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首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >In vitro human skin permeation and decontamination of 2-chloroethyl ethyl sulfide (CEES) using Dermal Decontamination Gel (DDGel) and Reactive Skin Decontamination Lotion (RSDL)
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In vitro human skin permeation and decontamination of 2-chloroethyl ethyl sulfide (CEES) using Dermal Decontamination Gel (DDGel) and Reactive Skin Decontamination Lotion (RSDL)

机译:使用皮肤去污凝胶(DDGEL)和反应性皮肤去污乳液(RSDL)的体外人体皮肤渗透和2-氯乙基硫醚(CEE)的净化

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摘要

This study compared the efficiency for in vitro human skin decontamination using DDGel and RSDL. Experiments were performed using in vitro human skin models, in which skin was mounted onto Flow-Through diffusion cells. The mass of (14)-C CEES removed from skin surface after decontamination was quantitated by measuring radioactivity with a liquid scintillation spectrometer. Both decontaminants removed more than 82% of CEES from skin. DDGel skin decontamination significantly reduced toxicant amount when compared to RSDL. Mean CEES remaining in stratum corneum (SC), viable epidermis, dermis, and systemic absorption of DDGel and RSDL were, 0.12 and 0.55% (P 0.01), 0.31 and 0.95% (p 0.01), 1.08 and 2.92% (p 0.05), 3.13 and 6.34% (p 0.05), respectively. DDGel showed higher decontamination efficiency (twice decontamination efficacy factor, DEF) than RSDL and efficiently removed chemicals from the skin surface, importantly back-extracted from the SC, and significantly reduced both chemical penetration into skin and systemic absorption. Thus, DDGel can offer a potential as a next generation skin decontamination platform technology for military and civilian applications.
机译:该研究比较了使用DDGEL和RSDL对体外人体皮肤去污的效率。使用体外人体皮肤模型进行实验,其中将皮肤安装在流通扩散细胞上。通过用液体闪烁光谱仪测量放射性,定量从皮肤表面除去皮肤表面的(14)-C凸块的质量。两种去污剂均超过皮肤的82%。与RSDL相比,DDGEL皮肤去污显着降低了毒药量。剩余的平均cyee在地层(sc)中,可行表皮,真皮和ddgel和rsdl的全身吸收,0.12和0.55%(p <0.01),0.31和0.95%(P <0.01),1.08和2.92% (P <0.05),3.13和6.34%(P <0.05)。 DDGEL表现出更高的去污效率(两次去污效率因子,DEF)而不是RSDL,从皮肤表面有效地除去了化学品,重要的是从SC中提取,并显着降低了皮肤和系统性吸收的化学渗透性。因此,DDGEL可以提供作为军事和民用应用的下一代皮肤去污平台技术的潜力。

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