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Atomic force microscopy characterization of corneocytes: effect of moisturizer on their topology, rigidity, and friction.

机译:角质细胞的原子力显微镜表征:保湿剂对其拓扑结构,刚度和摩擦的影响。

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摘要

BACKGROUND/PURPOSE: Atomic force microscopy (AFM) is a novel technique for skin characterization. OBJECTIVES: To develop AFM tests for characterization of the outermost epidermis layer, corneocytes. As an example, the effect of moisturizer on the corneocyte properties is studied. METHODS AND MATERIALS: Topology, rigidity, and friction (between individual corneocytes and AFM probe) of the top layer of corneocytes were measured by means of Veeco DM3100 AFM. Quench moisturizing cream was applied daily on the forearm of five volunteers for a period of 9 days. The skin flakes were collected before and after the treatment using Cuderm tape strips. No additional treatment of flakes was performed before the measurements. RESULTS: A protocol for the AFM study of corneocytes is developed. After the treatment, we observed overall smoothening of the corneocyte surface, an increase of friction, and a decrease of rigidity (the Young modulus). CONCLUSION: AFM can be used as a very sensitive tool for early detection of changes in corneocytes.
机译:背景/目的:原子力显微镜(AFM)是一种用于皮肤表征的新技术。目的:开发用于表征最表皮层,角质细胞的原子力显微镜测试。例如,研究了保湿剂对角质细胞特性的影响。方法和材料:通过Veeco DM3100 AFM测量角质层顶层的拓扑,刚度和摩擦力(单个角质层细胞与AFM探针之间)。每天在五名志愿者的前臂上涂上淬灭保湿霜,持续9天。在处理之前和之后使用Cuderm胶带剥离收集皮肤薄片。在测量之前,没有对薄片进行额外的处理。结果:制定了一项协议的角质细胞的AFM研究。处理后,我们观察到了角质细胞表面的整体光滑,摩擦的增加以及刚度(杨氏模量)的降低。结论:原子力显微镜可以作为非常敏感的工具,用于早期检测角质细胞的变化。

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