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A Versatile Sunscreen with Minimal ROS Damage and Low Permeability

机译:具有最小的ROS损坏和低渗透性的多功能防晒霜

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摘要

Organic and inorganic ultraviolet (UV) filters possess themselves advantages, while they suffer from different limitations including photostability, penetration, and cytotoxicity. Integrating organic and inorganic UV filters in a single unit holds great potential for enhanced UV protection. Herein, the dendritic silicon dioxide microspheres (DSMs) are encapsulated with Bi2Ti2O7 nanocomposites (BTO-DSMs), an inorganic filter, and decorated with organic filters including sinapoyl malate (SM) and baicalin (BS/BTO-DSM) to enhance UV protection while significantly reducing ROS and skin permeability under UV exposure. The inorganic BTO-DSM component presents an expanded UV shield range and suppressed photocatalytic properties while preventing the organic filter SM direct contact with the epidermis and penetration behaviors. The baicalin efficiently scavenges the generated ROS from SM and reduces the transmittance of blue light. Notably, the results show that the proposed combined system significantly broadens the UV absorption region. Thus, the BS/BTO-DSM presents advanced in vitro anti-UV performance and in vivo UV protection against keratinocyte apoptosis and epidermal hyperplasia without long-term toxicity. The excellent anti-UV properties coupling with the suppressed photocatalytic capability and minimal epidermal penetration of BS/BTO-DSM make it promising for skin protection.
机译:有机和无机紫外线(UV)过滤器具有自己的优点,而它们患有不同的限制,包括光稳定性,渗透和细胞毒性。整合有机和无机UV滤波器在单个单元中为增强的UV保护具有很大的潜力。这里,用Bi2Ti2O7纳米复合材料(BTO-DSMS),无机过滤器包封树枝状二氧化硅微球(DSM),并用包括SINAPOODL苹果酸盐(SM)和BACICALIN(BS / BTO-DSM)的有机过滤器装饰,以提高UV保护显着降低紫外线暴露下的ROS和皮肤渗透率。无机BTO-DSM组分呈现出扩展的UV屏蔽范围和抑制光催化性质,同时防止有机过滤器SM直接接触表皮和穿透行为。 Baicalin有效地清除了来自SM的产生的ROS,并减少了蓝光的透射率。值得注意的是,结果表明,所提出的组合系统显着拓宽了紫外线吸收区域。因此,BS / BTO-DSM在体外抗紫外线性能和体内UV保护中呈现出高级紫外线,对角蛋白细胞凋亡和表皮增生而没有长期毒性。优异的抗UV性能与BS / BTO-DSM的抑制光催化能力和最小表皮渗透性的耦合使其具有对皮肤保护的承诺。

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