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首页> 外文期刊>Toxicology mechanisms and methods >Fluorine--a current literature review. An NRC and ATSDR based review of safety standards for exposure to fluorine and fluorides.
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Fluorine--a current literature review. An NRC and ATSDR based review of safety standards for exposure to fluorine and fluorides.

机译:氟-当前文献综述。基于NRC和ATSDR的氟和氟暴露安全标准审查。

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BACKGROUND: A review of the literature of the element fluorine and its bonded-form, fluoride, was undertaken. Generally regarded as safe, an expanding body of literature reveals that fluoride's toxicity has been unappreciated, un-scrutinized, and hidden for over 70 years. The context for the literature search and review was an environmental climate-change study, which demonstrated widespread fluoride contamination by smokestack emissions from coal-fired electricity-generating plants. The objective of this review is to educate and inform regarding the ubiquitous presence and harmful nature of this now ever-present corrosive and reactive toxin. METHODS: Methods include examination of national health agency reviews, primarily the National Research Council (NRC), Agency for Toxic Substances & Disease Registry (ATSDR), standard medical toxicology references, text books, as well as reports and documents from both private and public research as well as consumer-based NGOs. Study criteria were chosen for relevancy to the subject of the toxicity of fluoride. RESULTS: Fluoride is the extreme electron scavenger, the most corrosive of all elements, as well as the most-reactive. Fluoride appears to attack living tissues, via several mechanisms. Fluoride renders strong evidence that it is a non-biological chemical, demonstrating no observed beneficial function or role in organic chemistry, beyond use as a pesticide or insecticide. Fluorine has a strong role to play in industry, having been utilized extensively in metals, plastics, paints, aluminium, steel, and uranium production. CONCLUSION: Due to its insatiable appetite for calcium, fluorine and fluorides likely represent a form of chemistry that is incompatible with biological tissues and organ system functions. Based on an analysis of the affects of fluoride demonstrated consistently in the literature, safe levels have not been determined nor standardized. Mounting evidence presents conflicting value to its presence in biological settings and applications. Evidence examined in this review of the literature, and specifically the recent report by the National Research Council (NRC), offer strong support for an immediate reconsideration concerning risk vs benefit. Consensus recommendations from several sources are presented.
机译:背景:对氟元素及其键合形式氟化物的文献进行了综述。通常被认为是安全的,越来越多的文献表明,氟化物的毒性一直未被认识,未经审查和隐藏了70多年。文献检索和审查的背景是一项环境气候变化研究,该研究表明燃煤发电厂的烟囱排放物广泛污染了氟化物。这篇综述的目的是教育和告知这种现在普遍存在的腐蚀性和活性毒素普遍存在和有害性质。方法:方法包括检查国家卫生机构的审查,主要是国家研究委员会(NRC),有毒物质和疾病登记局(ATSDR),标准药物毒理学参考资料,教科书以及私人和公共部门的报告和文件研究以及基于消费者的非政府组织。选择与氟化物毒性相关的研究标准。结果:氟化物是一种极强的电子清除剂,在所有元素中腐蚀性最高,同时也是最活泼的。氟化物似乎通过几种机制攻击活组织。氟化物提供了有力的证据,表明它是一种非生物化学物质,除用作杀虫剂或杀虫剂外,尚无观察到的有益有机化学作用或作用。氟在金属,塑料,油漆,铝,钢和铀的生产中得到广泛利用,在工业中起着很重要的作用。结论:由于对钙的食欲不振,氟和氟化物可能代表了一种化学形式,与生物组织和器官系统功能不相容。根据对文献中一致证实的氟化物影响的分析,尚未确定安全水平或未对其进行标准化。越来越多的证据为其在生物环境和应用中的存在提供了相互矛盾的价值。这次文献回顾,尤其是美国国家研究委员会(NRC)的最新报告中研究的证据,为立即重新考虑风险与收益之间的关系提供了有力的支持。提出了来自多个来源的共识性建议。

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