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Diminished proliferation of B blast cell in response to cytokines in ethanol-consuming mice
Mei-Ping Chang1, Qun Wang, Dean C Norman
1Geriatric Research, Education and Clinical Center, VA Medical Center, West Los Angeles, CA 90073, USA.
Insights
Ethanol consumption impairs B cell proliferation and antibody response by increasing Interleukin-4 (IL-4) production. This imbalance hinders T- and B-cell communication, weakening immune function in alcoholic individuals.
Area of Science:
- Immunology
- Alcohol-induced immune suppression
Background:
- Ethanol is known to suppress antibody responses in humans and animals.
- Understanding ethanol's impact on specific immune cell functions is crucial for public health.
Purpose of the Study:
- To investigate how ethanol affects cytokine-induced proliferation of splenic B blast cells.
- To determine if ethanol causes an imbalance in cytokine activity, leading to reduced immune responses.
Main Methods:
- Spleen cells from ethanol-fed C57BL/6 mice were analyzed for proliferation and cytokine production.
- Proliferative capacity of B blast cells was assessed using thymidine incorporation assays.
- Bioassays were employed to determine cytokine bioactivity, specifically Interleukin-2 (IL-2) and Interleukin-4 (IL-4).
Main Results:
- Ethanol consumption significantly weakened B cell proliferation in response to mitogens, IL-2, and IL-4.
- Increased production of IL-4 by helper T cells was observed in ethanol-fed mice.
- Excessive IL-4 diminished B blast cell proliferation, indicating impaired B cell response to IL-4.
Conclusions:
- Diminished B cell proliferation in ethanol-consuming mice is partly due to excessive IL-4 production.
- Ethanol impairs B cells' ability to interact effectively with IL-4 secreted by helper T cells.
- This study elucidates mechanisms of chronic alcoholism's impairment of T- and B-cell interdependence and immune function.
Abstract:
We and others have demonstrated that ethanol suppresses the antibody response in humans and animals. The purpose of this study was to determine whether ethanol affects cytokine-induced proliferative responses of splenic B blast cells, and whether the decreased response was due to an imbalance of the cytokine activity. Thus, the ability of spleen cells from individual ethanol-diet-fed C57BL/6 mice to proliferate and produce cytokines was determined. The ability of anti-IgM monoclonal antibodies (mAb)-activated splenic B blast cells in response to mouse recombinant IL-2 (rIL-2) or rIL-4 was also assessed. A thymidine incorporation assay was used to determine cell proliferation, and the conventional bioassays for cytokine-dependent cell proliferation were used for determining the bioactivity of cytokines. Data were analyzed with general linear model procedure. Our results showed that ethanol weakened the proliferative response of B cells in response to mitogen as well as to mouse rIL-2 and rIL-4. The decreased B cell responses may result from an increase in the production of IL-4 by helper T cells. Finally, in the presence of excessive dose of rIL-4, the proliferative responses of B blast cells from all three groups of mice were diminished (p<0.01). Thus, our data clearly indicated that the diminished B cell proliferation in ethanol-consuming mice was due in part to an excessive amount of IL-4 produced and an inability of the B cell to interact properly with IL-4 that was secreted by helper T cells. The results should extend our basic understanding of the mechanism by which chronic alcoholism impairs the interactions and interdependence of T- and B-cell immune functions.
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