薛黎明, 陆雯源, 徐佳乐, 金玉娥, 卢大胜, 汪国权. 全氟化合物暴露对骨健康影响的研究进展[J]. 上海预防医学, 2023, 35(4): 391-395. DOI: 10.19428/j.cnki.sjpm.2023.22621
引用本文: 薛黎明, 陆雯源, 徐佳乐, 金玉娥, 卢大胜, 汪国权. 全氟化合物暴露对骨健康影响的研究进展[J]. 上海预防医学, 2023, 35(4): 391-395. DOI: 10.19428/j.cnki.sjpm.2023.22621
XUE Liming, LU Wenyuan, XU Jiale, JIN Yu’e, LU Dasheng, WANG Guoquan. Research progress in per- and polyfluoroalkylsubstancesPFASsexposure and bone health[J]. Shanghai Journal of Preventive Medicine, 2023, 35(4): 391-395. DOI: 10.19428/j.cnki.sjpm.2023.22621
Citation: XUE Liming, LU Wenyuan, XU Jiale, JIN Yu’e, LU Dasheng, WANG Guoquan. Research progress in per- and polyfluoroalkylsubstancesPFASsexposure and bone health[J]. Shanghai Journal of Preventive Medicine, 2023, 35(4): 391-395. DOI: 10.19428/j.cnki.sjpm.2023.22621

全氟化合物暴露对骨健康影响的研究进展

Research progress in per- and polyfluoroalkylsubstancesPFASsexposure and bone health

  • 摘要: 全氟化合物(PFASs)是一类全球热点关注的持久性新型有机污染物。PFASs可通过饮水、食物、大气和土壤等环境介质暴露进入人体,在体内持久性蓄积从而引发多种毒性效应。目前,PFASs的骨毒性并未引起重视。研究认为,PFASs的暴露和蓄积对人体骨健康有重大影响,尤其是阻碍婴幼儿和青少年骨骼健康发育,加剧老年人骨丢失和骨折的发生。本文综述了PFASs的暴露浓度对人体骨密度影响的研究进展,探讨PFASs是对骨的毒性机制,以期为揭示PFASs暴露对骨骼健康的影响和毒性机制提供参考。

     

    Abstract: Per- and polyfluoroalkyl substances (PFASs) are a new type of persistent organic pollutants with global attention. They have shown multiple toxic effects due to their persistent accumulation in human body through exposure to environmental media such as drinking water, food, atmosphere, and soil. However, the bone toxicity of PFASs has not attracted enough attention. It is believed that the exposure and accumulation of PFASs in human have a significant impact on the bone health, especially hindering the healthy bone development in infants and adolescents, and aggravating the occurrence of bone loss and fracture in the elder populations. This paper will review the research progress of the effects of PFASs exposure on bone health indicators such as bone mineral density, and discuss the mechanisms of PFAS in bone toxicity. This review will provide references for revealing the effects of PFASs exposure on bone health and their toxic mechanisms.

     

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