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Phototoxicity: Its Mechanism and Animal Alternative Test Methods

机译:光毒性:其机理和动物替代测试方法

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摘要

The skin exposure to solar irradiation and photoreactive xenobiotics may produce abnormal skin reaction, phototoxicity. Phototoxicity is an acute light-induced response, which occurs when photoreacive chemicals are activated by solar lights and transformed into products cytotoxic against the skin cells. Multifarious symptoms of phototoxicity are identified, skin irritation, erythema, pruritis, and edema that are similar to those of the exaggerated sunburn. Diverse organic chemicals, especially drugs, are known to induce phototoxicity, which is probably from the common possession of UV-absorbing benzene or heterocyclic rings in their molecular structures. Both UVB (290~320 nm) and UVA (320~400 nm) are responsible for the manifestation of phototoxicity. Absorption of photons and absorbed energy (hv) by photoactive chemicals results in molecular changes or generates reactive oxygen species and depending on the way how endogenous molecules are affected by phototoxicants, mechanisms of phototoxcity is categorized into two modes of action: Direct when unstable species from excited state directly react with the endogenous molecules, and indirect when endogeneous molecules react with secondary photoproducts. In order to identify phototoxic potential of a chemical, various test methods have been introduced. Focus is given to animal alternative test methods, i.e., in vitro, and in chemico assays as well as in vivo. 3T3 neutral red uptake assay, erythrocyte photohemolysis test, and phototoxicity test using human 3-dimensional (3D) epidermis model are examples of in vitro assays. In chemico methods evaluate the generation of reactive oxygen species or DNA strand break activity employing plasmid for chemicals, or drugs with phototoxic potential.
机译:皮肤暴露于日光照射和光反应性外源生物可能会引起异常的皮肤反应,光毒性。光毒性是一种急性的光诱导反应,当光反应性化学物质被太阳光激活并转化为对皮肤细胞具有细胞毒性的产品时,就会发生光毒性。鉴定出多种光毒性症状,皮肤刺激,红斑,瘙痒和浮肿,类似于夸张的晒伤。已知多种有机化学物质,尤其是药物会引起光毒性,这可能是由于分子结构中通常具有吸收紫外线的苯或杂环所致。 UVB(290〜320 nm)和UVA(320〜400 nm)都是造成光毒性的原因。光活性化学物质对光子的吸收和吸收的能量(hv)导致分子变化或产生活性氧,并且根据内源性分子受光毒物影响的方式,将光毒性机制分为两种作用方式:当来自激发态直接与内源性分子发生反应,而当内源性分子与次级光产物发生反应时则处于间接状态。为了鉴定化学物质的光毒性潜力,已经引入了各种测试方法。重点放在动物替代测试方法上,即在体外,化学分析以及体内。使用人类3维(3D)表皮模型的3T3中性红吸收测定,红细胞光溶血测试和光毒性测试是体外测定的示例。在化学方法中,使用化学试剂质粒或具有光毒性潜力的药物来评估活性氧或DNA链断裂活性的产生。

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