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采用分化的 JEG-3 人绒毛癌细胞评估胎盘药物转运的体外方法。

In vitro approaches to evaluate placental drug transport by using differentiating JEG-3 human choriocarcinoma cells.

机构信息

Osaka Ohtani University, Japan.

出版信息

Basic Clin Pharmacol Toxicol. 2011 Feb;108(2):138-45. doi: 10.1111/j.1742-7843.2010.00634.x. Epub 2010 Oct 18.

Abstract

Human choriocarcinoma cells have been used as models for studying transcellular drug transport through placental trophoblasts. However, these models allow the transport of low-molecular-weight drugs through intercellular gap junctions. This study aimed at investigating the differentiation patterns of JEG-3 choriocarcinoma cells under different culture conditions and establishing the appropriate model of in vitro syncytiotrophoblast drug transport. Paracellular permeability was estimated by measuring the transepithelial electrical resistance (TEER) across JEG-3 cell layers. The mRNA expression levels of non-expressed in choriocarcinoma clone 1 (NECC1) and breast cancer resistance protein (BCRP), and those of E-cadherin (ECAD) and cadherin-11 (CDH11), which are adherens junction-associated proteins related to fusogenic ability of syncytiotrophoblasts differentiated from cytotrophoblasts, protein expression levels were considered as the differentiation signals. The highest TEER values were obtained in the JEG-3 cells cultured in the Dulbecco's modified Eagle's medium (DMEM)/Ham's F-12 (1:1) mixed medium (CS-C(®) ; Dainippon Sumitomo Pharma Co. Ltd., Osaka, Japan). By comparing the TEER values and the differentiation signals, the authors identified at least five JEG-3 cell-differentiation patterns. The differentiation pattern of JEG-3 cultured in CS-C resembled the syncytiotrophoblast-like differentiation signal characterizations in vivo. In conclusion, the syncytiotrophoblast-like models of differentiating JEG-3 cells cultured in CS-C might be appropriate for evaluating drug transport across the placental trophoblast.

摘要

人绒毛癌细胞已被用作研究通过胎盘滋养层细胞的细胞间药物转运的模型。然而,这些模型允许通过细胞间缝隙连接转运低分子量药物。本研究旨在研究不同培养条件下 JEG-3 绒毛癌细胞的分化模式,并建立体外合胞体滋养层药物转运的合适模型。通过测量 JEG-3 细胞层的跨上皮电阻 (TEER) 来估计细胞旁通透性。非绒毛癌细胞克隆 1 (NECC1) 和乳腺癌耐药蛋白 (BCRP) 的 mRNA 表达水平,以及上皮细胞钙黏蛋白 (ECAD) 和钙黏蛋白 11 (CDH11) 的 mRNA 表达水平,这些蛋白与从滋养细胞分化而来的合胞体滋养层的融合能力有关,被认为是分化信号。在含有 Dulbecco 改良 Eagle 培养基 (DMEM)/Ham's F-12(1:1) 混合培养基 (CS-C®;大日本住友制药株式会社,大阪,日本) 的 JEG-3 细胞中获得了最高的 TEER 值。通过比较 TEER 值和分化信号,作者确定了至少五种 JEG-3 细胞分化模式。在 CS-C 中培养的 JEG-3 的分化模式与体内合胞体滋养层样分化信号特征相似。总之,在 CS-C 中培养的分化 JEG-3 细胞的合胞体滋养层样模型可能适合评估药物穿过胎盘滋养层的转运。

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