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来自废旧轮胎胶粉的危险化学物质(包括 N,N'-取代对苯二胺)的体外人体口腔生物可给性评估。

In vitro human oral bioaccessibility assessment of hazardous chemicals, including N, N'-substituted-p-phenylenediamines, coming from recycled tire crumb rubber.

机构信息

CRETUS, Department of Analytical Chemistry, Nutrition and Food Science, Universidade de Santiago de Compostela, E-15782, Spain; Agronomic Research Centre (AGACAL-CIAM), Unit of Organic Contaminant, Apartado 10, E-15080, A Coruña, Spain.

CRETUS, Department of Analytical Chemistry, Nutrition and Food Science, Universidade de Santiago de Compostela, E-15782, Spain.

出版信息

Chemosphere. 2024 Nov;367:143534. doi: 10.1016/j.chemosphere.2024.143534. Epub 2024 Oct 16.

Abstract

Tires, apart from being formed by rubber and filling materials, contain organic compounds added to make them resistant and durable. The widely use of recycled tire crumb rubber (RTCR), main product of the shredding process of end-of-life tires, can cause human exposure to these chemicals due to its use in synthetic football fields and kid's playgrounds. In 2023, the European Commission banned the use of recycled tire crumb rubber in synthetic fields, giving eight years to replace the used material. This study intends to assess the oral bioaccessibility of antiozonants, crosslinking and vulcanizer agents present in RTCR. With this purpose, the Unified Bioaccessibility Method (BARGE) was used to simulate the material ingestion. RTCR is put into contact with the four simulated biological fluids including saliva, gastric and duodenal juice and bile, attempting to simulate human digestion. Afterwards, the organic compounds present in the fluid need to be extracted and Solid-phase extraction (SPE) was the technique selected after being optimized to obtain the best extraction conditions. Ultrasound assisted extraction was performed to evaluate the total concentration of the target compounds in the crumb rubber matrixes. Liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS) was employed to identify and quantify the target compounds. The results showed the bioaccessibility of all the studied analytes, with values ranging from 0.1 % up to 70 %. Benzothiazole was the compound with the highest bioaccessibility with a mean value of 40 % and concentrations reaching 32000 ng g in the bioaccessible fraction. N-(1,3-dimethylbutyl)-N'-phenyl-p-phenylenediamine and its transformation product ((4-Methylpentan-2-yl)amino)-5-(phenylamino)cyclohexa-2,5-diene-1,4-dione) showed an average bioaccessibility of 0.1 % and 1.8 %, respectively, the latter being present in all the analysed samples.

摘要

轮胎除了由橡胶和填充材料组成外,还含有有机化合物,这些化合物的添加可以使轮胎具有耐腐蚀性和耐用性。广泛使用的废旧轮胎(END-OF-LIFE TIRES)的粉碎过程的主要产物——废旧轮胎胶粉(RTCR),由于其在合成足球场和儿童游乐场的使用,可能会导致人类接触到这些化学物质。2023 年,欧盟委员会禁止在合成场地使用废旧轮胎胶粉,并给予 8 年时间来更换使用的材料。本研究旨在评估 RTCR 中存在的防老剂、交联剂和硫化剂的口服生物可及性。为此,采用统一生物可及性方法(BARGE)模拟材料摄入。将 RTCR 与包括唾液、胃液和十二指肠液以及胆汁在内的四种模拟生物流体接触,试图模拟人体消化。之后,需要从流体中提取存在的有机化合物,固相萃取(SPE)是在经过优化以获得最佳提取条件后选择的技术。超声辅助提取用于评估目标化合物在胶粉基质中的总浓度。采用液相色谱-串联质谱法(LC-MS/MS)对目标化合物进行定性和定量分析。结果表明,所有研究分析物均具有生物可及性,其值范围在 0.1%至 70%之间。苯并噻唑是生物可及性最高的化合物,平均值为 40%,在可生物利用部分的浓度达到 32000ng/g。N-(1,3-二甲基丁基)-N'-苯基-p-苯二胺及其转化产物((4-甲基戊-2-基)氨基)-5-(苯胺基)环己-2,5-二烯-1,4-二酮)的平均生物可及性分别为 0.1%和 1.8%,后者存在于所有分析的样品中。

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