Harding Amy L, Murdoch Craig, Danby Simon, Hasan Md Zobaer, Nakanishi Hirofumi, Furuno Tetsuo, Hadad Sirwan, Turner Robert, Colley Helen E
The School of Clinical Dentistry, The University of Sheffield, Sheffield, United Kingdom.
Sheffield Dermatology Research, Department of Infection, Immunity and Cardiovascular Disease, The Medical School, The University of Sheffield, Sheffield, United Kingdom.
JID Innov. 2021 Mar 15;1(2):100011. doi: 10.1016/j.xjidi.2021.100011. eCollection 2021 Jun.
There are no physical or visual manifestations that define skin sensitivity or irritation; a subjective diagnosis is made on the basis of the evaluation of clinical presentations, including burning, prickling, erythema, and itching. Adverse skin reaction in response to topically applied products is common and can limit the use of dermatological or cosmetic products. The purpose of this study was to evaluate the use of human skin equivalents based on immortalized skin keratinocytes and evaluate the potential of a 22-gene panel in combination with multivariate analysis to discriminate between chemicals known to act as irritants and those that do not. Test compounds were applied topically to full-thickness human skin equivalent or human ex vivo skin and gene signatures determined for known irritants and nonirritants. Principle component analysis showed the discriminatory potential of the 22-gene panel. Linear discrimination analysis, performed to further refine the gene set for a more high-throughput analysis, identified a putative seven-gene panel (, and matrix metalloproteinase gene ) that could distinguish potential irritants from nonirritants. These data offer promise as an in vitro prediction tool, although analysis of a large chemical test set is required to further evaluate the system.
没有明确界定皮肤敏感性或刺激性的体征或视觉表现;主观诊断是基于对包括烧灼感、刺痛感、红斑和瘙痒等临床表现的评估做出的。局部应用产品引起的皮肤不良反应很常见,可能会限制皮肤科或化妆品的使用。本研究的目的是评估基于永生化皮肤角质形成细胞的人皮肤替代物的用途,并评估一个22基因组合结合多变量分析区分已知刺激性化学物质和非刺激性化学物质的潜力。将测试化合物局部应用于全层人皮肤替代物或人离体皮肤,并确定已知刺激物和非刺激物的基因特征。主成分分析显示了22基因组合的鉴别潜力。为进一步优化基因集以进行更高通量分析而进行的线性判别分析,确定了一个假定的七基因组合(,以及基质金属蛋白酶基因),该组合可以区分潜在刺激物和非刺激物。这些数据有望成为一种体外预测工具,不过需要分析大量化学测试集以进一步评估该系统。