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The Influence of Hydroxyapatite Nanoparticle Morphology on Embryonic Development in a Zebrafish Exposure Model

机译:斑马鱼暴露模型中羟基磷灰石纳米颗粒形态对胚胎发育的影响

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摘要

Nanomaterials are used in many different industries such as cosmetics, food, clothing, and electronics. There is increasing concern that exposure to nanoparticles (NPs) during pregnancy can adversely affect fetal development. It is well known that the size, charge, and chemistry of a nanoparticle can modulate embryological development. The role that particle morphology plays on early development, however, is still widely unknown. The present study aims to investigate the effect of hydroxyapatite nanoparticle (HANP) morphology on embryological development in a zebrafish exposure model. Four distinct HANP morphologies (dots, long rods, sheets, and fibers) were fabricated and characterized. Zebrafish embryos were exposed to HANPs (0-100 mg/L), and viability and developmental deformities were evaluated for up to 5 days post-fertilization (dpf). Malformations such as pericardial edema and axial curvature were apparent in embryos as early as 1 dpf, following exposure to the dot and fiber particles, and developed in embryos by 3 dpf in the sheet and long rod particle groups. Minimal death was observed in response to dot, long rod, and sheet particles (<= 25%), while fiber particles induced overwhelming toxicity (<= 60%) after 1 dpf, and complete toxicity during all subsequent time points. Collectively, these results suggest that nanoparticle morphology can significantly impact embryological development and should be a required consideration when designing nanomaterials for commercial use.
机译:纳米材料用于许多不同的行业,例如化妆品,食品,服装和电子产品。人们越来越担心怀孕期间接触纳米颗粒(NPs)会对胎儿发育产生不利影响。众所周知,纳米粒子的大小,电荷和化学性质可以调节胚胎发育。然而,粒子形态在早期发展中所起的作用仍然广为人知。本研究旨在调查斑马鱼暴露模型中羟基磷灰石纳米颗粒(HANP)形态对胚胎发育的影响。制作并表征了四种不同的HANP形态(点,长杆,薄片和纤维)。斑马鱼胚胎暴露于HANPs(0-100 mg / L),并在受精后(dpf)长达5天评估了生存力和发育畸形。暴露于点和纤维颗粒之后,早在1 dpf时,胚胎中就会出现心包水肿和轴向弯曲等畸形,在薄片和长杆颗粒组中,胚泡发展为3 dpf。观察到对点,长杆和片状颗粒(<= 25%)的响应最小化,而纤维颗粒在1 dpf后引起压倒性毒性(<= 60%),并且在所有后续时间点均具有完全毒性。总的来说,这些结果表明,纳米颗粒的形态可以显着影响胚胎学的发展,在设计用于商业用途的纳米材料时应成为必需的考虑因素。

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