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首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Dissolution of materials in artificial skin surface film liquids.
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Dissolution of materials in artificial skin surface film liquids.

机译:材料在人造皮肤表面膜液体中的溶解。

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摘要

The dissolution of chemical constituents from jewelry, textiles, cosmetics, drugs, industrial chemicals, and particles in direct and prolonged contact with human skin is often assessed in vitro using artificial skin surface film liquids (SSFL). To provide meaningful results, the composition of artificial SSFL should accurately mimic human sweat and sebum, and the conditions of the in vitro test system should accurately reflect in vivo skin conditions. We summarized the reported composition of human SSFL and compared it to 45 different formulations of artificial sweat and 18 formulations of artificial sebum (studies published from 1940 to 2005). Conditions of in vitro dissolution test systems were reviewed and compared to in vivo skin conditions. The concentrations of individual constituents and pH of artificial sweat and concentrations of artificial sebum constituents are not always within ranges reported for human SSFL. Nearly all artificial SSFL lack many of the constituents in human SSFL. To developa comprehensive model SSFL, we propose a standard SSFL, modified from the two best published sweat and sebum formulations. Little is known concerning the influence of test system conditions on dissolution, including SSFL temperature, container material composition, agitation, and physicochemical properties of the test article on dissolution. Thus, both a need and an opportunity exist for standardizing the composition of artificial SSFL and in vitro dissolution test methodologies. To standardize in vitro dissolution test systems, we recommend: maintaining artificial SSFL at a biologically relevant temperature appropriate to the human activity being modeled, carefully selecting test and sample storage containers to avoid bias in dissolution measurements, accounting for friction between a test article and skin in a biologically plausible manner, and physicochemical characterization of the test article or material to better understand mechanisms of dissolution and potential mechanisms of toxic action of dissolvedmaterial. More accurate modeling and better understanding of chemical dissolution from articles in contact with the skin will ultimately improve risk decision making, thereby protecting even the most susceptible persons from adverse health effects resulting from skin exposure.
机译:通常在体外使用人造皮肤表面膜液体(SSFL)评估化学成分从珠宝,纺织品,化妆品,药​​物,工业化学品以及与人类皮肤直接和长期接触中的溶解情况。为了提供有意义的结果,人造SSFL的成分应准确模拟人的汗液和皮脂,并且体外测试系统的状况应准确反映体内皮肤状况。我们总结了报道的人类SSFL的成分,并将其与45种不同的人造汗液配方和18种人造皮脂配方进行比较(研究从1940年至2005年出版)。审查了体外溶出度测试系统的条件,并将其与体内皮肤条件进行了比较。单个成分的浓度和人造汗液的pH值以及人造皮脂成分的浓度并不总是在人类SSFL报道的范围内。几乎所有人造SSFL都缺乏人类SSFL中的许多成分。为了开发一个综合的SSFL模型,我们提出了一个标准的SSFL,它是从两种最好的已公开的汗液和皮脂配方中修改而来的。关于测试系统条件对溶解的影响知之甚少,包括SSFL温度,容器材料成分,搅拌以及测试物品对溶解的理化性质。因此,标准化人工SSFL和体外溶出度测试方法的组成既需要也有机会。为了使体外溶出度测试系统标准化,我们建议:将人造SSFL维持在与要模拟的人类活动相适应的生物学相关温度下,仔细选择测试和样品储存容器以避免溶出度测量出现偏差,并考虑到测试物品与皮肤之间的摩擦以生物学上合理的方式进行测试物品或材料的物理化学表征,以更好地理解溶解机制和溶解物质毒性作用的潜在机制。更加准确的建模和对与皮肤接触的物品中化学溶解的更好理解将最终改善风险决策,从而甚至保护最易受伤害的人免受皮肤暴露对健康的不利影响。

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