二氧化钛
光催化
光降解
聚合
生物相容性
角质层
黑色素
化学工程
纳米颗粒
光防护
化学
材料科学
紫外线
纳米技术
光化学
聚合物
有机化学
生物化学
复合材料
光电子学
催化作用
病理
工程类
光合作用
医学
作者
Saiyao Li,Yang Wang,Ting Li,Piming Ma,Xuhui Zhang,Bihua Xia,Mingqing Chen,Mingliang Du,Weifu Dong
标识
DOI:10.1007/s00396-021-04905-7
摘要
Organic filters in traditional sunscreens usually are limited photodegradation and easily penetrate the stratum corneum and epidermal layer, leading to potential harmful effects. Melanin is a natural ubiquitous pigment that protects living organisms from intense sunlight. Inspired by the structure and function of the mussel adhesive protein, a facile strategy involving oxidative polymerization of dopamine was proposed for surface modification of titanium dioxide (TiO2) to obtain melanin/TiO2 nanoparticles. The thickness of melanin layers was varied from 1 to 7 nm by changing pH and dopamine concentration. The melanin/TiO2 nanoparticles with 1-nm-thick melanin layers showed highly efficient UV-shielding ability due to synergistic effect of melanin and TiO2. The melanin/TiO2 nanoparticles were introduced as the sole active ingredient to formulating sunscreen; sun protection factor (SPF) could reach 116.9 and 162.4 with a loading of 10 wt% and 15 wt%, respectively. Most importantly, melanin exhibits a good bioadhesion property and can effectively prevent the penetration of melanin/TiO2 nanoparticles. Thus, the as-prepared nanoparticles possess excellent UV-shielding capacity and biocompatibility, ensuring their superior performance and safe use in the sunscreen. Inspired by the structure and function of the mussel adhesive protein, a facile strategy involving oxidative polymerization of dopamine was proposed for surface modification of titanium dioxide (TiO2) to obtain melanin/TiO2 nanoparticles. The melanin/TiO2 nanoparticles with 1-nm-thick melanin layers showed highly efficient UV-shielding ability due to synergistic effect of melanin and TiO2. Most importantly, melanin exhibits a good bioadhesion property and can effectively prevent the penetration of melanin/TiO2 nanoparticles. Thus, the as-prepared nanoparticles possess excellent UV-shielding capacity and biocompatibility, ensuring their superior performance and safe use in the sunscreen.
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