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氟化物在免疫损伤中的作用研究进展。

Progress in research on the role of fluoride in immune damage.

机构信息

Center for Endemic Disease Control, Chinese Center for Disease Control and Prevention, Harbin Medical University, Harbin, Heilongjiang, China.

Key Lab of Etiology and Epidemiology, Education Bureau of Heilongjiang Province & Ministry of Health, Harbin Medical University, Harbin, China.

出版信息

Front Immunol. 2024 May 14;15:1394161. doi: 10.3389/fimmu.2024.1394161. eCollection 2024.

Abstract

Excessive fluoride intake from residential environments may affect multiple tissues and organs; however, the specific pathogenic mechanisms are unclear. Researchers have recently focused on the damaging effects of fluoride on the immune system. Damage to immune function seriously affects the quality of life of fluoride-exposed populations and increases the incidence of infections and malignant tumors. Probing the mechanism of damage to immune function caused by fluoride helps identify effective drugs and methods to prevent and treat fluorosis and improve people's living standards in fluorosis-affected areas. Here, the recent literature on the effects of fluoride on the immune system is reviewed, and research on fluoride damage to the immune system is summarized in terms of three perspectives: immune organs, immune cells, and immune-active substances. We reviewed that excessive fluoride can damage immune organs, lead to immune cells dysfunction and interfere with the expression of immune-active substances. This review aimed to provide a potential direction for future fluorosis research from the perspective of fluoride-induced immune function impairment. In order to seek the key regulatory indicators of fluoride on immune homeostasis in the future.

摘要

从居住环境中摄入过多的氟化物可能会影响多个组织和器官;然而,具体的发病机制尚不清楚。研究人员最近关注了氟化物对免疫系统的损害作用。免疫功能受损严重影响氟暴露人群的生活质量,并增加感染和恶性肿瘤的发病率。探究氟化物引起免疫功能损伤的机制有助于发现有效药物和方法来预防和治疗氟中毒,提高氟中毒地区人们的生活水平。在这里,我们回顾了最近关于氟化物对免疫系统影响的文献,并从三个方面总结了氟化物对免疫系统的损伤研究:免疫器官、免疫细胞和免疫活性物质。我们综述了过量的氟化物会损害免疫器官,导致免疫细胞功能障碍,并干扰免疫活性物质的表达。本综述旨在从氟化物引起免疫功能障碍的角度为未来的氟中毒研究提供潜在的方向。为了在未来寻求氟化物对免疫稳态的关键调节指标。

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