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Investigation of micronized titanium dioxide penetration in human skin xenografts and its effect on cellular functions of human skin-derived cells.

机译:研究微粉化二氧化钛在人皮肤异种移植物中的渗透及其对人皮肤衍生细胞的细胞功能的影响。

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摘要

Titanium dioxide (TiO2) nanoparticles are ubiquitously used materials in everyday life (e.g. paints,household products and plastic goods). However, despite the wide array of common applications, their pathogenetic role was also suggested under certain conditions (e.g. pulmonary neoplasias and lung fibrosis). From a dermatological point of view, it is also of great importance that TiO2 also serves as a physical photoprotective agent in sunscreens and is widely used in various cosmetic products. However, the effect of TiO2 on human cutaneous functions is still unknown. Therefore, in the current study, we investigated the in vivo penetration of TiO2 via human skin transplanted to immunodeficient mice and,furthermore, we measured the in vitro effects of nanoparticles on various functional properties of numerous epidermal and dermal cells in culture. Hereby, using various nuclear microscopy methods, we provide the first evidence that TiO2nanoparticles in vivo do not penetrate through the intact epidermal barrier. However, we also report that TiO2, when exposed directly to cell cultures in vitro, exerts significant and cell-type dependent effects on such cellular functions as viability, proliferation, apoptosis and differentiation. Therefore, our novel findings will hopefully inspire one to systemically explore in future, clinically oriented trials whether there is indeed a risk from micronized TiO2-containing products on skin with an impaired stratum corneum barrier function.
机译:二氧化钛(TiO2)纳米粒子是日常生活中普遍使用的材料(例如油漆,家用产品和塑料制品)。然而,尽管有广泛的通用应用,但在某些条件下(例如,肺肿瘤和肺纤维化)也暗示了它们的致病作用。从皮肤病学的观点来看,TiO 2还用作防晒剂中的物理光保护剂并广泛用于各种化妆品中也很重要。然而,TiO 2对人类皮肤功能的影响仍然未知。因此,在当前的研究中,我们研究了通过人类皮肤移植到免疫缺陷小鼠体内TiO2的体内渗透性,此外,我们测量了纳米颗粒对培养中许多表皮和真皮细胞各种功能特性的体外影响。因此,使用各种核显微镜方法,我们提供了第一个证据,即体内TiO2纳米颗粒不会穿透完整的表皮屏障。但是,我们还报告说,TiO2当直接暴露于体外细胞培养物中时,会对诸如活力,增殖,凋亡和分化等细胞功能发挥显着且细胞类型依赖性的作用。因此,我们的新发现有望在未来的临床试验中激发人们系统地探索,是否确实存在角质层屏障功能受损的皮肤上含有TiO2的微粒化产品的风险。

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