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首页> 外文期刊>Polymer Degradation and Stability >Novel polylactic acid (PLA)-organoclay nanocomposite bio-packaging for the cosmetic industry; migration studies and in vitro assessment of the dermal toxicity of migration extracts
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Novel polylactic acid (PLA)-organoclay nanocomposite bio-packaging for the cosmetic industry; migration studies and in vitro assessment of the dermal toxicity of migration extracts

机译:新型聚乳酸(PLA) - 化妆品工业的纳米粘土纳米复合物生物包装;迁移研究和体外评估迁移提取物的皮肤毒性

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The exploitation of polylactide (PLA) nanocomposites (which integrate organically modified clays (organoclays) into polymers) in packaging for the cosmetics industry could provide a biodegradable alternative to the use of conventional plastics. In this study nanocomposites with a PLA polymer matrix and clay fillers organically modified with the quaternary ammonium salts, hexadecyl trimethyl ammonium bromide (HDTA) or octadecyl trimethyl ammonium chloride (TMSA), were produced and tested for their safe use in cosmetic packaging. To address concerns over the potential release of constituents from such nanocomposites, levels of total overall migration in a range of simulants (e.g. vegetable oil, aqueous media, and cosmetic formulations) was assessed 10 days post incubation at 40 degrees C following EU-Plastics Regulation 10/2011 concerning materials and articles in contact with foodstuffs. Total overall migration levels calculated for all PLA nanocomposites tested (maximum of 0.88 +/- 0.44 mg/dm(2)) were well below the total established legislative migration limit (10 mg/dm(2)). Toxicity of the nanocomposite migration extracts to the skin was assessed in vitro. Exposure of skin cells (HaCaT immortalized human keratino-cytes) and a full thickness epidermal skin model (EpiDerm (TM)) to migration extracts did not result in any significant loss in cell viability or skin irritation (OECD TG 439). The results therefore indicate that the levels of migration from the nanocomposite measured was low, and that the nanocomposite migration extracts stimulated minimal toxicity to the skin. Up until now, the hazard of migration extracts from polymer-organoclay nanocomposites following dermal exposure has not been investigated and thus our study addresses a gap in knowledge. These findings can inform the safe design of bio-based biodegradable nanocomposite packaging (used by the cosmetics, and other industries) in the future to promote a more sustainable and greener economy for the plastics industry. (C) 2019 Elsevier Ltd. All rights reserved.
机译:聚氯胺(PLA)纳米复合材料的利用(将有机修饰的粘土(有机纤维)与聚合物集成到聚合物中,用于化妆品行业的包装可以提供可生物降解的替代常规塑料的替代品。在该研究中,用PLA聚合物基质和用季铵盐,十六烷基三甲基溴化铵(HDTA)或八烷基三甲基氯化铵(TMSA)有机填充物,并测试其在化妆品包装中的安全使用,并在化妆品包装中进行粘土填充剂。为了应对来自这种纳米复合材料的潜在释放成分的担忧,在Eu-Plastics调节后40摄氏度后孵育后10天评估了一系列模拟剂(例如植物油,含水介质和化妆品配方中的总体迁移水平10/2011关于与食品接触的材料和物品。对所有PLA纳米复合材料计算的总整体迁移水平(最大为0.88 +/- 0.44mg / dm(2))均远低于成立的立法迁移限制(10mg / dm(2))。在体外评估纳米复合材料迁移提取物对皮肤的毒性。皮肤细胞暴露于迁移提取物的皮肤细胞(HACAT永生化人角蛋白酶菌)和全厚度表皮皮肤模型(表皮(TM))并未导致细胞活力或皮肤刺激(OECD TG 439)中的任何显着损失。因此,结果表明,测量的纳米复合材料的迁移水平低,纳米复合迁移提取物刺激对皮肤的最小毒性。到目前为止,尚未研究皮肤暴露后聚合物 - 有机粘土纳米复合材料的迁移提取物的危害,因此我们的研究解决了知识中的差距。这些调查结果可以向未来通报基于生物的生物降解的纳米复合材料包装(包括化妆品和其他行业)的安全设计,以促进更可持续和更环保的塑料行业。 (c)2019 Elsevier Ltd.保留所有权利。

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