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一种被鉴定为强接触性过敏原的α,β-不饱和肟。通过多种途径形成抗原的迹象。

An alpha,beta-unsaturated oxime identified as a strong contact allergen. Indications of antigen formation via several pathways.

作者信息

Nilsson Anna-Malin, Bergström Moa Andresen, Luthman Kristina, Nilsson J Lars G, Karlberg Ann-Therese

机构信息

Department of Chemistry, Dermatochemistry and Skin Allergy, Göteborg University, SE-412 96 Göteborg, Sweden.

出版信息

Food Chem Toxicol. 2005 Nov;43(11):1627-36. doi: 10.1016/j.fct.2005.05.004.

Abstract

The aim of this study was to examine the possible skin sensitizing effect of oximes, employing an alpha,beta-unsaturated oxime as the model compound. Oximes are not frequently used as biologically active compounds. However, they have been shown to possess both anti-inflammatory and anti-allergic activities. Furthermore, in a recent study, a number of oximes and oxime-ethers of hydroxylated benzaldehydes and acetophenones were found to be powerful antioxidants suggested to be used in consumer products such as cosmetics and food. Although there are only few reports on the sensitizing effect of oximes, their ability to be hydrolyzed to the corresponding ketones or aldehydes makes them potential contact allergens. The oxime investigated in this study was demonstrated to be a strong contact allergen in both mice and guinea pigs, capable of sensitize the control animals after only one dermal exposure. In order to elucidate the mechanisms for the formation of the complete antigen, a variety of analogues with different reactivity were tested. The results indicate that alpha,beta-unsaturated oximes can react with proteins via several different pathways. Most likely, a metabolic transformation is involved. Due to the strong allergenic effect of the oxime investigated, we strongly advise against the use of such oximes in consumer products until a better understanding of their interactions with biological macromolecules has been obtained.

摘要

本研究的目的是使用α,β-不饱和肟作为模型化合物,研究肟可能的皮肤致敏作用。肟并不常被用作生物活性化合物。然而,它们已被证明具有抗炎和抗过敏活性。此外,在最近的一项研究中,发现许多羟基化苯甲醛和苯乙酮的肟及肟醚是强大的抗氧化剂,建议用于化妆品和食品等消费品中。尽管关于肟的致敏作用的报道很少,但它们水解为相应酮或醛的能力使它们成为潜在的接触性过敏原。本研究中所研究的肟在小鼠和豚鼠中均被证明是一种强接触性过敏原,仅一次皮肤暴露就能使对照动物致敏。为了阐明完全抗原形成的机制,测试了各种具有不同反应性的类似物。结果表明,α,β-不饱和肟可通过几种不同途径与蛋白质反应。很可能涉及代谢转化。由于所研究的肟具有很强的致敏作用,在尚未更好地了解它们与生物大分子的相互作用之前,我们强烈建议不要在消费品中使用此类肟。

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