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来自表皮替代物的白细胞介素-1α和白细胞介素-1受体拮抗剂的分泌以及温和肥皂和基于表面活性剂的消费品刺激潜力的预测。

IL-1alpha and IL-1ra secretion from epidermal equivalents and the prediction of the irritation potential of mild soap and surfactant-based consumer products.

作者信息

Bernhofer L P, Barkovic S, Appa Y, Martin K M

机构信息

Skin Research Center, Johnson & Johnson Consumer Products Worldwide, 199 Grandview Road, Skillman, NJ 08558, USA.

出版信息

Toxicol In Vitro. 1999 Apr;13(2):231-9. doi: 10.1016/s0887-2333(98)00088-5.

Abstract

We have previously evaluated the measurement of viability and cytokine release from skin equivalents, for predicting the skin irritation potential of topically applied surfactants and demonstrated that IL-1alpha and interleukin-1 receptor antagonist (IL-1ra) release from epidermal skin equivalents correlates with skin irritation potential. In this study, the utility of the model was confirmed by the evaluation of cleansing bars and cleansing lotions that exhibited varying degrees of irritation potential as determined by exaggerated arm wash human clinical studies. Epidermal equivalents were exposed to increasing concentrations of the cleansing bars and cleansing liquids and viability and release of IL-1alpha and IL-1ra were measured. Loss of viability was used to identify the stronger irritants of the products tested. A linear correlation was demonstrated between IL-1alpha and IL-1ra secretion and human irritation data, demonstrating that the model can correctly predict the irritation potential of soap and surfactant products. These results show that this in vitro model is useful for rank ordering the irritation potential of mild consumer products and for demonstrating enhanced mildness in products with minor differences.

摘要

我们之前评估了从皮肤替代物中测量活力和细胞因子释放,以预测局部应用表面活性剂的皮肤刺激潜力,并证明从表皮皮肤替代物中释放的白细胞介素-1α(IL-1α)和白细胞介素-1受体拮抗剂(IL-1ra)与皮肤刺激潜力相关。在本研究中,通过评估清洁皂和清洁乳液证实了该模型的实用性,这些清洁皂和清洁乳液在夸张的手臂清洗人体临床研究中显示出不同程度的刺激潜力。将表皮替代物暴露于浓度不断增加的清洁皂和清洁液中,并测量活力以及IL-1α和IL-1ra的释放。活力丧失用于识别所测试产品中更强的刺激物。IL-1α和IL-1ra分泌与人体刺激数据之间呈现线性相关性,表明该模型可以正确预测肥皂和表面活性剂产品的刺激潜力。这些结果表明,这种体外模型可用于对温和消费品的刺激潜力进行排序,并用于证明在差异较小的产品中增强的温和性。

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