Brun Nadja R, Beenakker Margreet M T, Hunting Ellard R, Ebert Dieter, Vijver Martina G
a Institute of Environmental Sciences (CML) , Leiden University , Leiden , The Netherlands.
b Department of Environmental Sciences , University of Basel , Basel , Switzerland.
Nanotoxicology. 2017 Oct;11(8):1059-1069. doi: 10.1080/17435390.2017.1391344. Epub 2017 Oct 30.
Nanoplastic debris is currently expected to be ubiquitously distributed in aquatic environments and an emerging environmental issue affecting organisms across trophic levels. While ingestion of particles receives most attention, other routes of uptake and cellular accumulation remain unexplored. Here, the planktonic filter feeder Daphnia magna was used to track routes of uptake and target tissues of polystyrene nanoparticles (PSNPs). A sublethal concentration of 5 mg L fluorescent PSNPs (25 nm) was used to monitor accumulation in adult animals as well as their embryos in the open brood pouch. A time series throughout embryonic development within the brood pouch revealed accumulation of PSNP in or on lipophilic cells in the early stages of embryonic development while the embryo is still surrounded by a chorion and before the beginning of organogenesis. In contrast, PSNP particles were neither detected in the gut epithelium nor in lipid droplets in adults. An ex vivo exposure of embryos to PSNP demonstrated a similar accumulation of PSNP in or on lipophilic cells, illustrating the likelihood of brood pouch-mediated PSNP uptake by embryos. By demonstrating embryo PSNP uptake via the brood pouch, data presented here give novel insights in bioaccumulation of nanoparticles and likely other lipophilic contaminants. Since this uptake route can occur within a diverse array of aquatic organisms, this study warrants consideration of brood pouch-mediated accumulation in efforts studying the hazards and risks of nanoparticle contamination.
目前预计纳米塑料碎片在水生环境中广泛分布,是一个影响不同营养级生物的新出现的环境问题。虽然颗粒摄入受到最多关注,但其他摄取途径和细胞积累仍未得到探索。在此,使用浮游滤食性动物大型溞来追踪聚苯乙烯纳米颗粒(PSNPs)的摄取途径和靶组织。使用5毫克/升的亚致死浓度荧光PSNPs(25纳米)来监测成年动物及其开放育儿袋中的胚胎中的积累情况。育儿袋内整个胚胎发育过程的时间序列显示,在胚胎发育早期,当胚胎仍被绒毛膜包围且器官发生开始之前,PSNP在亲脂性细胞内或细胞上积累。相比之下,在成年动物的肠道上皮或脂滴中均未检测到PSNP颗粒。胚胎离体暴露于PSNP表明,PSNP在亲脂性细胞内或细胞上有类似的积累,这说明了育儿袋介导胚胎摄取PSNP的可能性。通过证明胚胎通过育儿袋摄取PSNP,本文提供的数据为纳米颗粒以及可能的其他亲脂性污染物的生物积累提供了新的见解。由于这种摄取途径可能发生在多种水生生物中,本研究值得在研究纳米颗粒污染的危害和风险时考虑育儿袋介导的积累。