脱皮
化学
角质层
杀生物剂
渗透
分配系数
磁导率
色谱法
药理学
毒理
环境化学
皮肤病科
有机化学
生物化学
医学
病理
生物
膜
作者
Masahiro Sugino,Hiroaki Todo,Takamasa Suzuki,Keiichi Nakada,Kiyomi Tsuji,Hiroshi Tokunaga,Hideto Jinno,Kenji Sugibayashi
摘要
Advances in the synthesis and utilization of new chemical compounds have led to improvements in our daily lives. However, new chemicals may be both beneficial and toxic. Thus, exposure to these new compounds should be restricted in an attempt to limit their potential toxicities. We predicted the safety of three biocides (p-cresol, diazinon and resmethrin) by comparing their skin permeability coefficients and desquamation rate (the counter flux of permeability coefficient for chemical compounds induced by skin turnover) following skin exposure. In vitro skin permeation experiments revealed that the permeability coefficients of diazinon and resmethrin were smaller than the desquamation rate; therefore, these biocides could not permeate the skin, which resulted in very low skin concentrations of these compounds. On the other hand, the skin concentration of p-cresol was high because of its higher permeability coefficient than the desquamation rate. Furthermore, low in vitro cell viability was reported for skin exposed to p-cresol. These results in the present study indicate that the method described herein is useful for predicting the toxicities of chemicals following their topical exposure.
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