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聚苯乙烯微塑料和纳米塑料在生理相关的体外人胎盘共培养模型中的传代限制及功能效应

Limited passage and functional effects of polystyrene micro- and nanoplastics in a physiologically-relevant in vitro human placental co-culture model.

作者信息

van Boxel Jeske, Nijmeijer Sandra M, Heinzelmann Manuel T, Rupp Sebastian, van Duursen Majorie B M

机构信息

Amsterdam Institute for Life and Environment, Faculty of Science, Vrije Universiteit Amsterdam, the Netherlands.

Amsterdam Institute for Life and Environment, Faculty of Science, Vrije Universiteit Amsterdam, the Netherlands.

出版信息

Reprod Toxicol. 2025 Sep;136:108956. doi: 10.1016/j.reprotox.2025.108956. Epub 2025 Jun 6.

Abstract

The placenta plays a crucial role during pregnancy, yet effective in vitro models for placental toxicity testing are limited. In this study, a Transwell co-culture model combining BeWo b30 and HUVEC cells was developed and characterized, and used to study the transport and effects of polystyrene micro- and nanoplastics (PS-MNPs). After 72 h, 8.7 % of 50 nm and 1.2 % of 200 nm of fluorescent (F)PS-MNPs were detected on the basolateral side, while 1000 nm FPS-MNPs were undetectable. Confocal microscopy showed the uptake of 50 and 200 nm FPS-MNPs by the BeWo b30 and HUVEC cell layer, whereas the 1000 nm FPS-MNPs were only found within the BeWo b30 cell layer. Exposure to PS-MNPs (sizes of 50, 200 and 1000 nm at concentrations of 1-10 µg/mL) did not result in an effect on mitochondrial activity, oxidative stress and gene expression of several functional markers and steroidogenic enzymes. However, LC/MS-MS analysis of the culture media showed a decrease of 17 % in the level of 17-alpha-estradiol after 72-hour exposure to 1 µg/mL 50 nm PS-MNPs compared to vehicle control. Overall, our data showed limited effects of PS-MNPs on placental cell function in vitro, but FPS-MNPs were internalized and detected on the basolateral side in the co-culture. This warrants further studies on effects of MNPs on placental cell function, and particularly steroidogenesis, to assess the potential effects of MNPs during pregnancy.

摘要

胎盘在孕期发挥着关键作用,但用于胎盘毒性测试的有效体外模型却很有限。在本研究中,构建并表征了一种将BeWo b30细胞和人脐静脉内皮细胞(HUVEC)相结合的Transwell共培养模型,并用于研究聚苯乙烯微塑料和纳米塑料(PS-MNPs)的转运及影响。72小时后,在基底外侧检测到50纳米荧光(F)PS-MNPs的8.7%以及200纳米的1.2%,而1000纳米的FPS-MNPs未被检测到。共聚焦显微镜显示BeWo b30细胞层和HUVEC细胞层摄取了50和200纳米的FPS-MNPs,而1000纳米的FPS-MNPs仅在BeWo b30细胞层内被发现。暴露于PS-MNPs(尺寸为50、200和1000纳米,浓度为1 - 10微克/毫升)对线粒体活性、氧化应激以及几种功能标志物和类固醇生成酶的基因表达没有影响。然而,对培养基的液相色谱/质谱联用(LC/MS-MS)分析显示,与溶剂对照相比,在暴露于1微克/毫升50纳米PS-MNPs 72小时后,17-α-雌二醇水平下降了17%。总体而言,我们的数据表明PS-MNPs在体外对胎盘细胞功能的影响有限,但FPS-MNPs被内化并在共培养的基底外侧被检测到。这需要进一步研究MNPs对胎盘细胞功能尤其是类固醇生成的影响,以评估MNPs在孕期的潜在影响。

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