Literature DB >> 12649121

Bone marrow origin of myofibroblasts in irradiation pulmonary fibrosis.

Michael W Epperly1, Hongliang Guo, Joan E Gretton, Joel S Greenberger.   

Abstract

There is a rapid onset of organizing alveolitis/fibrosis at 120-140 d after whole lung irradiation of C57BL/6J mice. To test the hypothesis that circulating cells of bone marrow origin contribute to irradiation fibrosis, irradiated chimeric green fluorescent protein (GFP)+ C57BL/6J mice were followed for GFP+ cells in areas of lung fibrosis. In a second experimental model, C57BL/6J female mice received 20 Gy total lung irradiation, and after 60 or 80 d were intravenously injected with cells from a clonal GFP+ male bone marrow stromal cell line or male GFP+ whole bone marrow, respectively. The mice were then followed for the development of pulmonary fibrosis, and the contribution of Y-probe-positive, GFP+ cells to fibrotic areas was quantitated. Bromodeoxyuridine labeling of developing fibrotic areas showed that the cell division occurred predominantly in GFP+, Y-probe-positive, and vimentin-positive cells. Immunohistochemistry demonstrated that these cells were macrophages and fibroblasts, not endothelial cells. Mice that received manganese superoxide dismutase-plasmid/liposome intratracheal injection 24 h before total lung irradiation demonstrated a decrease in GFP+ fibroblastic cells in the lung. Thus, pulmonary irradiation fibrosis contains proliferating cells of bone marrow origin, and gene therapy prevention of this condition acts in part by decreasing the migration and proliferation of marrow origin cells.

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Year:  2003        PMID: 12649121     DOI: 10.1165/rcmb.2002-0069OC

Source DB:  PubMed          Journal:  Am J Respir Cell Mol Biol        ISSN: 1044-1549            Impact factor:   6.914


  104 in total

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2.  Optimization of targeted cell replacement therapy: a new approach for lung disease.

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3.  Focal interstitial CC chemokine receptor 7 (CCR7) expression in idiopathic interstitial pneumonia.

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Journal:  J Clin Pathol       Date:  2006-01       Impact factor: 3.411

4.  Decreased asbestos-induced lung inflammation and fibrosis after radiation and bone marrow transplant.

Authors:  Jamie Levis; Roberto Loi; Kelly J Butnor; Pamela Vacek; Chad Steele; Brooke T Mossman; Daniel J Weiss
Journal:  Am J Respir Cell Mol Biol       Date:  2007-08-02       Impact factor: 6.914

5.  CCR2-mediated recruitment of fibrocytes to the alveolar space after fibrotic injury.

Authors:  Bethany B Moore; Jill E Kolodsick; Victor J Thannickal; Kenneth Cooke; Thomas A Moore; Cory Hogaboam; Carol A Wilke; Galen B Toews
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Review 6.  The role of CXC chemokines in pulmonary fibrosis.

Authors:  Robert M Strieter; Brigitte N Gomperts; Michael P Keane
Journal:  J Clin Invest       Date:  2007-03       Impact factor: 14.808

7.  Hypoxia-induced pulmonary vascular remodeling requires recruitment of circulating mesenchymal precursors of a monocyte/macrophage lineage.

Authors:  Maria G Frid; Jacqueline A Brunetti; Danielle L Burke; Todd C Carpenter; Neil J Davie; John T Reeves; Mark T Roedersheimer; Nico van Rooijen; Kurt R Stenmark
Journal:  Am J Pathol       Date:  2006-02       Impact factor: 4.307

8.  Pivotal Advance: Th-1 cytokines inhibit, and Th-2 cytokines promote fibrocyte differentiation.

Authors:  Diane D Shao; Rahul Suresh; Varsha Vakil; Richard H Gomer; Darrell Pilling
Journal:  J Leukoc Biol       Date:  2008-03-10       Impact factor: 4.962

Review 9.  Stem cells and cell therapies for cystic fibrosis and other lung diseases.

Authors:  Daniel J Weiss
Journal:  Pulm Pharmacol Ther       Date:  2007-12-07       Impact factor: 3.410

10.  Synthetic protection short interfering RNA screen reveals glyburide as a novel radioprotector.

Authors:  Jianfei Jiang; Peter R McDonald; Tracy M Dixon; Darcy Franicola; Xichen Zhang; Suhua Nie; Laura D Epperly; Zhentai Huang; Valerian E Kagan; John S Lazo; Michael W Epperly; Joel S Greenberger
Journal:  Radiat Res       Date:  2009-10       Impact factor: 2.841

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