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Fas ligand-expressing lymphocytes enhance alveolar macrophage apoptosis in the resolution of acute pulmonary inflammation.

Authors :
Kearns, Mark T.
Barthel, Lea
Bednarek, Joseph M.
Yunt, Zulma X.
Henson, Peter M.
Janssen, William J.
Source :
American Journal of Physiology: Lung Cellular & Molecular Physiology. 2014, Vol. 307 Issue 1, pL62-L70. 9p.
Publication Year :
2014

Abstract

Apoptosis of alveolar macrophages and their subsequent clearance by neighboring phagocytes are necessary steps in the resolution of acute pulmonary inflammation. We have recently identified that activation of the Fas death receptor on the cell surface of macrophages drives macrophage apoptosis. However, the source of the cognate ligand for Fas (FasL) responsible for induction of alveolar macrophage apoptosis is not defined. Given their known role in the resolution of inflammation and ability to induce macrophage apoptosis ex vivo, we hypothesized that T lymphocytes represented a critical source of FasL. To address this hypothesis, C57BL/6J and lymphocyte-deficient (Rag- 1-/-) mice were exposed to intratracheal lipopolysaccharide to induce pulmonary inflammation. Furthermore, utilizing mice expressing nonfunctional FasL, we adoptively transferred donor lymphocytes into inflamed lymphocyte-deficient mice to characterize the effect of lymphocyte-derived FasL on alveolar macrophage apoptosis in the resolution of inflammation. Herein, evidence is presented that lymphocytes expressing FasL enhance alveolar macrophage apoptosis during the resolution of LPS-induced inflammation. Moreover, lymphocyte induction of alveolar macrophage apoptosis results in contraction of the alveolar macrophage pool, which occurs in a FasLdependent manner. Specifically, FasL-expressing CD8+ T lymphocytes potently induce alveolar macrophage apoptosis and contraction of the alveolar macrophage pool. Together, these studies identify a novel role for CD8+ T lymphocytes in the resolution of acute pulmonary inflammation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10400605
Volume :
307
Issue :
1
Database :
Academic Search Index
Journal :
American Journal of Physiology: Lung Cellular & Molecular Physiology
Publication Type :
Academic Journal
Accession number :
98557838
Full Text :
https://doi.org/10.1152/ajplung.00273.2013