首页> 外文期刊>Environmental toxicology and chemistry >Effects of Skin Region and Relative Lipophilicity on Percutaneous Absorption in the Toad Rhinella marina
【24h】

Effects of Skin Region and Relative Lipophilicity on Percutaneous Absorption in the Toad Rhinella marina

机译:皮肤区域和相对亲脂性对蟾蜍犀牛小游艇乳头经皮吸收的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Owing to the dynamic interaction between frog skin and the environment, xenobiotics in frog habitats are of particular concern, and knowledge of percutaneous absorption in frog skin is necessary for risk-mitigation purposes. Baseline transdermal kinetics in adult aquatic and arboreal frog species have recently been reported; however, there is little information regarding absorption kinetics in adult terrestrial species. The present study investigated the in vitro absorption kinetics of 3 model chemicals-caffeine, benzoic acid, and ibuprofen-through different skin regions in the terrestrial toad Rhinella marina. Caffeine flux was consistently higher than that of the other 2 chemicals (p 0.001), whereas the fluxes of the moderately and highly lipophilic chemicals (benzoic acid and ibuprofen) were similar, regardless of skin region. When considering individual chemicals, caffeine demonstrated increased flux through the ventral pelvic skin compared with the ventral thoracic or dorsal skin regions. Flux did not differ between skin regions for either benzoic acid or ibuprofen. These findings have implications for management of environmental contamination in frog habitats, as many environmental xenobiotics are of moderate to high lipophilicity and would be expected to be equally absorbed from all skin surfaces in terrestrial toads. Environ Toxicol Chem 2019;38:361-367. (c) 2018 SETAC
机译:由于青蛙皮肤和环境之间的动态相互作用,青蛙栖息地的仇外子是特别令人关切的,并且在风险缓解目的需要对青蛙皮肤的经皮吸收的了解。最近报道了成年水生和树栖青蛙物种的基线透皮动力学;然而,在成人陆地物种中有关于吸收动力学的信息很少。本研究研究了陆地蟾蜍脊髓植物南部的不同皮肤区域的3种模型化学品 - 咖啡因,苯甲酸和布洛芬的体外吸收动力学。咖啡因助焊剂始终高于其他2种化学物质(P <0.001),而中间和高亲脂性化学物质(苯甲酸和布洛芬)的助熔剂相似,无论皮肤区域如何。在考虑各种化学物质时,与腹侧胸腔或背部皮肤区域相比,咖啡因通过腹侧骨盆皮肤显示出增加的通量。苯甲酸或布洛芬的皮肤区域之间的助焊剂没有差异。这些发现对青蛙栖息地的环境污染的管理有影响,因为许多环境异种症具有中度至高亲脂性,并且预计将从陆地蟾蜍中的所有皮肤表面被同样吸收。环境毒素科学2019; 38:361-367。 (c)2018 Setac

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号