Penetration of Titanium Dioxide Nanoparticles through Slightly Damaged Skin in Vitro and in vivo

Guangping Xie, Weixin Lu, Dongmin Lu
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引用次数: 21

Abstract

Purpose Titanium dioxide nanoparticles (TiO2-NPs) have been widely developed for versatile use, but the potential risk form their skin exposure is still unclear. To evaluate this risk, the skin penetration of TiO2-NPs is necessary to be understood first. The aims of this study are to investigated the penetration of TiO2-NPs through slightly damaged skin and intact skin in vitro and in vivo. Methods TiO2-NPs with a diameter of 20 nm was labeled with 125I. The skin of rat was treated with 2% SLS solution and obtained as slightly damaged skin. The 125I labeled TiO2-NPs (125I-TiO2-NPs)solution and 0.9% PS solution were added into the donor chamber and receptor chamber of static diffusion cells which clamped the skin at the middle of two half-cells, respectively. During 24 hours, samples were extracted from the receptor chamber and counted for 1 min using γ-counter to detect the radioactivity. The skin penetration of TiO2-NPs in vitro was expressed as the percentage of radioactivity of receptor chamber solution compared with total radioactivity in the donor chamber. Thereafter, the 125I-TiO2-NPs was exposed to the rats. After 1 day and 3 days, the blood and tissues of rats were harvested, weighed and counted for 1 min using γ-counter to detect the tissue radioactivity. The skin penetration of TiO2-NPs in vivo was expressed as the percentage dose per gram tissue (% dose/g). Results In the skin penetration experiment in vitro, the radioactivity of receptor chamber solution through damaged skin was higher than that of through intact skin and was about 2% radioactivity of donor chamber on 24 h. In the skin penetration experiment in vivo, the radioactivity of blood and tissues of rats after exposing to 125I-TiO2-NPs solution though damaged skin or intact skin were less than 0.05% dose/g on 1 d and quickly declined on 3 d. The skin penetration rates of TiO2-NPs through slightly damaged skin and intact skin in vitro and vivo were lower than the rate of free 125I in the TiO2-NPs solution. Conclusions The TiO2-NPs could not penetrate through the damaged skin or intact skin both in vitro and in vivo. It suggested that the TiO2-NPs should be safe when it was applied and contacted with skin.
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二氧化钛纳米颗粒在体外和体内穿透轻微损伤皮肤的实验研究
二氧化钛纳米颗粒(TiO2-NPs)已被广泛开发用于多种用途,但其皮肤暴露的潜在风险尚不清楚。为了评估这种风险,有必要首先了解TiO2-NPs的皮肤渗透。本研究的目的是在体外和体内研究TiO2-NPs在轻度损伤皮肤和完整皮肤中的渗透情况。方法用125I标记直径为20 nm的TiO2-NPs。用2% SLS溶液处理大鼠皮肤,得到轻度损伤皮肤。将125I标记的TiO2-NPs (125I-TiO2-NPs)溶液和0.9% PS溶液分别加入到静态扩散细胞的供体室和受体室中,分别夹紧两个半细胞的中间皮肤。在24小时内,从受体腔中提取样品,用γ计数器计数1分钟,以检测放射性。体外TiO2-NPs的皮肤穿透度表示为受体腔溶液放射性与供体腔总放射性的百分比。然后,将125I-TiO2-NPs暴露于大鼠。分别于第1天和第3天采集大鼠血液和组织,用γ-计数器称重计数1 min,检测组织放射性。体内TiO2-NPs的皮肤渗透用每克组织的百分比剂量表示(%剂量/g)。结果在离体皮肤穿透实验中,受体室溶液穿透破损皮肤的放射性高于穿透完整皮肤的放射性,24 h时受体室溶液的放射性约为供体室的2%。经损伤皮肤或完整皮肤暴露于125I-TiO2-NPs溶液后,大鼠血液和组织的放射性在第1天低于0.05%剂量/g,在第3天迅速下降。体外和体内经轻度损伤皮肤和完整皮肤的TiO2-NPs的皮肤透入率低于TiO2-NPs溶液中游离125I的率。结论在体外和体内实验中,TiO2-NPs均不能穿透损伤皮肤或完整皮肤。这表明TiO2-NPs在应用和与皮肤接触时是安全的。
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来源期刊
Journal of Applied Biomaterials & Biomechanics
Journal of Applied Biomaterials & Biomechanics 生物-材料科学:生物材料
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