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Assessing Sunscreen Lifecycle to Minimize Environmental Risk Posed by Nanoparticulate UV-Filters – A Review for Safer-by-Design Products

机译:评估防晒寿命循环,以最大限度地减少由纳米颗粒UV过滤器引起的环境风险 - 对更安全的设计产品审查

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Sunscreens are of emerging concern regarding environmental effect. After leaving the skin either through bathing or washing, the ingredients contained in the product formulation can be released into rivers, lakes, seashores, and/or sewage treatment plants. Nanomaterials used as UV-filters are of particular concern in this context as they may have a negative effect on these systems. To assess the risks posed, the exposure and hazard of nanoparticulate UV-filters must be considered through the entire lifecycle of the sunscreen product. This includes not only usage, but also manufacturing and disposal at the end of life of the product, as some nanomaterials may be released into the environment at each stage. This includes also developing relevant approaches that take into account realistic scenarios of environmental release and fate. Nanoparticulate UV-filters typically consist of a mineral nanoparticle core (TiO2 or ZnO) coated with surface layers aimed at optimizing the dispersion in the formulation and at supressing any photo-sensibility. This coating plays a key role in the associated risk since it affects the nanoparticle surface properties, which control both fate and hazard. At present, knowledge gaps remain regarding the safety of nanomaterials used in sunscreen, as very few studies have focused on real sunscreen filters and formulations throughout their lifecycle so far. A literature review is proposed here from the design of nanoparticulate UV-filters and formulations, to the release, fate, and effect in the different compartments encountered along the product lifecycle. The resulting state of the art highlights knowledge gaps and will likely help regulators, manufacturers, and consumers choose appropriate guidance. By considering each development stage of the sunscreen, from the choice of the UV-filter(s) and its (their) integration into a cosmetic formulation to the knowledge of the risk involved in this choice all along the product lifecycle, an eco-design approach can be achieved where release or toxicity are reduced. Sustainability can thus be accounted for, during the design process, by making the appropriate choices (in advance) that help minimize or prevent the environmental impact of the sunscreen.
机译:防晒霜对环境效应产生了新兴的关注。通过沐浴或洗涤留下皮肤后,产品配方中包含的成分可以释放到河流,湖泊,海景和/或污水处理厂中。用作紫外线过滤器的纳米材料在这种情况下特别关注,因为它们可能对这些系统产生负面影响。为了评估所带来的风险,必须通过防晒产品的整个生命周期考虑纳米颗粒UV过滤器的暴露和危害。这不仅包括使用,而且还包括在产品的寿命结束时制造和处理,因为一些纳米材料可以在每个阶段释放到环境中。这还包括制定相关的方法,以考虑环境释放和命运的现实情景。纳米颗粒UV过滤器通常由涂有矿物纳米颗粒核(TiO 2或ZnO)组成,所述矿物纳米颗粒芯(TiO 2或ZnO)涂有表面层,其旨在优化制剂中的分散体和抑制任何光敏性。该涂层在相关风险中起着关键作用,因为它影响了纳米颗粒表面性质,其控制命运和危险。目前,知识间隙仍然是防晒霜中使用的纳米材料的安全性,因为迄今为止,很少有研究专注于实际防晒过滤器和整个生命周期的配方。这里提出了一种文献回顾,从纳米颗粒UV过滤器和制剂的设计中提出,释放,命运和沿产品生命周期遇到的不同隔室中的效果。由此产生的艺术状态突出了知识差距,可能会帮助监管机构,制造商和消费者选择适当的指导。通过考虑防晒霜的每个开发阶段,从选择UV-Filter(S)及其(他们)融入化妆品制剂,以了解这一选择的风险,沿着产品生态设计,一种生态设计可以在减少释放或毒性的情况下实现方法。因此,在设计过程中,可以通过制作适当的选择(提前),以帮助最小化或防止防晒的环境影响的可持续性。

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