新型低粘度氧化锌,氧化铁和Erioglaucine防晒霜的潜在保护紫外线,可见光和近红外辐射

Yohei Tanaka, Richard Parker, Amaryllis Aganahi, Ailen Pedroso
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引用次数: 0

摘要

尽管防晒霜和紫外线阻挡材料被广泛推荐和使用,但太阳引起的皮肤损伤和光老化继续对全世界的人类健康构成问题。我们之前曾报道过,太阳可见光和近红外线也会导致皮肤损伤和光老化。大多数推荐的防晒霜只对整个紫外线光谱有效,对可见光和近红外线没有保护作用。一种可能的解决方案是在防晒霜中加入金属氧化物,以阻挡可见光和近红外辐射。为了评价含氧化锌和氧化铁的新型低粘度遮光剂增强的太阳光谱阻挡能力,采用双光束分光光度计对其透射光谱进行了光学测量。分光光度计采用独特的单色设计,可检测240至2600 nm范围内的波长穿透。不含氧化锌和氧化铁(对照)的防晒霜基片阻挡了80%以上的紫外线c和紫外线b,但不能阻挡紫外线a、可见光或近红外线。新型的低粘度氧化锌样品能阻挡90%以上的紫外线,但不能充分阻挡可见光和近红外。然而,含有新型低粘度氧化锌、氧化铁和erioglaucine的样品几乎阻挡了90%以上的紫外线、可见光和近红外线。可以得出结论,这种低粘度氧化锌、氧化铁和erioglaucine的新型组合在阻挡紫外线、可见光和近红外辐射方面是有效的。本研究结果表明,应采用从紫外线到近红外提供全面光防护的防晒霜来防止皮肤光损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel Low Viscosity Zinc Oxide, Iron Oxides and Erioglaucine Sunscreen Potential to Protect from Ultraviolet, Visible Light and Near-Infrared Radiation
Despite the widespread recommendation and use of sunscreens and ultraviolet blocking materials, solar-induced skin damage and photoageing continues to pose a problem to human health worldwide. We have previously reported that solar visible light and near-infrared also contribute to skin damage and photo ageing. Most commonly recommended sunscreens are only effective throughout the UV spectrum, offering no protection from visible light and near-infrared. A possible solution could be to augment sunscreens with metal oxides which block visible light and near-infrared radiation. To evaluate the enhanced solar-spectrum blocking ability of novel low viscosity sunscreen containing zinc and iron oxides, a double-beam spectrophotometer was used to optically measure the transmission spectra. The spectrophotometer deploys a unique, single monochromatic design to detect wavelength penetration in the range of 240 to 2600 nm. The Sunscreen base without zinc oxide and iron oxides (control) blocked over 80% of ultraviolet-C and ultraviolet-B but did not block ultraviolet-A, visible light, or near-infrared. The novel low viscosity zinc oxide sample blocked almost over 90% ultraviolet, but did not block visible light and near-infrared sufficiently. However, the samples with the novel low viscosity zinc oxide, iron oxides and erioglaucine blocked almost over 90% of ultraviolet, visible light and near-infrared. It can be concluded that this novel combination of low viscosity zinc oxide, iron oxides and erioglaucine is effective at blocking ultraviolet, visible light and near-infrared radiation. The results of this study imply that sunscreens that provide comprehensive photoprotection from ultraviolet through to near-infrared should be adopted to prevent skin photodamage.
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