Radio-Adaptive Response to Environmental Exposures at Chernobyl

The genetic consequences resulting from environmental exposure to ionizing radiation have a significant impact on both radiation regulatory policies and the comprehension of the human health risks associated with radiation exposure. The primary objectives of the study were to assess 1) genotoxicity...

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Main Authors: Brenda E. Rodgers, Kristen M. Holmes
Format: Article
Language:English
Published: SAGE Publishing 2008-04-01
Series:Dose-Response
Online Access:https://doi.org/10.2203/dose-response.07-008.Rodgers
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spelling doaj-4e77a57ebe0140c1908b54a275e5fa0b2020-11-25T03:32:32ZengSAGE PublishingDose-Response1559-32582008-04-01610.2203/dose-response.07-008.RodgersRadio-Adaptive Response to Environmental Exposures at ChernobylBrenda E. RodgersKristen M. HolmesThe genetic consequences resulting from environmental exposure to ionizing radiation have a significant impact on both radiation regulatory policies and the comprehension of the human health risks associated with radiation exposure. The primary objectives of the study were to assess 1) genotoxicity of exposure to radiation as a function of absorbed dose and dose rate, and 2) induction of a radio-adaptive response following a priming dose at varying dose rates. Results demonstrated that sub-acute environmental exposures of 10cGy gamma radiation resulted in indistinguishable levels of chromosomal damage as compared to controls. A radio-adaptive response was observed in all experimental groups, exposed to a subsequent acute challenge dose of 1.5 Gy, demonstrating that low dose rates of low energy transfer (LET) radiation are effective in reducing genetic damage from a subsequent acute low-LET radiation exposure. Furthermore, the data presented herein demonstrate a potential beneficial effect of sub-chronic exposure to low levels of low-LET radiation in an environmental setting and do not support the Linear No Threshold (LNT) hypothesis.https://doi.org/10.2203/dose-response.07-008.Rodgers
collection DOAJ
language English
format Article
sources DOAJ
author Brenda E. Rodgers
Kristen M. Holmes
spellingShingle Brenda E. Rodgers
Kristen M. Holmes
Radio-Adaptive Response to Environmental Exposures at Chernobyl
Dose-Response
author_facet Brenda E. Rodgers
Kristen M. Holmes
author_sort Brenda E. Rodgers
title Radio-Adaptive Response to Environmental Exposures at Chernobyl
title_short Radio-Adaptive Response to Environmental Exposures at Chernobyl
title_full Radio-Adaptive Response to Environmental Exposures at Chernobyl
title_fullStr Radio-Adaptive Response to Environmental Exposures at Chernobyl
title_full_unstemmed Radio-Adaptive Response to Environmental Exposures at Chernobyl
title_sort radio-adaptive response to environmental exposures at chernobyl
publisher SAGE Publishing
series Dose-Response
issn 1559-3258
publishDate 2008-04-01
description The genetic consequences resulting from environmental exposure to ionizing radiation have a significant impact on both radiation regulatory policies and the comprehension of the human health risks associated with radiation exposure. The primary objectives of the study were to assess 1) genotoxicity of exposure to radiation as a function of absorbed dose and dose rate, and 2) induction of a radio-adaptive response following a priming dose at varying dose rates. Results demonstrated that sub-acute environmental exposures of 10cGy gamma radiation resulted in indistinguishable levels of chromosomal damage as compared to controls. A radio-adaptive response was observed in all experimental groups, exposed to a subsequent acute challenge dose of 1.5 Gy, demonstrating that low dose rates of low energy transfer (LET) radiation are effective in reducing genetic damage from a subsequent acute low-LET radiation exposure. Furthermore, the data presented herein demonstrate a potential beneficial effect of sub-chronic exposure to low levels of low-LET radiation in an environmental setting and do not support the Linear No Threshold (LNT) hypothesis.
url https://doi.org/10.2203/dose-response.07-008.Rodgers
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