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The bile acid deoxycholic acid has a non-linear dose response for DNA damage and possibly NF-kappaB activation in oesophageal cells, with a mechanism of action involving ROS

John Baxter, Gareth Jenkins Orcid Logo, James Cronin Orcid Logo

Volume: 23, Issue: 5, Pages: 399 - 405

Swansea University Authors: John Baxter, Gareth Jenkins Orcid Logo, James Cronin Orcid Logo

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DOI (Published version): 10.1093/mutage/gen029

Published: Mutagenesis 2008
URI: https://cronfa.swan.ac.uk/Record/cronfa9803
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first_indexed 2013-07-23T12:02:08Z
last_indexed 2018-02-09T04:38:14Z
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spelling 2011-10-01T00:00:00.0000000 v2 9803 2012-03-20 The bile acid deoxycholic acid has a non-linear dose response for DNA damage and possibly NF-kappaB activation in oesophageal cells, with a mechanism of action involving ROS d35aa9a0ccae6c41c21201664342bfcb John Baxter John Baxter true false a44095d26187304e903da7ca778697b6 0000-0002-5437-8389 Gareth Jenkins Gareth Jenkins true false 9cfd17551c0d1f7438895121e4fbb6e8 0000-0002-0590-9462 James Cronin James Cronin true false 2012-03-20 SGMED Journal Article 23 5 399 405 Mutagenesis 30 9 2008 2008-09-30 10.1093/mutage/gen029 COLLEGE NANME Medical School - School COLLEGE CODE SGMED Swansea University 2011-10-01T00:00:00.0000000 2012-03-20T10:04:39.2060772 Faculty of Medicine, Health and Life Sciences Swansea University Medical School - Medicine John Baxter 1 Gareth Jenkins 0000-0002-5437-8389 2 James Cronin 0000-0002-0590-9462 3
title The bile acid deoxycholic acid has a non-linear dose response for DNA damage and possibly NF-kappaB activation in oesophageal cells, with a mechanism of action involving ROS
spellingShingle The bile acid deoxycholic acid has a non-linear dose response for DNA damage and possibly NF-kappaB activation in oesophageal cells, with a mechanism of action involving ROS
John Baxter
Gareth Jenkins
James Cronin
title_short The bile acid deoxycholic acid has a non-linear dose response for DNA damage and possibly NF-kappaB activation in oesophageal cells, with a mechanism of action involving ROS
title_full The bile acid deoxycholic acid has a non-linear dose response for DNA damage and possibly NF-kappaB activation in oesophageal cells, with a mechanism of action involving ROS
title_fullStr The bile acid deoxycholic acid has a non-linear dose response for DNA damage and possibly NF-kappaB activation in oesophageal cells, with a mechanism of action involving ROS
title_full_unstemmed The bile acid deoxycholic acid has a non-linear dose response for DNA damage and possibly NF-kappaB activation in oesophageal cells, with a mechanism of action involving ROS
title_sort The bile acid deoxycholic acid has a non-linear dose response for DNA damage and possibly NF-kappaB activation in oesophageal cells, with a mechanism of action involving ROS
author_id_str_mv d35aa9a0ccae6c41c21201664342bfcb
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author_id_fullname_str_mv d35aa9a0ccae6c41c21201664342bfcb_***_John Baxter
a44095d26187304e903da7ca778697b6_***_Gareth Jenkins
9cfd17551c0d1f7438895121e4fbb6e8_***_James Cronin
author John Baxter
Gareth Jenkins
James Cronin
author2 John Baxter
Gareth Jenkins
James Cronin
format Journal article
container_volume 23
container_issue 5
container_start_page 399
publishDate 2008
institution Swansea University
doi_str_mv 10.1093/mutage/gen029
publisher Mutagenesis
college_str Faculty of Medicine, Health and Life Sciences
hierarchytype
hierarchy_top_id facultyofmedicinehealthandlifesciences
hierarchy_top_title Faculty of Medicine, Health and Life Sciences
hierarchy_parent_id facultyofmedicinehealthandlifesciences
hierarchy_parent_title Faculty of Medicine, Health and Life Sciences
department_str Swansea University Medical School - Medicine{{{_:::_}}}Faculty of Medicine, Health and Life Sciences{{{_:::_}}}Swansea University Medical School - Medicine
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published_date 2008-09-30T03:11:16Z
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