityofradiationexposureinexperimentexvivo
AT tetianasypko cytogeneticeffectsincancerpatientslymphocytesdependingontheradiationsourceandthelocalityofradiationexposureinexperimentexvivo
AT viktorstarenkiy cytogeneticeffectsincancerpatientslymphocytesdependingontheradiationsourceandthelocalityofradiationexposureinexperimentexvivo
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