YUE Sanya, WANG Rong, WANG Yuhua, LI Jing, SHANG Mengjuan. Research progress on immune system function damage induced by microwave radiation[J]. Journal of Environmental and Occupational Medicine, 2024, 41(8): 954-960. DOI: 10.11836/JEOM24056
Citation: YUE Sanya, WANG Rong, WANG Yuhua, LI Jing, SHANG Mengjuan. Research progress on immune system function damage induced by microwave radiation[J]. Journal of Environmental and Occupational Medicine, 2024, 41(8): 954-960. DOI: 10.11836/JEOM24056

Research progress on immune system function damage induced by microwave radiation

  • With the rapid advancement and wide application of microwave technology, it enhances convenience while potentially endangering health. The immune system, as a vital shield, is an important protective barrier and also one of the sensitive targets of microwave radiation. The immune system is particularly affected by microwave radiation via innate and adaptive immune responses, which is supported by both population surveys and experimental studies; however, the precise mechanism of immunotoxicity of microwave radiation remains under investigation. In light of recent scientific advances in the correlation between microwave radiation and the immune system, the deleterious impact of microwave radiation on innate immunity was delineated. Microwave radiation can induce irregular innate immune function by damaging macrophages, neutrophils, natural killer cells, and dendritic cells. The effects of microwave radiation on adaptive immunity were also elucidated. Microwave radiation can impair cellular immune response by influencing T cell proliferation, maturation and activation, and distribution of T cell subpopulation, and also hinder humoral immune function by influencing B lymphocyte protein expression, maturation during development, and number of B cells. Disparity in the immune function of the body can precipitate the onset of various immune-associated diseases, so the immunotoxic effects of microwave radiation and associated protection need considerable attention and detailed investigation. This article reviewed the shortcomings of existing studies, and suggested that future experimental studies should use experimental parameters that are more similar to the actual scene of life and work, pay more attention to the biological effects of combined multi-frequency microwave exposure on the immune system, use standardized and unified experimental methods, and incorporate more sophisticated experimental technologies to further elucidate the laws of damage effect and exact mechanism of microwave radiation on the immune system, so as to provide a scientific basis for potent protection against the damage effect of microwave radiation on the immune system.
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