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Published on: January 5, 2016
Zinc status in human immunodeficiency virus infection
M K Baum1, G Shor-Posner, A Campa
1Center for Disease Prevention, Department of Psychiatry and Behavioral Medicine, University of Miami School of Medicine, Miami, FL 33136, USA.
Insights
Adequate zinc is crucial for immune function, supporting T-cell development and antibody production. Zinc deficiency impairs immunity, leading to thymus atrophy and reduced immune cell responses.
Area of Science:
- Immunology
- Nutritional Biochemistry
Background:
- Zinc plays a vital role in numerous immune processes, including T-cell division, maturation, and differentiation.
- It is a structural component of essential proteins like Cu, Zn superoxide dismutase and thymulin, crucial for immune cell function and antioxidant defense.
Purpose of the Study:
- To elucidate the multifaceted roles of zinc in maintaining immune system integrity.
- To highlight the consequences of zinc deficiency on immune cell activity and overall immune response.
Main Methods:
- Review of existing scientific literature on zinc's impact on immune cells and processes.
- Analysis of studies detailing the effects of zinc deficiency in animal and human models.
Main Results:
- Zinc is essential for lymphocyte activation, gene transcription, and biomembrane function.
- Zinc deficiency leads to thymus atrophy, impaired cell-mediated immunity, lymphopenia, and reduced antibody responses, especially T-cell dependent ones.
- Zinc also inhibits tumor necrosis factor production, relevant to conditions like AIDS.
Conclusions:
- Maintaining adequate zinc status is critical for a robust immune system.
- Zinc deficiency significantly compromises both cellular and humoral immunity, impacting overall health and disease resistance.
Abstract:
There is substantial evidence to support an important role for zinc in immune processes. Adequate zinc status is essential for T-cell division, maturation and differentiation; lymphocyte response to mitogens; programmed cell death of lymphoid and myeloid origins; gene transcription; and biomembrane function. Lymphocytes are one of the types of cells activated by zinc. Zinc is the structural component of a wide variety of proteins, neuropeptides, hormone receptors and polynucleotides. Among the best known zinc-dependent hormones/enzymes are Cu, Zn superoxide dismutase, an enzyme component of the antioxidant defense system, and thymulin, which is essential for the formation of T-lymphocytes. In animals and humans, zinc deficiency results in rapid and marked atrophy of the thymus, impaired cell-mediated cutaneous sensitivity and lymphopenia. Primary and secondary antibody responses are reduced in zinc deficiency, particularly for those antigens that require T-cell help, such as those in heterologous red blood cells. In addition, antibody response and the generation of splenic cytotoxic T cells after immunization are reduced. Zinc also inhibits the production of tumor necrosis factor, which is implicated in the pathophysiology of cachexia and wasting in acquired immune deficiency syndrome.
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