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肉桂醛氧化过程中产生的活性物种导致半胱氨酸氧化的原因及对使用含半胱氨酸亲核试剂的化学替代皮肤致敏方法的影响。

Cause Clarification of Cysteine Oxidation by Active Species Generated during the Oxidation Process of Cinnamaldehyde and Impact on an In Chemico Alternative Method for Skin Sensitization Using a Nucleophilic Reagent Containing Cysteine.

作者信息

Fujita Masaharu, Yamamoto Yusuke, Watanabe Kumiko, Suzuki Koo, Kasahara Toshihiko

机构信息

Safety Evaluation Centre, Ecology & Quality Management Division, ESG Division, Fujifilm Corporation, 210 Nakanuma, Minamiashigara-shi, Kanagawa, Japan.

Research & Development Management Headquarters, Analysis Technology Center, Fujifilm Corporation, 210 Nakanuma, Minamiashigara-shi, Kanagawa, Japan.

出版信息

Chem Res Toxicol. 2021 Jul 19;34(7):1749-1758. doi: 10.1021/acs.chemrestox.1c00097. Epub 2021 Jun 10.

Abstract

Aldehydes comprise a major portion of skin sensitizers because they can react with both cysteine and lysine. Moreover, cinnamaldehyde (CA) is a typical moderate sensitizer and is often used in an alternative test method for skin sensitization. The amino acid derivative reactivity assay (ADRA) is an in chemico test method that evaluates the reactivity of cysteine derivatives (-(2-(1-naphthyl)acetyl)-l-cysteine, NAC) and lysine derivatives with the test chemicals and uses CA as a proficiency substance. We found that NAC depletion for CA was only 10-20% when CA was used directly from the reagent bottle, although it increased to almost 100% when stored after being aliquoted from the reagent bottle. It was also found that this was due to the air oxidation of NAC itself rather than the reaction of NAC with CA, indicating that this result simply shows an increase in apparent reactivity. Aldehydes are known to produce active species, such as radicals, during air oxidation. Therefore, we investigated whether radicals were generated under storage conditions using the radical scavenger OH-TEMPO. LC/MS/MS analysis revealed that CA and OH-TEMPO complexes were produced during the air oxidation of CA. In the results of five aldehydes, similar to CA, active species were not generated as significantly as CA. Collectively, during the evaluation of the aldehydes, it can be seen that careful measures need to be taken to prevent the aldehydes from oxidizing during storage, indicating that assessment without preventing air oxidation carries an increased risk of overestimation compared with the intrinsic skin sensitization potency.

摘要

醛类占皮肤致敏剂的很大一部分,因为它们能与半胱氨酸和赖氨酸发生反应。此外,肉桂醛(CA)是一种典型的中度致敏剂,常用于皮肤致敏的替代测试方法。氨基酸衍生物反应性测定法(ADRA)是一种化学测试方法,用于评估半胱氨酸衍生物(-(2-(1-萘基)乙酰基)-L-半胱氨酸,NAC)和赖氨酸衍生物与测试化学品的反应性,并将CA用作能力验证物质。我们发现,直接从试剂瓶中取用CA时,其导致的NAC消耗仅为10%-20%,但从试剂瓶中取出分装后储存时,NAC消耗增加到几乎100%。还发现这是由于NAC自身的空气氧化,而非NAC与CA的反应,这表明该结果仅显示了表观反应性的增加。已知醛类在空气氧化过程中会产生活性物种,如自由基。因此,我们使用自由基清除剂OH-TEMPO研究了在储存条件下是否会产生产生自由基。LC/MS/MS分析表明,CA在空气氧化过程中会生成CA与OH-TEMPO的复合物。在五种醛类的结果中,与CA类似,活性物种的产生不如CA显著。总体而言,在评估醛类时,可以看出需要采取谨慎措施以防止醛类在储存过程中氧化,这表明在不防止空气氧化的情况下进行评估,与内在皮肤致敏效力相比,存在高估的风险增加。

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