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Effects of physical and chemical treatments upon biophysical properties and micro-relief of human skin.

机译:理化处理对人体皮肤生物物理特性和微起伏的影响。

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The aim of the present study was to determine the attendant effects of physical (tape-stripping) and chemical (three commercial hydrating formulations) treatments upon biophysical and micro-relief properties of human skin. In the first set of experiment, the effects of tape-stripping onto human stratum corneum (SC) biophysical and micro-relief properties were assessed in nine volunteers. Transepidermal water loss (TEWL), skin hydration and micro-relief parameters (including total length of the lines in mm per mm(2); total surface in %; roughness of the skin measured in gray level (Ra); maximum profile valley (Rv) depth; maximum profile peak height (Rp); maximum height (Rt), peak density (Pc) and coefficient of anisotropy) were determined by using SkinEvidence((R)) Pro after subsequent tape-stripping of SC. The relevance of roughness determination as gray level by SkinEvidence((R)) Pro was confirmed by using surface roughness standards. In the second set of experiment, the effectiveness of three commercial hydrating formulations onto human SC biophysical parameters and micro-relief properties were assessed in six volunteers. TEWL, hydration and micro-relief parameters were assessed onto pre-treated acetone skin and then treated by three commercial hydrating formulations after 2, 4 and 6 h skin exposure. A linear relation between hydration and cutaneous parameters (total length of the lines, Ra and Rp) as function of SC removed was shown. Skin barrier properties evaluated by TEWL measurements, were not modified by topical formulations. However, skin treated by topical formulations showed slightly higher hydration than the one determined in control group, while micro-relief parameters were not modified. In this study was showed that biophysical and micro-relief parameters were closely related in tape-stripping experiment. Efficiency of topical formulations was suggested upon skin hydration but not onto skin micro-relief and barrier function recovering. From both experiments, it appears that different mechanisms relating to skin hydration and potential modification of cutaneous micro-relief were suggested.
机译:本研究的目的是确定物理(胶带剥离)和化学(三种商业保湿配方)治疗对人体皮肤生物物理和微浮雕特性的伴随影响。在第一组实验中,在9名志愿者中评估了胶带剥离对人角质层(SC)生物物理和微浮雕特性的影响。透皮失水(TEWL),皮肤水合作用和微浮雕参数(包括线的总长度,单位为mm / mm(2);总表面,单位为%;以粗糙度(Ra)衡量的皮肤粗糙度;最大轮廓谷Rv)深度;最大轮廓峰高(Rp);最大高度(Rt),峰密度(Pc)和各向异性系数)是在随后的SC胶带剥离后使用SkinEvidence®Pro确定的。通过使用表面粗糙度标准,确认了通过SkinEvidence Pro来确定粗糙度为灰度级的相关性。在第二组实验中,在六名志愿者中评估了三种商业保湿配方对人SC生物物理参数和微浮雕特性的有效性。将TEWL,水合和微浮雕参数评估到预处理过的丙酮皮肤上,然后在暴露2、4和6小时后用三种市售水合制剂进行处理。显示了水合作用和皮肤参数(线的总长度,Ra和Rp)之间的线性关系,即所去除的SC的函数。通过TEWL测量评估的皮肤屏障特性未通过局部制剂改变。然而,经局部制剂治疗的皮肤的水合作用比对照组中测定的皮肤略高,而微浮雕参数未改变。这项研究表明,胶带剥离实验中的生物物理参数和微浮雕参数密切相关。建议在皮肤水合作用时有效局部用药,但不能缓解皮肤微浮雕和恢复屏障功能。从两个实验中,似乎提出了与皮肤水合作用和皮肤微浮雕的潜在修饰有关的不同机制。

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