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A Critical Review of the Application of Polymer of Low Concern and Regulatory Criteria to Fluoropolymers

机译:对低关注度和监管标准的聚合物在含氟聚合物中的应用的综述

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Per- and polyfluoroalkyl substances (PFAS) are a group of fluorinated substances that are in the focus of researchers and regulators due to widespread presence in the environment and biota, including humans, of perfluorooctane sulfonate (PFOS) and perfluorooctanoic acid (PFOA). Fluoropolymers, high molecular weight polymers, have unique properties that constitute a distinct class within the PFAS group. Fluoropolymers have thermal, chemical, photochemical, hydrolytic, oxidative, and biological stability. They have negligible residual monomer and oligomer content and low to no leachables. Fluoropolymers are practically insoluble in water and not subject to long-range transport. With a molecular weight well over 100000 Da, fluoropolymers cannot cross the cell membrane. Fluoropolymers are not bioavailable or bioaccumulative, as evidenced by toxicology studies on polytetrafluoroethylene (PTFE): acute and subchronic systemic toxicity, irritation, sensitization, local toxicity on implantation, cytotoxicity, in vitro and in vivo genotoxicity, hemolysis, complement activation, and thrombogenicity. Clinical studies of patients receiving permanently implanted PTFE cardiovascular medical devices demonstrate no chronic toxicity or carcinogenicity and no reproductive, developmental, or endocrine toxicity. This paper brings together fluoropolymer toxicity data, human clinical data, and physical, chemical, thermal, and biological data for review and assessment to show that fluoropolymers satisfy widely accepted assessment criteria to be considered as polymers of low concern (PLC). This review concludes that fluoropolymers are distinctly different from other polymeric and nonpolymeric PFAS and should be separated from them for hazard assessment or regulatory purposes. Grouping fluoropolymers with all classes of PFAS for read across or structure-activity relationship assessment is not scientifically appropriate. Integr Environ Assess Manag 2018;14:316-334. (c) 2018 The Authors. Integrated Environmental Assessment and Management published by Wiley Periodicals, Inc. on behalf of Society of Environmental Toxicology & Chemistry (SETAC)
机译:由于全氟辛烷磺酸盐(PFOS)和全氟辛酸(PFOA)在环境和生物区系(包括人类)中的广泛存在,全氟烷基物质和多氟烷基物质(PFAS)是一类氟化物质,是研究人员和监管人员关注的重点。含氟聚合物,高分子量聚合物,具有独特的性能,构成PFAS组中的不同类别。含氟聚合物具有热,化学,光化学,水解,氧化和生物稳定性。它们具有可忽略的残余单体和低聚物含量,并且低至无可浸出物。含氟聚合物实际上不溶于水,并且不能进行长距离运输。分子量远远超过100000 Da,含氟聚合物无法穿过细胞膜。如聚四氟乙烯(PTFE)的毒理学研究所证明的,含氟聚合物不具有生物利用度或生物蓄积性:急性和亚慢性全身毒性,刺激性,致敏性,植入时的局部毒性,细胞毒性,体内和体外遗传毒性,溶血,补体激活和血栓形成性。对接受永久植入PTFE心血管医疗设备的患者进行的临床研究表明,其无慢性毒性或致癌性,也无生殖,发育或内分泌毒性。本文将含氟聚合物的毒性数据,人类临床数据以及物理,化学,热和生物学数据汇总在一起进行审查和评估,以表明含氟聚合物符合广泛接受的评估标准,被认为是低关注度聚合物(PLC)。这项审查得出的结论是,含氟聚合物与其他聚合和非聚合PFAS明显不同,因此应将其与它们分开以进行危害评估或监管。将含氟聚合物与所有类别的PFAS进行分组以进行阅读或结构-活性关系评估在科学上是不合适的。 Integr环境评估管理报告2018; 14:316-334。 (c)2018作者。 Wiley Periodicals,Inc.代表环境毒理化学协会(SETAC)出版的《综合环境评估与管理》

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