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一种通过热重分析体外评估挥发性化学物质皮肤吸收的新技术。

A new technique to assess dermal absorption of volatile chemicals in vitro by thermal gravimetric analysis.

作者信息

Rauma Matias, Isaksson Tina S, Johanson Gunnar

机构信息

Department of Work Environment Toxicology, Institute of Environmental Medicine, Karolinska Institutet, Box 210, S-171 77 Stockholm, Sweden.

出版信息

Toxicol In Vitro. 2006 Oct;20(7):1183-9. doi: 10.1016/j.tiv.2006.03.004. Epub 2006 Mar 13.

Abstract

Potential health hazards of dermal exposure, variability in reported dermal absorption rates and potential losses from the skin by evaporation indicate a need for a simple, inexpensive and standardized procedure to measure dermal absorption and desorption of chemical substances. The aim of this study was to explore the possibility to measure dermal absorption and desorption of volatile chemicals using a new gravimetric technique, namely thermal gravimetric analysis (TGA), and trypsinated stratum corneum from pig. Changes in skin weight were readily detected before, during and after exposure to vapours of water, 2-propanol, methanol and toluene. The shape and height of the weight curves differed between the four chemicals, reflecting differences in diffusivity and partial pressure and skin:air partitioning, respectively. As the skin weight is highly sensitive to the partial pressure of volatile chemicals, including water, this technique requires carefully controlled conditions with respect to air flow, temperature, chemical vapour generation and humidity. This new technique may help in the assessment of dermal uptake of volatile chemicals. Only a small piece of skin is needed and skin integrity is not necessary, facilitating the use of human samples. The high resolution weight-time curves obtained may also help to elucidate the characteristics of absorption, desorption and diffusion of chemicals in skin.

摘要

皮肤接触可能带来的健康危害、报告的皮肤吸收率的变异性以及皮肤因蒸发可能造成的损失表明,需要一种简单、廉价且标准化的程序来测量化学物质的皮肤吸收和解吸。本研究的目的是探索使用一种新的重量分析技术,即热重分析(TGA),以及猪的胰蛋白酶处理过的角质层来测量挥发性化学物质的皮肤吸收和解吸的可能性。在暴露于水、2-丙醇、甲醇和甲苯的蒸汽之前、期间和之后,很容易检测到皮肤重量的变化。四种化学物质的重量曲线形状和高度不同,分别反映了扩散率、分压以及皮肤与空气分配的差异。由于皮肤重量对包括水在内的挥发性化学物质的分压高度敏感,该技术需要在气流、温度、化学蒸汽产生和湿度方面进行严格控制。这种新技术可能有助于评估挥发性化学物质的皮肤吸收情况。只需要一小片皮肤,且不需要皮肤完整,这便于使用人体样本。获得的高分辨率重量-时间曲线也可能有助于阐明化学物质在皮肤中的吸收、解吸和扩散特性。

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