首页> 外文期刊>Aquatic Toxicology >Dietary CdSe/ZnS quantum dot exposure in estuarine fish: bioavailability, oxidative stress responses, reproduction, and maternal transfer.
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Dietary CdSe/ZnS quantum dot exposure in estuarine fish: bioavailability, oxidative stress responses, reproduction, and maternal transfer.

机译:河口鱼类饮食中CdSe / ZnS量子点的暴露:生物利用度,氧化应激反应,繁殖和母体转移。

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Continued development, use, and disposal of quantum dots (QDs) ensure their entrance into aquatic environments where they could pose a risk to biological organisms as whole nanoparticles or as degraded metal constituents. Reproductive Fundulus heteroclitus were fed a control diet with lecithin, diets containing 1 or 10 micro g of lecithin-encapsulated CdSe/ZnS QD/day, or a diet containing 5.9 micro g CdCl2/day for 85 days. Cadmium concentrations in liver, intestine, and eggs were quantified with inductively coupled plasma mass spectrometry. In fish fed 10 micro g QD/day, QDs or their degradation products traversed the intestinal epithelia and accumulated in the liver. Less than 0.01% of the QD's cadmium was retained in the liver or intestinal tissues. This compares to 0.9% and 0.5% of the cadmium in the intestine and liver, respectively of fish fed a CdCl2 diet. Cadmium was also detected in the eggs from parents fed 10 micro g QD/day. No significant changes in hepatic total glutathione, lipid peroxidation, or expression of genes involved in metal metabolism or oxidative stress were observed. While QDs in the diet are minimally bioavailable, unusual levels of vitellogenin transcription in male fish as well as declining fecundity require further investigation to determine if endocrine disruption is of environmental concern.
机译:量子点(QD)的持续开发,使用和处置可确保其进入水生环境,在此环境中,量子点可能会对整个整体纳米粒子或降解的金属成分构成威胁。生殖眼底异质胃饲喂卵磷脂对照日粮,日粮含1或10微克卵磷脂包囊的CdSe / ZnS QD /天或日粮5.9微克CdCl 2 /日,共85天。肝,肠和卵中的镉浓度通过电感耦合等离子体质谱法定量。在每天喂10微克QD的鱼中,QD或其降解产物横穿肠上皮并积累在肝脏中。少于0.01%的QD镉保留在肝脏或肠组织中。相比之下,饲喂CdCl 2 饲料的鱼的肠道和肝脏中的镉分别为0.9%和0.5%。每天喂10微克QD的父母的卵中也检测到镉。没有观察到肝总谷胱甘肽,脂质过氧化作用或金属代谢或氧化应激相关基因表达的显着变化。虽然日粮中的QD具有最低的生物利用度,但雄鱼中卵黄蛋白原转录的异常水平以及繁殖力下降仍需要进一步研究,以确定环境破坏内分泌是否令人关注。

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