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The Journal of Immunology, 2003, 171: 3128-3135.
Copyright © 2003 by The American Association of Immunologists

Dynamics of Macrophage Cell Populations During Murine Pulmonary Tuberculosis 1

Mercedes Gonzalez-Juarrero2, Tae Sun Shim3, Andre Kipnis, Ana Paula Junqueira-Kipnis and Ian M. Orme

Mycobacteria Research Laboratories, Department of Microbiology, Immunology and Pathology, Colorado State University, Fort Collins, CO 80523

The influx of macrophages into the lungs is the major component of the granulomatous response to infection with Mycobacterium tuberculosis. In this investigation we used flow cytometric analysis to define macrophage populations entering the airways and lung tissues of infected mice. We demonstrate that by the judicious use of cell surface markers, especially CD11b and CD11c, several cell populations can be distinguished, allowing cell sorting and morphological definition. Primary populations of CD11b-/CD11c+/high were defined as alveolar macrophages, CD11bhigh/CD11c+/high as dendritic cells, and CD11b+/mid/CD11c+/mid as small macrophages or monocytes, and changes in the activation phenotype of these populations were followed over the early course of the infection. In further studies, these cell populations were compared with cells harvested during the chronic stage of the disease. During the chronic stage of infection, Ag-presenting class II molecules and activation markers were poorly expressed on dendritic, small macrophage, and monocyte cell populations, which may have important implications for the breakdown of the lesions during reactivation disease. This analytical approach may facilitate the further characterization of macrophage populations entering into the lung tissues and their relative contributions to host resistance to tuberculosis infection.




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