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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Gold nanoparticles disrupt zebrafish eye development and pigmentation
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Gold nanoparticles disrupt zebrafish eye development and pigmentation

机译:金纳米颗粒破坏斑马鱼的眼睛发育和色素沉着

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摘要

Systematic toxicological study is still required to fully understand the hazard potentials of gold nanoparticles (AuNPs). Because their biomedical applications are rapidly evolving, we investigated developmental toxicity of AuNPs in an in vivo embryonic zebrafish model at exposure concentration ranges from 0.08 to 50 mg/l. Exposure of zebrafish embryos to 1.3 nm AuNPs functionalized with a cationic ligand, N,N,N-trimethylammoniumethanethiol (TMAT-AuNPs), resulted in smaller malpigmented eyes. We determined that TMAT-AuNPs caused a significant increase of cell death in the eye, which was correlated with an increase in gene expression of p53 and bax. Expression patterns of key transcription factors regulating eye development (pax6a, pax6b, otx2, and rx1) and pigmentation (sox10) were both repressed in a concentration- dependent manner in embryos exposed to TMAT-AuNPs. Reduced spatial localization of pax6a, rx1, sox10, and mitfa was observed in embryos by whole-mount in situ hybridization. The swimming behavior of embryos exposed to sublethal concentrations of TMAT-AuNPs showed hypoactivity, and embryos exhibited axonal growth inhibition. Overall, these results demonstrated that TMAT-AuNPs disrupt the progression of eye development and pigmentation that continues to behavioral and neuronal damage in the developing zebrafish.
机译:为了充分了解金纳米颗粒(AuNPs)的潜在危害,仍需要进行系统的毒理学研究。因为它们的生物医学应用正在迅速发展,所以我们在暴露浓度为0.08至50 mg / l的体内胚胎斑马鱼模型中研究了AuNPs的发育毒性。斑马鱼胚胎暴露于1.3 nm AuNPs(经阳离子配体N,N,N-三甲基铵乙硫醇(TMAT-AuNPs)官能化)后,眼睛变得更小。我们确定,TMAT-AuNPs引起眼睛细胞死亡的显着增加,这与p53和bax基因表达的增加有关。在暴露于TMAT-AuNPs的胚胎中,调节眼睛发育的关键转录因子(pax6a,pax6b,otx2和rx1)和色素沉着(sox10)的表达模式均以浓度依赖的方式被抑制。通过整装原位杂交在胚胎中观察到减少的pax6a,rx1,sox10和mitfa的空间定位。暴露于亚致死浓度的TMAT-AuNPs的胚胎的游泳行为表现出机能减退,而胚胎则表现出轴突生长抑制作用。总体而言,这些结果表明,TMAT-AuNPs破坏了眼睛发育和色素沉着的进展,而色素沉着继续在发育中的斑马鱼中行为和神经元造成损害。

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