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Enzyme-linked Immunospot Assay (ELISPOT): Quantification of Th-1 Cellular Immune Responses Against Microbial Antigens
Published on: November 24, 2010
[Some problems concerning local cellular immunity in tuberculosis]
1First Department of Internal Medicine, Nagoya University School of Medicine, Japan.
Insights
Tuberculous pleurisy demonstrates local cellular immunity, with pleural fluid lymphocytes producing significantly more interferon-gamma (IFN-gamma) in response to tuberculosis antigens than blood lymphocytes.
Area of Science:
- Immunology
- Cellular Immunity
- Tuberculosis Research
Context:
- Tuberculous pleurisy provides a unique model for studying local immune responses due to accessible pleural fluid.
- Pleural effusions contain a high concentration of immunocompetent cells, facilitating in-depth analysis of cellular immunity.
- Previous studies highlighted differences in lymphocyte populations between pleural fluid and peripheral blood.
Purpose:
- To investigate the characteristics and function of lymphocytes within the pleural cavity during tuberculous pleurisy.
- To compare the immune response of pleural fluid lymphocytes versus peripheral blood lymphocytes when stimulated with specific tuberculosis antigens.
- To identify the specific T-cell subset responsible for antigen-specific cytokine production in tuberculous pleurisy.
Summary:
- Lymphocytes from tuberculous pleural effusions exhibited a heightened response to purified protein derivative (PPD), producing significantly more interferon-gamma (IFN-gamma) compared to peripheral blood lymphocytes.
- The OKT4+/OKT8- T-cell subset was identified as the primary producer of antigen-specific IFN-gamma in pleural fluid.
- Pleural fluid macrophages, in conjunction with T lymphocytes, enhanced interleukin-2 (IL-2) production in response to PPD.
Impact:
- These findings confirm the presence of robust local cellular immunity at the site of tuberculous pleurisy.
- The study elucidates the specific T-cell subsets and cellular interactions involved in the local immune response to tuberculosis.
- Understanding these localized immune mechanisms may inform the development of targeted immunotherapies for tuberculosis.
Abstract:
Tuberculous pleurisy is restricted to the pleural cavity and profuse pleural fluid, which contains numerous immunocompetent cells, is easily obtained. Therefore, tuberculous pleurisy is a good model for the study of local cellular immunity. The characteristics and function of lymphocytes in both pleural exudate and peripheral blood were studied. The pleural fluid had more T-lymphocytes than the peripheral blood. To evaluate predominant T-lymphocyte function in tuberculous pleural exudate, we studied the reactions of the lymphocytes to the specific antigen. When lymphocytes in pleural effusion were cocultured with purified protein derivative (PPD), they reacted to PPD and produced far more interferon-gamma (IFN-gamma) than did peripheral blood lymphocytes. Thus, exudative-sensitized lymphocytes in morbid sites reacted to the specific antigen more strongly. These observations indicate the presence of local cellular immunity in tuberculous pleurisy at the morbid site. It would be very interesting to know which T-cell subset produces IFN-gamma. When pleural fluid T lymphocytes were treated with OKT4 monoclonal antibody and complement, a significant decrease in IFN-gamma production was observed in all patients examined, whereas no definite decrease in IFN-gamma production was found after treatment with OKT8 monoclonal antibody and complement. These results suggest that at least the OKT4+/OKT8- T-cell subset is responsible for the antigen-specific IFN-gamma production in pleural fluid T lymphocytes. With the cooperation of macrophages or monocytes, pleural fluid T lymphocytes produced a significant level of interleukin 2 (IL-2) in the presence of PPD. Tuberculosis pleural fluid macrophages promoted greater IL-2 production than blood monocytes from either tuberculosis pleural fluid or blood T lymphocytes.(ABSTRACT TRUNCATED AT 250 WORDS)
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