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1.
In Vivo ; 20(5): 573-82, 2006.
Article in English | MEDLINE | ID: mdl-17091762

ABSTRACT

Pulmonary irradiation fibrosis involves migration to the lungs of bone marrow origin myofibroblast progenitor cells (marrow stromal cells (MSCs)). Smad3-/- mice display decreased ionizing irradiation-induced skin fibrosis, defective osteochondrogenesis and other abnormalities thought to be associated with a defective stromal cell response(s) to transforming growth factor-beta (TGFFbeta). Clonal bone marrow stromal cell lines were derived from the adherent layer of continuous bone marrow cultures of homozygous deletion recombinant negative Smad3-/- mice and Smad3+/+ littermates. Quantitation in an Automated Cell Tracking System of the in vitro single cell migratory capacity over five days demonstrated a significant decrease in locomotion in microns per 24 h of Smad3-/- compared to Smad3+/+ clonal MSC lines. Reexpression by retroviral vector transfection of the Smad3 but not control ds-red transgene restored in vitro migratory capacity. Intravenously injected GFP transgene product labeled Smad3-/- (MSCs) seeded 10-fold less effectively than ds-red transgene product labeled Smad3+/+ cells to the 80 days post 20 Gy irradiated lungs of C57BL/6J mice and proliferated less significantly for 60 days after cell injection. Female mice chimeric for male Smad3-/- compared to Smad3+/+ marrow showed decreased irradiation pulmonary fibrosis, Y+ stromal cell migration to the lungs, and improved survival. The data show that the reduced in vitro and in vivo migratory capacity of Smad3-/- bone marrow stromal cells correlates with decreased radiation pulmonary fibrosis observed in mice chimeric for Smad3-/- marrow.


Subject(s)
Bone Marrow Cells/physiology , Cell Movement , Pulmonary Fibrosis/chemically induced , Smad3 Protein/genetics , Stromal Cells/physiology , Animals , Bone Marrow/metabolism , Bone Marrow/physiology , Bone Marrow Transplantation/physiology , Cell Proliferation , Clone Cells/physiology , Female , Luminescent Proteins/genetics , Lung/physiology , Lung/radiation effects , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Pulmonary Fibrosis/etiology , Receptors, Transforming Growth Factor beta/metabolism , Signal Transduction
2.
Radiat Res ; 165(6): 671-7, 2006 Jun.
Article in English | MEDLINE | ID: mdl-16802867

ABSTRACT

Smad3 protein is a prominent member of the Tgfb receptor signaling pathway. Smad3(-/-) mice display decreased radiation-induced skin fibrosis, suggesting a defect in both Tgfb-mediated fibroblast proliferation and migration. We established bone marrow stromal cell lines from Smad3(-/-) mice and homozygous littermate(+/+) mice. Smad3(-/-) cells displayed a significant increase in radiation resistance with a D(0)=2.25+/- 0.14 Gy compared to Smad3(+/+) cells with a D(0)=1.75+/- 0.03 (P=0.023). Radioresistance was abrogated by reinsertion of the human SMAD3 transgene, resulting in a D(0)=1.49 0.10 (P=0.028) for Smad3(-/-)(3) cells. More Smad3(-/-) cells than Smad3(+/+) cells were in the G(2)/M phase; Smad3(-/-)(3) cells were similar to Smad3(+/+) cells. Smad3(+/+) cells exhibited increased apoptosis 24 h after 5 Gy (15%) or 8 Gy (43%) compared to less than 1% in Smad3(-/-) cells exposed to either dose. The movement of Smad3(-/-) cells, measured in an automated cell tracking system, was slower than that of Smad3(+/+) cells. Smad3(-/-)(3) cells resembled Smad3(+/+) cells. These studies establish concordance of a defective Tgfb signal transduction pathway, an increased proportion of G(2)/M cells, and radioresistance. The decreased migratory capacity of Smad3(-/-) cells in vitro correlates with decreased radiation fibrosis in vivo in mice deficient in Tgfb signaling.


Subject(s)
Bone Marrow Cells/cytology , Bone Marrow Cells/physiology , Receptors, Transforming Growth Factor beta/metabolism , Smad3 Protein/metabolism , Animals , Apoptosis/radiation effects , Bone Marrow Cells/radiation effects , Cell Line , Cell Movement/radiation effects , Cell Survival/radiation effects , Genes, cdc/physiology , Genes, cdc/radiation effects , Mice , Radiation Tolerance/physiology , Stromal Cells/cytology , Stromal Cells/physiology , Stromal Cells/radiation effects
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