2012Skin Research and TechnologyRequires access

Acute skin barrier disruption with repeated tape stripping: an in vivo model for damage skin barrier

Yanrui Gao, Xuemin Wang, Shuangyu Chen, Shuyuan Li, Xiaoping Liu

Open publisher page 56 citations

Abstract

PURPOSE: To establish a model of standardized acute barrier disruption, investigate the response of normal human to repeated tape stripping, and analyze the change of damaged skin with non-invasive examination techniques for skin, such as TEWL and squamometry. METHODS: Repeated tape stripping with corneofix was applied on three different anatomical sites; the measurement of TEWL was performed on the baseline and after every 5 strips. Then, the samples of corneofix were analyzed using Visioscan VC98 and squamometry. RESULTS: The parameter of TEWL and cohesion score show stable change trend. TEWL increased with frequency of stripping and were significantly higher compared with that of baseline on three sites. The results of staining of corneofix showed that the intercorneocyte cohesion is increased with the number of strips, and the more the number of strips, the more the fixation of dye per cell. CONCLUSION: The changes in the skin barrier function of different sites were different after it accepted physical stimulation, the process of damaging skin barrier could be divided into three stages based on the △TEWL. In addition, through stripping the skin of an adult, the in vivo model of damaged skin barrier could be setup.

About this research paper

What this paper is about

PURPOSE: To establish a model of standardized acute barrier disruption, investigate the response of normal human to repeated tape stripping, and analyze the change of damaged skin with non-invasive examination techniques for skin, such as TEWL and squamometry. METHODS: Repeated tape stripping with corneofix was applied on three different anatomical sites; the measurement of TEWL was performed on the baseline and after every 5 strips. Then, the samples of corneofix were analyzed using Visioscan VC98 and squamometry. RESULTS: The parameter of TEWL and cohesion score show stable change trend. TEWL increased with frequency of stripping and were significantly higher compared with that of baseline on three sites. The results of staining of corneofix showed that the intercorneocyte cohesion is increased with the number of strips, and the more the number of strips, the more the fixation of dye per cell. CONCLUSION: The changes in the skin barrier function of different sites were different after it accepted physical stimulation, the process of damaging skin barrier could be divided into three stages based on the △TEWL. In addition, through stripping the skin of an adult, the in vivo model of damaged skin barrier could be setup.

Why it matters

OpenAlex reports 56 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

PURPOSE: To establish a model of standardized acute barrier disruption, investigate the response of normal human to repeated tape stripping, and analyze the change of damaged skin with non-invasive examination techniques for skin, such as TEWL and squamometry. METHODS: Repeated tape stripping with corneofix was applied on three different anatomical sites; the measurement of TEWL was performed on the baseline and after every 5 strips. Then, the samples of corneofix were analyzed using Visioscan VC98 and squamometry. RESULTS: The parameter of TEWL and cohesion score show stable change trend. TEWL increased with frequency of stripping and were significantly higher compared with that of baseline on three sites. The results of staining of corneofix showed that the intercorneocyte cohesion is increased with the number of strips, and the more the number of strips, the more the fixation of dye per cell. CONCLUSION: The changes in the skin barrier function of different sites were different after it accepted physical stimulation, the process of damaging skin barrier could be divided into three stages based on the △TEWL. In addition, through stripping the skin of an adult, the in vivo model of damaged skin barrier could be setup.

Key concepts: Transepidermal water loss, Skin barrier, Stripping (fiber), In vivo, Barrier function, Skin temperature, Chemistry, Biomedical engineering

Related papers

Back to paper searchBrowse research topicsOriginal source
Acute skin barrier disruption with repeated tape stripping: an in vivo model for damage skin barrier — Research Paper | ScholarLens