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新型人工汗液在储存和使用条件下的配方和稳定性。

Formulation and stability of a novel artificial human sweat under conditions of storage and use.

机构信息

National Institute for Occupational Safety and Health, Morgantown, WV 26505, USA.

出版信息

Toxicol In Vitro. 2010 Sep;24(6):1790-6. doi: 10.1016/j.tiv.2010.06.016. Epub 2010 Jul 3.

Abstract

A limitation of most artificial sweat formulations used for in vitro assessment of chemical release from materials in contact with skin have little biological relevance to human sweat. The purposes of this paper are to provide guidance for preparation of a novel artificial sweat with chemical constituents at concentrations that match human sweat and to characterize chemical stability. The artificial sweat was characterized under conditions of use (with and without sebum at 36 degrees C) and storage (without sebum at -4, 4, and 23 degrees C) over 28 days by gas chromatography-mass spectroscopy, high-performance liquid chromatography, enzymatic assay kits, and ion-selective electrodes. Seven indicator constituents were tracked: sodium, chloride, glucose, lactic acid, urea, pantothenic acid, and alanine. With or without sebum at 36 degrees C, the sweat solvent was chemically stable for 14 days. Storage by refrigeration at 4 degrees C retained the chemical integrity of the solvent longest. Based on these results, the solvent should be used within 14 days of preparation. The artificial sweat model presented herein is most similar to human sweat and has applications as a dissolution solvent, donor solution in diffusion cells, or vehicle for patch testing. This sweat model may aid researchers in understanding potential release and percutaneous absorption of chemicals in contact with human skin surface liquids.

摘要

大多数用于评估与皮肤接触材料中化学物质释放的人工汗液配方都存在一个局限性,即它们与人体汗液的生物相关性不大。本文旨在为制备一种新型人工汗液提供指导,该汗液的化学成分浓度与人体汗液相匹配,并具有化学稳定性。通过气相色谱-质谱法、高效液相色谱法、酶试剂盒和离子选择性电极,在使用条件(36°C 时有无皮脂)和储存条件(-4°C、4°C 和 23°C 时无皮脂)下,对人工汗液在 28 天内的化学稳定性进行了表征。跟踪了七种指示成分:钠、氯、葡萄糖、乳酸、尿素、泛酸和丙氨酸。无论 36°C 时是否有皮脂,汗液溶剂在 14 天内化学稳定。在 4°C 冷藏储存时,溶剂的化学完整性保持得最长。基于这些结果,该溶剂应在制备后 14 天内使用。本文提出的人工汗液模型与人体汗液最为相似,可作为溶解溶剂、扩散池中的供体溶液或斑贴试验的载体。这种汗液模型可能有助于研究人员了解与人体皮肤表面液体接触的化学物质的潜在释放和经皮吸收。

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