Literature DB >> 21338245

A further comparison of pathologies after thoracic irradiation among different mouse strains: finding the best preclinical model for evaluating therapies directed against radiation-induced lung damage.

Isabel L Jackson1, Zeljko Vujaskovic, Julian D Down.   

Abstract

The human lung is among the most sensitive and critical tissues of concern in localized and systemic radiation exposures, and it is a subject of active preclinical research for evaluating mitigating therapies within the radiation countermeasures program. Our previous study comparing C57BL/6, CBA and C57L mice after whole-thorax irradiation pointed to the problems of late pleural effusions that prevented the full development of lung injury in C57BL/6 mice and suggested that the CBA and C57L strains are more favorable for modeling lung injury in humans (Jackson et al., Radiat. Res. 173, 10-20, 2010). We extended these comparisons to include three other mouse strains (BALB/c, C57BR/J and A/J mice) irradiated with 10, 12.5 or 15 Gy. Most of these mice were unable to survive the first 6 months and presented with a mixture of lung injury and pleural effusions as determined from gross pathology, histology and micro-CT. The independent and varying development of compressive pleural effusions of ill-defined etiology represents a concern for these strains in that they may not satisfy the preclinical requirements for approval of medical countermeasures (e.g. radiation mitigators) for human use. Thus, among the various different mouse strains studied so far for these pathologies, only three (CBA, C3H and C57L) appear to be desirable in exhibiting an early wave of pulmonary dysfunction attributed exclusively to radiation pneumonitis and for further assessment of radioprotective and mitigating therapies. C57L mice are particularly relevant in that they show significant lung damage at lower radiation doses that are closer to what is predicted for humans.
© 2011 by Radiation Research Society

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Year:  2011        PMID: 21338245      PMCID: PMC3110676          DOI: 10.1667/RR2421.1

Source DB:  PubMed          Journal:  Radiat Res        ISSN: 0033-7587            Impact factor:   2.841


  40 in total

1.  Animal models for medical countermeasures to radiation exposure.

Authors:  Jacqueline P Williams; Stephen L Brown; George E Georges; Martin Hauer-Jensen; Richard P Hill; Amy K Huser; David G Kirsch; Thomas J Macvittie; Kathy A Mason; Meetha M Medhora; John E Moulder; Paul Okunieff; Mary F Otterson; Michael E Robbins; James B Smathers; William H McBride
Journal:  Radiat Res       Date:  2010-04       Impact factor: 2.841

2.  A simple quantitative method for assessing pulmonary damage after x irradiation.

Authors:  L Downing; K E Sawarynski; J Li; M McGonagle; M D Sims; B Marples
Journal:  Radiat Res       Date:  2010-04       Impact factor: 2.841

Review 3.  Molecular mechanisms of late normal tissue injury.

Authors:  James Brush; Scott L Lipnick; Tiffany Phillips; John Sitko; J Tyson McDonald; William H McBride
Journal:  Semin Radiat Oncol       Date:  2007-04       Impact factor: 5.934

4.  Systemic polyethylene glycol-modified (PEGylated) superoxide dismutase and catalase mixture attenuates radiation pulmonary fibrosis in the C57/bl6 mouse.

Authors:  Mitchell Machtay; Arnaud Scherpereel; José Santiago; James Lee; Jim McDonough; Paul Kinniry; Evguenia Arguiri; Vladimir V Shuvaev; Jing Sun; Keith Cengel; Charalambos C Solomides; Melpo Christofidou-Solomidou
Journal:  Radiother Oncol       Date:  2006-10-27       Impact factor: 6.280

5.  Identifying the high radiosensitivity of the lungs of C57L mice in a model of total-body irradiation and bone marrow transplantation.

Authors:  Julian D Down; Jacquelyn C Yanch
Journal:  Radiat Res       Date:  2010-08       Impact factor: 2.841

Review 6.  Pulmonary effects of radiation therapy.

Authors:  N J Gross
Journal:  Ann Intern Med       Date:  1977-01       Impact factor: 25.391

7.  Effects of intercellular adhesion molecule 1 (ICAM-1) null mutation on radiation-induced pulmonary fibrosis and respiratory insufficiency in mice.

Authors:  Dennis E Hallahan; Ling Geng; Yu Shyr
Journal:  J Natl Cancer Inst       Date:  2002-05-15       Impact factor: 13.506

8.  A deficiency in DNA repair and DNA-PKcs expression in the radiosensitive BALB/c mouse.

Authors:  R Okayasu; K Suetomi; Y Yu; A Silver; J S Bedford; R Cox; R L Ullrich
Journal:  Cancer Res       Date:  2000-08-15       Impact factor: 12.701

9.  Inhibition of integrin alpha(v)beta6, an activator of latent transforming growth factor-beta, prevents radiation-induced lung fibrosis.

Authors:  Khalid Puthawala; Nicos Hadjiangelis; Steven C Jacoby; Emmanuel Bayongan; Zhicheng Zhao; Zhiwei Yang; Mary Louise Devitt; Gerald S Horan; Paul H Weinreb; Matvey E Lukashev; Shelia M Violette; Kristen S Grant; Cristina Colarossi; Silvia C Formenti; John S Munger
Journal:  Am J Respir Crit Care Med       Date:  2007-10-04       Impact factor: 21.405

10.  Revisiting strain-related differences in radiation sensitivity of the mouse lung: recognizing and avoiding the confounding effects of pleural effusions.

Authors:  Isabel L Jackson; Zeljko Vujaskovic; Julian D Down
Journal:  Radiat Res       Date:  2010-01       Impact factor: 2.841

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  36 in total

1.  A MALDI-MSI Approach to the Characterization of Radiation-Induced Lung Injury and Medical Countermeasure Development.

Authors:  Claire L Carter; Jace W Jones; Kory Barrow; Kaitlyn Kieta; Cheryl Taylor-Howell; Sean Kearney; Cassandra P Smith; Allison Gibbs; Ann M Farese; Thomas J MacVittie; Maureen A Kane
Journal:  Health Phys       Date:  2015-11       Impact factor: 1.316

2.  Delayed Effects of Acute Radiation Exposure (Deare) in Juvenile and Old Rats: Mitigation by Lisinopril.

Authors:  Meetha Medhora; Feng Gao; Tracy Gasperetti; Jayashree Narayanan; Abdul Hye Khan; Elizabeth R Jacobs; Brian L Fish
Journal:  Health Phys       Date:  2019-04       Impact factor: 1.316

3.  A preclinical rodent model of radiation-induced lung injury for medical countermeasure screening in accordance with the FDA animal rule.

Authors:  Isabel L Jackson; Puting Xu; Caroline Hadley; Barry P Katz; Ross McGurk; Julian D Down; Zeljko Vujaskovic
Journal:  Health Phys       Date:  2012-10       Impact factor: 1.316

Review 4.  A survey of changing trends in modelling radiation lung injury in mice: bringing out the good, the bad, and the uncertain.

Authors:  Mohamad B Dabjan; Carolyn Ms Buck; Isabel L Jackson; Zeljko Vujaskovic; Brian Marples; Julian D Down
Journal:  Lab Invest       Date:  2016-08-01       Impact factor: 5.662

Review 5.  Pharmacological management of ionizing radiation injuries: current and prospective agents and targeted organ systems.

Authors:  Vijay K Singh; Thomas M Seed
Journal:  Expert Opin Pharmacother       Date:  2020-01-11       Impact factor: 3.889

6.  Magnetic resonance imaging of disease progression and resolution in a transgenic mouse model of pulmonary fibrosis.

Authors:  Zackary I Cleveland; Yu M Zhou; Teckla G Akinyi; R Scott Dunn; Cynthia R Davidson; Jinbang Guo; Jason C Woods; William D Hardie
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2017-01-27       Impact factor: 5.464

7.  The Delayed Effects of Acute Radiation Syndrome: Evidence of Long-Term Functional Changes in the Clonogenic Cells of the Small Intestine.

Authors:  Catherine Booth; Gregory L Tudor; Barry P Katz; Thomas J MacVittie
Journal:  Health Phys       Date:  2015-11       Impact factor: 1.316

Review 8.  Modeling radiation-induced lung injury: lessons learned from whole thorax irradiation.

Authors:  Tyler A Beach; Angela M Groves; Jacqueline P Williams; Jacob N Finkelstein
Journal:  Int J Radiat Biol       Date:  2018-10-25       Impact factor: 2.694

9.  Enalapril mitigates focal alveolar lesions, a histological marker of late pulmonary injury by radiation to the lung.

Authors:  Feng Gao; Jayashree Narayanan; Cortney Joneikis; Brian L Fish; Aniko Szabo; John E Moulder; Robert C Molthen; Elizabeth R Jacobs; R Nagarjun Rao; Meetha Medhora
Journal:  Radiat Res       Date:  2013-03-12       Impact factor: 2.841

10.  Expression of tumor necrosis factor-alpha and vascular endothelial growth factor in different zones of fetal membranes: a possible relation to onset of labor.

Authors:  Amr K Elfayomy; Shaima M Almasry
Journal:  J Mol Histol       Date:  2014-06       Impact factor: 2.611

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