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暴露于未掺杂、氮掺杂和氮硫共掺杂碳量子点后,早期斑马鱼(Danio rerio)的诱导毒性及其行为分析。

Induced toxicity in early-life stage zebrafish (Danio rerio) and its behavioral analysis after exposure to non-doped, nitrogen-doped and nitrogen, sulfur-co doped carbon quantum dots.

机构信息

Laboratory of Zoology, Biological Applications and Technology Department, University of Ioannina, 45110, Greece.

Laboratory of Analytical Chemistry, Department of Chemistry, University of Ioannina, 45110, Greece.

出版信息

Environ Toxicol Pharmacol. 2020 Oct;79:103426. doi: 10.1016/j.etap.2020.103426. Epub 2020 May 28.

DOI:10.1016/j.etap.2020.103426
PMID:32473422
Abstract

In this study, the effects of doping of CQDs with alternative functional groups (dopants) were evaluated through embryonic development of zebrafish (Danio rerio). The CQDs were synthesized using simple and low-cost sources: Non-doped (citric acid was used as the carbon source), nitrogen-doped (N-doped) and nitrogen, sulfur-co-doped (N,S-doped). The CQDs induced significant toxicity to zebrafish (>150 μg/mL) and the toxic effects were dose-dependent. The N,S-doped CQDs were the most toxic (LD50 = 149.92 μg/mL), followed by the N-doped CQDs (LD50 = 399.95 μg/mL) while the non-doped CQDs were the least toxic (LD50 = 548.48 μg/mL) of the three. The growth rate (GR) was affected following the toxicity pattern (GR<GR<GR <GR), which, in turn, greatly depends on the type of dopant. Morphological malformations, such as pericardial edema, yolk sac edema, tail and spinal curvature were observed to zebrafish embryos as the toxicity, concentration and exposure time to the nanomaterial increased. Behavioral analysis showed that locomotor activity increases as the toxicity of the nanomaterial rises. The differences in toxicity, growth rate and malfunctions of CQDs were attributed to their doping with different heteroatoms. The N,S-doped CQDs, unequivocally, exhibited the most pronounced effects.

摘要

在这项研究中,通过斑马鱼(Danio rerio)胚胎发育来评估掺杂不同官能团(掺杂剂)的 CQDs 的影响。使用简单且低成本的来源合成 CQDs:未掺杂(柠檬酸用作碳源)、氮掺杂(N 掺杂)和氮、硫共掺杂(N,S 掺杂)。CQDs 对斑马鱼有明显的毒性(>150μg/mL),且毒性作用呈剂量依赖性。N,S 掺杂的 CQDs 毒性最大(LD50=149.92μg/mL),其次是 N 掺杂的 CQDs(LD50=399.95μg/mL),而未掺杂的 CQDs 毒性最小(LD50=548.48μg/mL)。在三种 CQDs 中,生长率(GR)受毒性模式的影响(GR<GR<GR <GR),这反过来又极大地取决于掺杂剂的类型。随着毒性、浓度和暴露时间的增加,观察到斑马鱼胚胎出现心包水肿、卵黄囊水肿、尾巴和脊柱弯曲等形态畸形。行为分析表明,随着纳米材料毒性的增加,运动活性增加。CQDs 的毒性、生长率和功能障碍的差异归因于它们掺杂了不同的杂原子。N,S 掺杂的 CQDs 表现出最明显的影响。

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