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Inorganic and organic UV filters: Their role and efficacy in sunscreens and suncare product

机译:无机和有机紫外线过滤剂:它们在防晒霜和防晒产品中的作用和功效

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Minerals such as titanium dioxide, TiO2, and zinc oxide, ZnO, are well known active semiconductor photocatalysts used extensively in heterogeneous photocatalysis to destroy environmental pollutants that are organic in nature, They are also extensively used in sunscreen lotions as active broadband sunscreens that screen both UVB (290-320 nm) and UVA (320-400 nm) sunlight radiation and as high SPF makers. When so photoactivated by UV light, however, these two particular metal oxides are known to generate highly oxidizing radicals (-OH and O-2(-.)) and other reactive oxygen species (ROS) such as H2O2 and singlet oxygen, O-1(2), which are known to be cytotoxic and/or genotoxic. Hydroxyl ((OH)-O-.) radicals photogenerated from photoactive TiO2 specimens extracted from commercial sunscreen lotions [R. Dunford, A. Salinaro, L. Cai, N. Serpone, S. Horikoshi, H. Hidaka, J. Knowland, FEBS Lett. 418 (1997) 87] induce damage to DNA plasmids in vitro and to whole human skin cells in cultures. Accordingly, the titanium dioxide particle surface was modified to produce TiO2 specimens of considerably reduced photoactivity. Deactivation of TiO2 diminishes considerably, in some cases completely suppresses damage caused to DNA plasmids, to human cells, and to yeast cells compared to non-modified specimens exposed to UVB/ UVA simulated solar radiation. The photostabilities of sunscreen organic active agents in neat polar and apolar solvents and in actual commercial formulations have been examined [N. Serpone, A. Salinaro, A.V. Emeline, S. Horikoshi, H. Hidaka, J. Zhao, Photochem. Photobiol. Sci. 1 (2002) 9701. With rare exceptions, the active ingredients undergo photochemical changes (in some cases form free radicals) and the sunscreen lotions lose considerable Sun protection efficacy only after a relatively short time when exposed to simulated sunlight UVB/UVA radiation, confirming the recent findings by Sayre et al. [R.M. Sayre, J.C. Dowdy, A.J. Gerwig, W.J. Shields, RN. Lloyd, Photochem. Photobiol. 81 (2005) 4521. (c) 2006 Elsevier B.V. All rights reserved.
机译:矿物质(如二氧化钛,TiO2和氧化锌,ZnO)是众所周知的活性半导体光催化剂,广泛用于非均相光催化以破坏自然界的有机污染物,它们也广泛用于防晒霜中,作为可同时屏蔽两种污染物的活性宽带防晒霜UVB(290-320 nm)和UVA(320-400 nm)阳光辐射以及作为高SPF生产商。但是,当被紫外线如此光活化时,已知这两种特定的金属氧化物会产生高度氧化的自由基(-OH和O-2(-。))以及其他活性氧物质(ROS),例如H2O2和单重态氧O- 1(2),已知具有细胞毒性和/或基因毒性。从商业防晒乳液中提取的光敏性TiO2标本中光生的羟基((OH)-O-。)自由基[R. Dunford,A.Salinaro,L.Cai,N.Serpone,S.Horikoshi,H.Hidaka,J.Knowland,FEBS Lett。 [J.Biol.Acad.Sci。418(1997)87]诱导体外DNA质粒和培养物中全人类皮肤细胞的损伤。因此,对二氧化钛颗粒的表面进行了改性,以生产光活性大大降低的TiO2标本。与未经修饰的暴露于UVB / UVA模拟太阳辐射的标本相比,TiO2的失活大大减少,在某些情况下,它们完全抑制了对DNA质粒,对人体细胞和酵母细胞的破坏。已经检验了防晒有机活性剂在纯极性和非极性溶剂以及实际商业制剂中的光稳定性[N. Serpone,A. Salinaro,A.V. Emeline,S。Horikoshi,H。Hidaka,J。Zhao,Photochem。感光油。科学1(2002)9701.除极少数例外,活性成分会发生光化学变化(在某些情况下会形成自由基),并且防晒霜只有在暴露于模拟阳光UVB / UVA辐射后相对较短的时间后才会失去相当大的防晒功效,这证实了Sayre等人的最新发现。 [R M。塞尔(Sayre),J.C。Dowdy(A.J.) Gerwig,W.J。Shields,RN。劳埃德,光化学。感光油。 81(2005)4521.(c)2006 Elsevier B.V.保留所有权利。

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