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Research ArticleExperimental Studies

Bone Marrow from CD18-/- (MAC-1-/-) Homozygous Deletion Recombinant Negative Mice Demonstrates Increased Longevity in Long-term Bone Marrow Culture and Decreased Contribution to Irradiation Pulmonary Damage

MICHAEL W. EPPERLY, DONNA SHIELDS, YUNYUN NIU, TIMOTHY CARLOS and JOEL S. GREENBERGER
In Vivo July 2006, 20 (4) 431-438;
MICHAEL W. EPPERLY
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DONNA SHIELDS
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YUNYUN NIU
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TIMOTHY CARLOS
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JOEL S. GREENBERGER
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  • For correspondence: greenbergerjs{at}upmc.edu
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Abstract

Background: Bone marrow macrophage surface expression of CD18 (MAC-1, LFA1) is involved in cellular binding to V-CAM-1 and V-CAM-2 adhesion molecules expressed on endothelial cells. We sought to determine if this interaction affected the growth of marrow in long-term bone marrow cultures (LTBMCs) and macrophage migration to the irradiated lung in pulmonary fibrosis/organizing alveolitis. Materials and Methods: Continuous bone marrow cultures from CD18-/- and CD18+/+ littermates were established. Bone marrow migration to the irradiated lung was quantitated in CD18+/+ or CD18-/- marrow chimeric mice. Anti-macrophage antibodies were administered to block monocyte/macrophage migration after lung irradiation. Results: CD18-/- LTBMCs demonstrated significantly increased longevity (over 20 weeks) of production of multilineage hematopoietic progenitor cells, total non-adherent cells and macrophage progenitors compared to those derived from CD18+/+ littermates (10 weeks). C57BL/6J female mice chimeric for male CD18-/- bone marrow showed improved (50%) survival at 120 days after pulmonary radiation compared to female mice chimeric for male CD18+/+ bone marrow (0.0%). Intraperitoneal injections (daily for 15 days) of an anti-macrophage antibody on days 80-98 after 20 Gy total lung irradiation resulted in reduction of macrophage migration to the lungs and increased survival. Conclusion: The data demonstrate a complex role of CD18 (MAC-1) in macrophage progenitor and macrophage cellular interaction involving stromal cells of the bone marrow and lung.

  • Long-term marrow culture
  • hematopoiesis
  • CD18 (MAC-1)
  • irradiation pulmonary fibrosis
  • Received April 28, 2006.
  • Accepted May 12, 2006.
  • Copyright © 2006 The Author(s). Published by the International Institute of Anticancer Research.
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In Vivo
Vol. 20, Issue 4
July-August 2006
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Bone Marrow from CD18-/- (MAC-1-/-) Homozygous Deletion Recombinant Negative Mice Demonstrates Increased Longevity in Long-term Bone Marrow Culture and Decreased Contribution to Irradiation Pulmonary Damage
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Bone Marrow from CD18-/- (MAC-1-/-) Homozygous Deletion Recombinant Negative Mice Demonstrates Increased Longevity in Long-term Bone Marrow Culture and Decreased Contribution to Irradiation Pulmonary Damage
MICHAEL W. EPPERLY, DONNA SHIELDS, YUNYUN NIU, TIMOTHY CARLOS, JOEL S. GREENBERGER
In Vivo Jul 2006, 20 (4) 431-438;

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Bone Marrow from CD18-/- (MAC-1-/-) Homozygous Deletion Recombinant Negative Mice Demonstrates Increased Longevity in Long-term Bone Marrow Culture and Decreased Contribution to Irradiation Pulmonary Damage
MICHAEL W. EPPERLY, DONNA SHIELDS, YUNYUN NIU, TIMOTHY CARLOS, JOEL S. GREENBERGER
In Vivo Jul 2006, 20 (4) 431-438;
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