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Dermal exposure to chemicals - evaluation of skin barrier damage

机译:皮肤接触化学物质-评估皮肤屏障的损害

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Dermal exposure to chemicals - evaluation of skin barrier damageDermal exposure to xenobiotic compounds occurs on a daily basis in many humans, in intended as well as unintended ways. Serious skin problems are caused by household chemical products, mainly by strong anionic surfactants. The purpose of this study was to assess the suitability of two in vitro methods for evaluation of sodium lauryl sulphate (SLS) potential on skin barrier damage. Transdermal electrical conductivity (TEC) according to our design, and the method of in vitro skin permeability of indigotine as a chemical skin integrity marker were used. The TEC values across the skin membrane damaged with 5, 10 and 15 % aqueous SLS solutions for 1 h were 3.92, 5.79, and 7.29-fold higher respectively than the data of TEC across the intact skin membrane. The amounts of indigotine after 20 h permeation through the skin membrane damaged with 5, 10 and 15 % SLS were 2.48, 4.04, and 5.81-fold higher respectively than the measured amount of indigotine permeated through the intact skin. We consider that the measurement of TEC, especially, in combination with a suitable chemical marker can be simple, quick, safe and cost effective in vitro method for prediction the skin barrier damage not only by surfactants, but also for hazard and risk evaluation of other chemical compounds the human skin is exposed to.
机译:皮肤对化学品的暴露-评估皮肤屏障的损害许多人每天都以有意和无意的方式对异生物素化合物进行皮肤暴露。严重的皮肤问题是由家用化学产品(主要是强阴离子表面活性剂)引起的。本研究的目的是评估两种体外方法对十二烷基硫酸钠(SLS)对皮肤屏障损伤的潜在影响。根据我们的设计,使用了透皮电导率(TEC),并使用了靛蓝的体外皮肤渗透性方法作为化学皮肤完整性标记。用5%,10%和15%的SLS水溶液破坏1小时后,整个皮肤膜的TEC值分别比完整皮肤膜的TEC值高3.92倍,5.79和7.29倍。通过5%,10%和15%SLS损伤的皮肤膜渗透20小时后,靛蓝的量分别比通过完整皮肤渗透的实测靛蓝的量分别高2.48、4.04和5.81倍。我们认为,尤其是与合适的化学标记物结合使用时,TEC的测量可以是简单,快速,安全且经济高效的体外方法,不仅可以预测表面活性剂对皮肤屏障的损害,还可以预测其他物质的危害和风险。人体皮肤所接触的化学物质。

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