首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Modeling placental transport: correlation of in vitro BeWo cell permeability and ex vivo human placental perfusion.
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Modeling placental transport: correlation of in vitro BeWo cell permeability and ex vivo human placental perfusion.

机译:模拟胎盘运输:体外BeWo细胞通透性与离体人胎盘灌注的相关性。

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摘要

The placental passage of three compounds with different physicochemical properties was recently investigated in ex vivo human placental perfusion experiments (caffeine, benzoic acid, and glyphosate) [Mose, T., Kjaerstad, M.B., Mathiesen, L., Nielsen, J.B., Edelfors, S., Knudsen, L.E., 2008. Placental passage of benzoic acid, caffeine, and glyphosate in an ex vivo human perfusion system. J. Toxicol. Environ. Health, Part A 71, 984-991]. In this work, the transport of these same three compounds, plus the reference compound antipyrine, was investigated using BeWo (b30) cell monolayers. Transport across the BeWo cells was observed in the rank order of caffeine>antipyrine>benzoic acid>glyphosate in terms of both the apparent permeability coefficient and the initial slope, defined as the linear rate of substance transferred to the fetal compartment as percent per time, a parameter used to compare the two experimental models. The results from the in vitro studies were in excellent agreement with the ex vivo results (caffeine approximately antipyrine>benzoic acid>glyphosate). However the transfer rate was much slower in the BeWo cells compared to the perfusion system. The advantages and limitations of each model are discussed in order to assist in the preparation, prediction, and performance of future studies of maternal-fetal transfer.
机译:最近在离体人类胎盘灌注实验(咖啡因,苯甲酸和草甘膦)中研究了三种具有不同理化性质的化合物的胎盘通过[Mose,T.,Kjaerstad,MB,Mathiesen,L.,Nielsen,JB,Edelfors, S.,Knudsen,LE,2008年。离体人体灌注系统中苯甲酸,咖啡因和草甘膦的胎盘通过。 J.《毒药》。环境。卫生,A部分71,984-991]。在这项工作中,使用BeWo(b30)细胞单层研究了这三种相同化合物以及参考化合物安替比林的转运。就表观渗透系数和初始斜率而言,以咖啡因>安替比林>苯甲酸>草甘膦的等级顺序观察到了跨BeWo细胞的转运,定义为物质转移至胎儿区室的线性速率,单位为百分比/时间,用于比较两个实验模型的参数。体外研究的结果与离体结果非常吻合(咖啡因约为安替比林>苯甲酸>草甘膦)。但是,与灌注系统相比,BeWo细胞的转移速率要慢得多。讨论了每种模型的优点和局限性,以帮助准备,预测和执行未来母婴转移研究。

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