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建立一种使用 THP-1 细胞和 IL-8 的体外光毒性测定法,以区分光变应原和光致敏原。

Establishment of an in vitro photoassay using THP-1 cells and IL-8 to discriminate photoirritants from photoallergens.

机构信息

Departament de Fisiologia, Facultat de Farmàcia, Universitat de Barcelona, Av. Joan XXIII, s/n, 08028 Barcelona, Spain.

出版信息

Toxicol In Vitro. 2013 Sep;27(6):1920-7. doi: 10.1016/j.tiv.2013.06.013. Epub 2013 Jun 29.

Abstract

At present, there are no in vivo or in vitro methods developed which has been adopted by regulatory authorities to assess photosensitization induced by chemicals. Recently, we have proposed the use of THP-1 cells and IL-8 release to identify the potential of chemicals to induce skin sensitization. Based on the assumption that sensitization and photosensitization share common mechanisms, the aim of this work was to explore the THP-1 model as an in vitro model to identify photoallergenic chemicals. THP-1 cells were exposed to 7 photoallergens and 3 photoirritants and irradiated with UVA light or kept in dark. Non phototoxic allergens or irritants were also included as negative compounds. Following 24h of incubation, cytotoxicity and IL-8 release were measured. At subtoxic concentrations, photoallergens produced a dose-related increase in IL-8 release after irradiation. Some photoirritants also produced a slight increase in IL-8 release. However, when the overall stimulation indexes of IL-8 were calculated for each chemical, 6 out of 7 photoallergens tested reached a stimulation index above 2, while the entire set of negative compounds had stimulation indexes below 2. Our data suggest that this assay may become a useful cell-based in vitro test for evaluating the photosensitizing potential of chemicals.

摘要

目前,监管机构尚未开发出用于评估化学物质引起光致敏的体内或体外方法。最近,我们提出使用 THP-1 细胞和白细胞介素-8(IL-8)释放来识别化学物质潜在的皮肤致敏能力。基于致敏和光致敏具有共同机制的假设,本研究旨在探索 THP-1 模型作为识别光变应原化学物质的体外模型。THP-1 细胞暴露于 7 种光变应原和 3 种光刺激性物质,并接受 UVA 光照射或置于黑暗中。非光毒性变应原或刺激性物质也被用作阴性化合物。孵育 24 小时后,测量细胞毒性和白细胞介素-8(IL-8)释放。在亚毒性浓度下,光变应原在照射后会产生剂量相关性的 IL-8 释放增加。一些光刺激性物质也会导致 IL-8 释放略有增加。然而,当计算每种化学物质的 IL-8 总体刺激指数时,测试的 7 种光变应原中有 6 种达到了 2 以上的刺激指数,而整套阴性化合物的刺激指数均低于 2。我们的数据表明,该测定法可能成为评估化学物质光致敏潜力的有用的基于细胞的体外试验。

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