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五氯苯酚混合物中化学相互作用对皮肤及膜转运的影响。

Effect of chemical interactions in pentachlorophenol mixtures on skin and membrane transport.

作者信息

Baynes Ronald E, Brooks James D, Mumtaz Moiz, Riviere Jim E

机构信息

Center for Chemical Toxicology Research and Pharmacokinetics, Department of Food Animal Health and Resource Management, College Of Veterinary Medicine, North Carolina State University, Raleigh, NC 27606, USA.

出版信息

Toxicol Sci. 2002 Oct;69(2):295-305. doi: 10.1093/toxsci/69.2.295.

Abstract

Pentachlorophenol (PCP) has been widely used as a pesticide, and topical exposure to a chemical mixture can alter its dermal absorption. The purpose of this study was to evaluate the influence of single and binary solvent systems (ethanol, EtOH, and water), a surfactant (6% sodium lauryl sulfate, SLS), and a rubifacient/vasodilator (1.28% methyl nicotinate, MNA) on PCP membrane transport, and to correlate these effects with physiochemical characteristics of the PCP mixtures. Partitioning, diffusion, and absorption parameters of (14)C-PCP at low (4 microg/cm(2)) and high (40 microg/cm(2)) doses were assessed in porcine skin and silastic membranes in vitro. In these 8-h, flow-through diffusion studies, PCP was dosed with the following vehicles: 100% EtOH, 100% water, 40% EtOH + 60% water, 40% EtOH + 60% water + SLS, 40% EtOH + 60% water + MNA, and 40% EtOH + 60% water + SLS + MNA. PCP absorption ranged from 1.55-15.62% for the high dose and 0.43-7.20% for the low dose. PCP absorption, flux, and apparent permeability were influenced by PCP solubility, and PCP apparent permeability was correlated with log PC (r2 = 0.66). Although PCP was very soluble in pure ethanol (100%), this vehicle evaporated very rapidly, and PCP absorption in ethanol was the lowest with this vehicle when compared to pure water (100%) or aqueous ethanol mixtures in general. MNA had no significant effect on membrane absorption or relative permeability R(P) in aqueous ethanol solutions, but the presence of the surfactant, SLS, significantly reduced PCP absorption and R(P) in both membrane systems. In conclusion, these studies demonstrated that modification in mixture composition with either a solvent and/or a surfactant can influence PCP diffusion in skin. Physicochemical interactions between these mixture components on the skin surface and stratum corneum contributed significantly to PCP transport, and these interactions were identified by simultaneously assessing chemical diffusion in biological and inert membrane systems.

摘要

五氯苯酚(PCP)曾被广泛用作杀虫剂,皮肤局部接触化学混合物会改变其经皮吸收情况。本研究的目的是评估单一和二元溶剂体系(乙醇,EtOH,和水)、一种表面活性剂(6%月桂醇硫酸酯钠,SLS)以及一种擦剂/血管扩张剂(1.28%烟酸甲酯,MNA)对PCP膜转运的影响,并将这些效应与PCP混合物的物理化学特性相关联。在体外猪皮肤和硅橡胶膜中评估了低剂量(4μg/cm²)和高剂量(40μg/cm²)的¹⁴C - PCP的分配、扩散和吸收参数。在这些8小时的流通扩散研究中,PCP与以下载体一起给药:100% EtOH、100%水、40% EtOH + 60%水、40% EtOH + 60%水 + SLS、40% EtOH + 60%水 + MNA以及40% EtOH + 60%水 + SLS + MNA。高剂量时PCP的吸收范围为1.55 - 15.62%,低剂量时为0.43 - 7.20%。PCP的吸收、通量和表观渗透率受PCP溶解度影响,且PCP表观渗透率与log PC相关(r² = 0.66)。尽管PCP在纯乙醇(100%)中溶解度很高,但该载体蒸发非常快,与纯水(100%)或一般的乙醇水溶液混合物相比,PCP在乙醇中的吸收是最低的。MNA对乙醇水溶液中的膜吸收或相对渗透率R(P)没有显著影响,但表面活性剂SLS的存在显著降低了两种膜体系中PCP的吸收和R(P)。总之,这些研究表明,用溶剂和/或表面活性剂改变混合物组成可影响PCP在皮肤中的扩散。这些混合物成分在皮肤表面和角质层之间的物理化学相互作用对PCP转运有显著贡献,并且通过同时评估在生物和惰性膜体系中的化学扩散来确定这些相互作用。

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