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Skin surface physico-chemistry: Characteristics, methods of measurement, influencing factors and future developments

机译:皮肤表面物理化学:特征,测量方法,影响因素和未来发展

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摘要

Physico-chemical properties such as surface free energy, polarity or hydrophobicity of solid surfaces have been largely studied in literature because they are involved in many physical phenomena: adhesion, friction, wetting ... Nowadays, the study of biointerfaces is of great interest for the medical, the pharmaceutical or the cosmetic field but also for material design researches, especially for the development of biomimetic surfaces. The present paper focuses on a particular biointerface, namely skin, which is the most extended organ of the human body. The different ways for the study of skin physico-chemistry are first reviewed, followed by their practical uses, from pharmaceutical to cosmetic science. Those properties depict the ways skin interacts with topical products, its lipid composition but also its hydration state. In addition, this article aims to present recent approaches using original model materials in order to mimic human skin; indeed, in vivo experiments are often limited by the inter and intra individual variability, the safety regulation and above all the time and the cost of such studies. Finally, further data clearly highlight the importance of skin surface properties for dermatological and pharmaceutical researches. (C) 2018 Elsevier B.V. All rights reserved.
机译:物理化学性质如表面自由能量,极性或疏水性的固体表面在文献中已经在文献中进行了很大程度上,因为它们涉及许多物理现象:粘附,摩擦,润湿......如今,生物融合的研究对医疗,药物或化妆品,还用于材料设计研究,特别是对于仿生表面的发展。本文侧重于特定的生物接口,即皮肤,这是人体最扩展的器官。首次审查了对皮肤物理化学研究的不同方式,然后从制药到化妆品科学的实际用途。这些性质描绘了皮肤与局部产品相互作用的方式,其脂质组合物还具有其水合状态。此外,本文旨在使用原始模型材料呈现最近的方法,以模仿人体皮肤;实际上,体内实验通常受到间置帧内和内部各种变异性,安全调节和上述所有时间的限制以及这些研究的成本。最后,进一步的数据显然突出了皮肤表面性能对皮肤病学和药物研究的重要性。 (c)2018 Elsevier B.v.保留所有权利。

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