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在斑马鱼胚胎发育过程中利用蛋白质和肽降低纳米银-聚乙烯吡咯烷酮的毒性

Reduction in Toxicity of Nano-Ag-Polyvinyl-pyrrolidone Using Proteins and Peptides during Zebrafish Embryogenesis.

作者信息

Kim Soon Seok, Lee Jin Ah, Yeo Min-Kyeong

机构信息

Department of Environmental Science and Engineering, College of Engineering, Kyung Hee University, 1732 Deogyeong-daero, Giheung-gu, Yongin-si, Gyeonggi-do Seoul 17104, Korea.

出版信息

Nanomaterials (Basel). 2019 Aug 27;9(9):1210. doi: 10.3390/nano9091210.

Abstract

cells reduce the toxicity of silver nanomaterials to zebrafish () embryos. In this study, we investigated whether protein (HP) and basal disc peptide (Hym176) materials reduce nano-Ag-polyvinylpyrrolidone (N-Ag-PVP) toxicity during embryogenesis of the nanosensitive organism zebrafish. Protein (HP) was extracted from , and peptide (Hym176) was extracted from the hydra basal disc, which is attractive to nanomaterials and related to the immune system. The experimental conditions were exposure to N-Ag-PVP, HP, N-Ag-PVP+HP, Hym176, or N-Ag-PVP+Hym176 during embryo development. N-Ag-PVP+HP group showed lower toxicity than N-Ag-PVP group. In addition, in the N-Ag-PVP+HP group formed aggregated nanomaterials (≥200 nm size) through electrostatic bonding. In the gene expression profile, HP group differed in gene expression profile compared the other experimental groups and it was no genetic toxicity. HP showed a tendency to reduce side effects and abnormal gene expression produced by N-Ag-PVP with no evidence of inherent toxicity. Considering the potential nanotoxicity effects of released nanomaterials on the ecosystem, the reduction of nanotoxicity observed with HP natural materials should be regarded with great interest in terms of the overall health of the ecosystem.

摘要

细胞可降低银纳米材料对斑马鱼胚胎的毒性。在本研究中,我们调查了水蛭蛋白(HP)和水螅基盘肽(Hym176)材料是否能在对纳米材料敏感的生物体斑马鱼胚胎发育过程中降低纳米银-聚乙烯吡咯烷酮(N-Ag-PVP)的毒性。水蛭蛋白(HP)从水蛭中提取,肽(Hym176)从水螅基盘提取,水螅基盘对纳米材料具有吸引力且与免疫系统有关。实验条件为在胚胎发育期间暴露于N-Ag-PVP、HP、N-Ag-PVP+HP、Hym176或N-Ag-PVP+Hym176。N-Ag-PVP+HP组显示出比N-Ag-PVP组更低的毒性。此外,在N-Ag-PVP+HP组中,通过静电结合形成了聚集的纳米材料(尺寸≥200 nm)。在基因表达谱方面,HP组与其他实验组相比基因表达谱不同,且无遗传毒性。HP显示出降低N-Ag-PVP产生的副作用和异常基因表达的趋势,且无内在毒性证据。考虑到释放的纳米材料对生态系统的潜在纳米毒性影响,就生态系统的整体健康而言,HP天然材料观察到的纳米毒性降低应引起极大关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01a2/6780337/a4acfc6691fd/nanomaterials-09-01210-g001.jpg

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