Nanoplastics increase in vitro oestrogenic activity of neurotherapeutic drugs.

IF 1.7 4区 医学 Q3 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
Lucija Božičević, Valerije Vrček, Nikolina Peranić, Nikolina Kalčec, Ivana Vinković Vrček
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引用次数: 0

Abstract

Environmental pollution with plastic nanoparticles (PNPs) has rendered hazard assessment of unintentional human exposure to neurotherapeutic drugs through contaminated water and food ever more complicated. Due to their small size, PNPs can easily enter different cell types and cross different biological barriers, while their high surface-to-volume ratio enables higher adsorption of chemicals. This is how PNPs take the role of a Trojan horse as they enhance bioaccumulation of many different pollutants. One of the health concerns related to water pollution with neurotherapeutic drugs is endocrine disruption, already evidenced for the anticonvulsant drug carbamazepine (Cbz) and antidepressant fluoxetine (Flx). Our study aimed to evaluate endocrine disrupting effects of Cbz and Flx in mixtures with polystyrene nanoparticles (PSNPs) using the in vitro luciferase assay to measure oestrogen receptor activity in T47D-KBluc cells treated with Cbz-PSNPs or Flx-PSNPs mixtures and compare it with the activities observed in cells treated with individual mixture components (Cbz, Flx, or PSNPs). Dose ranges used in the study were 0.1-10 mg/L, 1-100 µmol/L, and 0.1-10 µmol/L for PSNPs, Cbz, and Flx, respectively. Our findings show that none of the individual components activate oestrogen receptors, while the mixtures induce oestrogen receptor activity starting with 0.1 mg/L for PSNPs, 10 µmol/L for Cbz, and 0.5 µmol/L for Flx. This is the first study to evidence that PSNPs increase oestrogen receptor activity induced by neurotherapeutic drugs at their environmentally relevant concentrations and calls for urgent inclusion of complex mixtures in health hazard assessments to inform regulatory response.

纳米塑料增加了神经治疗药物的体外雌激素活性。
塑料纳米粒子(PNPs)造成的环境污染使人类通过受污染的水和食物无意接触神经治疗药物的危害评估变得更加复杂。由于体积小,PNPs 很容易进入不同类型的细胞,穿过不同的生物屏障,而其高表面积比又能吸附更多的化学物质。这就是 PNPs 如何扮演特洛伊木马角色的原因,因为它们能增强许多不同污染物的生物累积性。与神经治疗药物水污染有关的健康问题之一是内分泌干扰,抗惊厥药物卡马西平(Cbz)和抗抑郁药物氟西汀(Flx)已经证明了这一点。我们的研究旨在评估 Cbz 和 Flx 与聚苯乙烯纳米颗粒(PSNPs)混合物的内分泌干扰效应,采用体外荧光素酶测定法测量用 Cbz-PSNPs 或 Flx-PSNPs 混合物处理的 T47D-KBluc 细胞中雌激素受体的活性,并将其与用单个混合物成分(Cbz、Flx 或 PSNPs)处理的细胞中观察到的活性进行比较。研究中 PSNPs、Cbz 和 Flx 的剂量范围分别为 0.1-10 mg/L、1-100 µmol/L 和 0.1-10 µmol/L。我们的研究结果表明,单个成分都不能激活雌激素受体,而混合物则能诱导雌激素受体活性,PSNPs 为 0.1 毫克/升,Cbz 为 10 微摩尔/升,Flx 为 0.5 微摩尔/升。这是第一项证明 PSNPs 在环境相关浓度下会增加神经治疗药物诱导的雌激素受体活性的研究,并呼吁将复杂混合物紧急纳入健康危害评估,以便为监管对策提供信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Arhiv Za Higijenu Rada I Toksikologiju-Archives of Industrial Hygiene and Toxicology
Arhiv Za Higijenu Rada I Toksikologiju-Archives of Industrial Hygiene and Toxicology PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH-TOXICOLOGY
CiteScore
3.50
自引率
4.80%
发文量
26
审稿时长
6-12 weeks
期刊介绍: Archives of Industrial Hygiene and Toxicology (abbr. Arh Hig Rada Toksikol) is a peer-reviewed biomedical scientific quarterly that publishes contributions relevant to all aspects of environmental and occupational health and toxicology.
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