German Federal Institute for Risk Assessment (BfR), Department of Product Safety, 10589 Berlin, Germany.
Toxicol Sci. 2013 Feb;131(2):351-9. doi: 10.1093/toxsci/kfs316. Epub 2012 Nov 11.
The polycyclic aromatic hydrocarbon (PAH) benzo[a]pyrene (BP) is metabolized into a complex pattern of BP derivatives, among which the ultimate carcinogen (+)-anti-BP-7,8-diol-9,10-epoxide (BPDE) is formed to certain extents. Skin is frequently in contact with PAHs and data on the metabolic capacity of skin tissue toward these compounds are inconclusive. We compared BP metabolism in excised human skin, commercially available in vitro 3D skin models and primary 2D skin cell cultures, and analyzed the metabolically catalyzed occurrence of seven different BP follow-up products by means of liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS). All models investigated were competent to metabolize BP, and the metabolic profiles generated by ex vivo human skin and skin models were remarkably similar. Furthermore, the genotoxicity of BP and its derivatives was monitored in these models via comet assays. In a full-thickness skin, equivalent BP-mediated genotoxic stress was generated via keratinocytes. Cultured primary keratinocytes revealed a level of genotoxicity comparable with that of direct exposure to 50-100 nM of BPDE. Our data demonstrate that the metabolic capacity of human skin ex vivo, as well as organotypic human 3D skin models toward BP, is sufficient to cause significant genotoxic stress and thus cutaneous bioactivation may potentially contribute to mutations that ultimately lead to skin cancer.
多环芳烃(PAH)苯并[a]芘(BP)代谢为 BP 衍生物的复杂模式,其中终致癌物(+)-反式-BP-7,8-二醇-9,10-环氧化物(BPDE)在一定程度上形成。皮肤经常接触 PAHs,关于皮肤组织对这些化合物代谢能力的数据尚无定论。我们比较了离体人皮肤、市售 3D 体外皮肤模型和原代 2D 皮肤细胞培养物中 BP 的代谢情况,并通过液相色谱-串联质谱(LC-MS/MS)分析了七种不同 BP 后续产物代谢催化生成的情况。所有研究的模型都能够代谢 BP,离体人皮肤和皮肤模型产生的代谢谱非常相似。此外,还通过彗星试验监测了这些模型中 BP 及其衍生物的遗传毒性。在全厚皮肤中,通过角质形成细胞产生与 BP 介导的遗传毒性应激相当的水平。培养的原代角质形成细胞显示出与直接暴露于 50-100 nM BPDE 相当的遗传毒性水平。我们的数据表明,人体皮肤离体以及针对 BP 的器官型 3D 皮肤模型的代谢能力足以引起显著的遗传毒性应激,因此皮肤生物活化可能会导致突变,最终导致皮肤癌。