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Biocompatible Organosilica Nanoparticles with Self-Encapsulated Phenyl Motifs for Effective UV Protection

机译:具有自封装苯基基序的生物相容性有机胺纳米颗粒,用于有效紫外线保护

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摘要

With increasing ozone depletion, ultraviolet (UV) exposure from sunlight has become a significant health risk. Although commercially available sun protectants provide reasonable protection, they have limitations in terms of safety and aesthetics. Here, we have developed biocompatible and biodegradable sunscreens by facile synthesis of organosilica nanoparticles (o-SNPs) with self-encapsulated phenyl motifs using phenylsilane precursors. The physical structure of o-SNPs is elaborately controlled such that they are large enough to reflect UVA but small enough to be imperceptible when applied on the skin. The chemically attached phenyl motifs to o-SNPs facilitate filtering UVB via their delocalized pi-orbitals. The o-SNPs generate a negligible amount of reactive oxygen species under UV exposure. Ex vivo two-photon microscopy reveals that the o-SNPs tend to adhere to the outer layers of skin without further intradermal penetration, resulting in less skin irritation. In vivo UV protection tests confirmed the excellent sunscreen effect of o-SNPs compared with conventional organic and inorganic UV filters.
机译:随着臭氧耗竭的增加,紫外线(UV)从阳光下暴露已成为重大健康风险。虽然商业上可用的防晒保护剂提供合理的保护,但它们在安全性和美学方面具有局限性。在这里,我们通过使用苯基硅烷前体与自封装的苯基基序,通过容易合成了生物相容和可生物降解的防晒剂。精心控制O-SNP的物理结构,使得它们足够大以反射UVA,但在涂在皮肤上时足够难以察觉。将化学附着于O-SNP的苯基基序通过其分层的PI-轨道促进UVB。 O-SNP在紫外线暴露下产生可忽略量的反应性氧物质。 exVivo双光子显微镜显示,O-SNP倾向于粘附到外层皮肤层,而无需进一步皮内穿透,导致皮肤刺激性较少。在体内UV保护试验中,与常规有机和无机UV过滤器相比,O-SNP的优异防晒效果。

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