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通过π-π 相互作用功能化的芘-PEG 多壁碳纳米管:斑马鱼胚胎中的毒理学评估。

Multi-walled carbon nanotubes functionalized with pyrene-PEG via π-π interactions: toxicological assessment in zebrafish embryos.

机构信息

Programa de Pós-Graduação em Biociências e Saúde (PPGBS), Universidade do Oeste de Santa Catarina (UNOESC), Joaçaba, SC, Brazil. Programa de Pós-Graduação em Ciências Fisiológicas (PPGCF), Universidade Federal do Rio Grande (FURG), Rio Grande, RS, Brazil.

出版信息

Nanotechnology. 2020 Nov 13;31(46):465103. doi: 10.1088/1361-6528/abae2f.

DOI:10.1088/1361-6528/abae2f
PMID:32857732
Abstract

Multi-walled carbon nanotubes (MWCNT) have many promising biological applications, even though functionalization is needed for better biocompatibility. Functionalization of MWCNT with polyethylene glycol (PEG) is a promising and widely studied approach, but the best PEGylation method is still under investigation. In this work, we have tested the biological implications of MWCNT functionalized via π-stacking with pyrene-PEG (MWCNT-Pyr-PEG) in zebrafish embryos. As Pyr toxicity is well documented and represents a major concern for the safety of the proposed approach, we have also tested the effects of the exposure to the isolated conjugate (Pyr-PEG). The resulting suspensions were stable in saline medium and well dispersed. Zebrafish embryos at 24 h post-fertilization (hpf) were dechorionated and randomly assigned to seven experimental groups (n = 50 per group): control, MWCNT-Pyr-PEG at 0.2, 2.0, and 20.0 mg l, and Pyr-PEG at the same concentrations, and exposures were performed in 96-well plates. Specimens were observed for heart rate, malformations, body length, mortality, traveled distance, and number of new movements. Heart rate was reduced in embryos exposed to any tested concentration of MWCNT-Pyr-PEG, while this effect was observed with Pyr-PEG from 2 mg l. The highest concentration of MWCNT-Pyr-PEG also led to increased occurrence of malformations, shortened body length and reduced traveled distance. The functionalization approach shows promise due to the stability in saline media, even though toxic effects were observed in the highest tested concentrations, being the MWCNT the main actors underlying these outcomes.

摘要

多壁碳纳米管 (MWCNT) 具有许多有前途的生物学应用,尽管需要功能化以提高生物相容性。MWCNT 与聚乙二醇 (PEG) 的功能化是一种很有前途且广泛研究的方法,但最佳的 PEGylation 方法仍在研究中。在这项工作中,我们测试了通过 π-堆积与芘-PEG 功能化的 MWCNT(MWCNT-Pyr-PEG)在斑马鱼胚胎中的生物学意义。由于 Pyr 的毒性已有充分记录,并且代表了所提出方法的安全性的主要关注点,我们还测试了暴露于分离的缀合物(Pyr-PEG)的影响。所得悬浮液在盐水中稳定且分散良好。受精后 24 小时的斑马鱼胚胎(hpf)去壳并随机分配到七个实验组(每组 50 个):对照组、MWCNT-Pyr-PEG 分别为 0.2、2.0 和 20.0 mg l,以及 Pyr-PEG 在相同浓度下,在 96 孔板中进行暴露。观察标本的心率、畸形、体长、死亡率、行进距离和新运动次数。暴露于任何测试浓度的 MWCNT-Pyr-PEG 的胚胎心率降低,而在 2 mg l 时观察到 Pyr-PEG 的这种作用。MWCNT-Pyr-PEG 的最高浓度也导致畸形发生率增加、体长缩短和行进距离减少。由于在盐水中的稳定性,该功能化方法显示出前景,尽管在最高测试浓度下观察到了毒性作用,但 MWCNT 是导致这些结果的主要因素。

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