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Mechanism and determinants of nanoparticle penetration through human skin

机译:机制和纳米颗粒的决定因素通过皮肤渗透

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The ability of nanoparticles to penetrate the stratum corneum was the focus of several studies. Yet, there are controversial issues available for particle penetration due to different experimental setups. Meanwhile, there is little known about the mechanism and determinants of their penetration. in this paper the penetration of four model gold nanoparticles of diameter 6 and 15 nm, differing in surface polarity and the nature of the vehicle, through human skin was studied using multiphoton microscopy. This is in an attempt to profoundly investigate the parameters governing particle penetration through human skin. Our results imply that nanoparticles at this size range permeate the stratum corneum in a similar manner to drug molecules, mainly through the intercellular pathways. However, due to their particulate nature, permeation is also dependent on the complex microstructure of the stratum corneum with its tortuous aqueous and lipidic channels, as shown from our experiments performed using skin of different grades of barrier integrity. The vehicle (toluene-versus-water) had a minimal effect on skin penetration of gold nanoparticles. Other considerations in setting up a penetration experiment for nanoparticles were also studied. The results obtained are important for designing a new transdermal carrier and for a basic understanding of skin-nanoparticle interaction.
机译:纳米粒子穿透的能力角质层是几项研究的重点。然而,对有争议的问题由于不同粒子渗透实验设置。知道的机制和决定因素他们的渗透。四个模型的金纳米粒子的直径6和15 nm,表面极性和不同车辆的性质,通过人体皮肤研究了利用多光子显微镜。深刻研究的一次尝试参数调节粒子穿透人类的皮肤。在这个尺寸范围渗透到角质层以类似的方式对药物分子,主要是通过细胞间的通路。颗粒性质、渗透也依赖于复杂的微观结构角质层以其曲折的水从我们的实验油脂的通道,如图所示使用不同等级的皮肤表现屏障的完整性。(toluene-versus-water)最小的影响金纳米粒子的皮肤渗透。考虑建立一个渗透纳米颗粒的实验也进行了研究。获得的结果对设计很重要一个新皮肤和一个基本的载体理解skin-nanoparticle交互。

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