SPF – super problematična formula? Aktivni sastojci krema za sunčanje u vodenom okolišu

Pub Date : 2023-03-18 DOI:10.15255/kui.2022.053
Ivan Blažević, Krešimir Kos, M. Kovačević, Tibor Marković, Lucia Sović, Martina Miloloža
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Abstract

Increased awareness of the negative effects of sun radiation exposure has resulted in the increased production and use of sunscreens. This in turn has resulted in the accumulation of UV filters, sunscreen active ingredients, in the aquatic environment. Studies have shown that UV filters, espe - cially those organic, such as oxybenzone, octinoxate, and 4-MBC, pose a danger to a wide range of organisms. Research findings discussed in this paper refer to the toxic effect of the stated chem - icals on marine and freshwater organisms, and they indicate that the presence of these chemicals in the aquatic environment has resulted in inhibition of growth and photosynthesis, reproductive and developmental disorders, organism bleaching, and even death of test organisms. Inorganic UV filters, which are mostly nanoparticle forms of TiO 2 and ZnO, show lower toxicity or have hardly any effect on test organisms in the conducted ecotoxicological tests. However, in studies in which they have shown low toxicity, this toxicity is not only caused by the presence of nanoparticles, but also by the formation of reactive oxygen species, which in some organisms has caused growth inhibition, bleaching, abnormal embryogenesis, and oxidative stress. Further research is necessary to understand better the toxic effects of these compounds, and to assess more accurately the risks they pose to the aquatic environment as well as the entire ecosystem.
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人们越来越意识到太阳辐射的负面影响,因此防晒霜的生产和使用也在增加。这反过来又导致紫外线过滤器,防晒活性成分,在水生环境中积累。研究表明,紫外线过滤器,特别是那些有机过滤器,如氧苯酮、辛硫磷和4-MBC,对各种生物体构成危险。本文讨论的研究结果提到了上述化学物质对海洋和淡水生物的毒性作用,它们表明,这些化学物质在水生环境中的存在导致了生长和光合作用的抑制、生殖和发育障碍、生物漂白,甚至试验生物的死亡。无机紫外线过滤器,主要是TiO2和ZnO的纳米颗粒形式,在进行的生态毒理学测试中显示出较低的毒性或对测试生物几乎没有任何影响。然而,在显示低毒性的研究中,这种毒性不仅是由纳米颗粒的存在引起的,而且是由活性氧的形成引起的,在一些生物体中,活性氧会导致生长抑制、漂白、异常胚胎发生和氧化应激。有必要进行进一步的研究,以更好地了解这些化合物的毒性作用,并更准确地评估它们对水生环境和整个生态系统构成的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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