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CTAB 表面活性剂辅助和高 pH 值纳米制剂的氧化铜纳米颗粒表现出更大的细胞毒性和遗传毒性作用。

CTAB Surfactant Assisted and High pH Nano-Formulations of CuO Nanoparticles Pose Greater Cytotoxic and Genotoxic Effects.

机构信息

Department of Zoology, Khalsa College, Amritsar, Punjab, 143001, India.

Department of Physics, Khalsa College, Amritsar, Punjab, 143001, India.

出版信息

Sci Rep. 2019 Apr 10;9(1):5880. doi: 10.1038/s41598-019-42419-z.

Abstract

Toxicity of synthesized nanoparticles is the area of concern to all the researchers due to their possible health implications. Here we synthesized copper oxide nanoparticles (CuO NPs) without surfactant at pH value of 2, 7, 10 and with cetyletrimethylammoniumbromide (CTAB) surfactant at pH 7. Synthesized nanoparticles were characterized for various structural parameters including crystallite size, lattice parameters, strain, phase analysis using X-ray diffraction analysis, and morphological aspects have been analyzed using FESEM and HRTEM imaging. All the four nano-formulations were analyzed for their toxic potential using Allium cepa L. at three different concentrations (0.1, 0.01 and 0.001 g/100 ml). Cytological and genetic parameters including mitotic index, mitotic inhibition, aberrant cells, binucleated cells, micronucleated cells, chromosomal bridges, fragmentation, stickiness, laggards, vagrants, c-mitosis and disturbed spindle were analyzed. Our results revealed a dose dependent increase in cytotoxic parameters including decreased total dividing cells, mitotic index, and increased mitotic inhibition. Genotoxic parameters also increased at higher treatment concentrations including chromosomal aberrations and percent aberrant cells. The pH value at the time of particle synthesis has significant influence on the crystallite size and agglomeration as assessed by XRD, FESEM and HRTEM analysis. The NPs synthesized at pH 2 and 10 were found to be of smaller size and posed more toxic effects as compared to particles synthesized at neutral pH. On the other hand, CTAB assisted CuO NPs synthesized at pH 7 revealed even smaller crystallite sizes and thus boost the toxicity in all the parameters as compared to NPs synthesized without CTAB. The present study suggested an increase in toxic parameters of synthesized CuO NPs with respect to crystallite size which is pH dependent. Addition of CTAB at pH 7 decreased the crystallite as well as particle size and enhanced the toxic potential. Further studies are recommended to analyze the effect of surfactant addition in toxicological studies on CuO NPs.

摘要

由于合成纳米粒子可能对健康造成影响,其毒性是所有研究人员关注的领域。在这里,我们在 pH 值为 2、7、10 时不使用表面活性剂,在 pH 值为 7 时使用十六烷基三甲基溴化铵 (CTAB) 表面活性剂合成了氧化铜纳米粒子 (CuO NPs)。使用 X 射线衍射分析对合成纳米粒子的各种结构参数进行了表征,包括晶粒尺寸、晶格参数、应变、相分析,使用 FESEM 和 HRTEM 成像分析了形态方面。使用 Allium cepa L. 在三种不同浓度 (0.1、0.01 和 0.001 g/100 ml) 下对所有四种纳米制剂进行了毒性潜力分析。细胞学和遗传参数包括有丝分裂指数、有丝分裂抑制、异常细胞、双核细胞、微核细胞、染色体桥、断裂、粘性、滞后、流浪者、c-有丝分裂和纺锤体紊乱。我们的结果表明,细胞毒性参数随剂量增加而增加,包括总分裂细胞减少、有丝分裂指数降低和有丝分裂抑制增加。在较高的处理浓度下,遗传毒性参数也增加,包括染色体异常和异常细胞百分比增加。XRD、FESEM 和 HRTEM 分析表明,颗粒合成时的 pH 值对晶粒尺寸和团聚有显著影响。在 pH 值为 2 和 10 时合成的 NPs 尺寸较小,毒性作用较大,而在中性 pH 值下合成的 NPs 则较小。另一方面,在 pH 值为 7 时,用 CTAB 辅助合成的 CuO NPs 的晶粒尺寸更小,因此在所有参数中都比不用 CTAB 合成的 NPs 毒性更大。本研究表明,随着晶粒尺寸的增加,合成的 CuO NPs 的毒性参数增加,这取决于 pH 值。在 pH 值为 7 时添加 CTAB 可减小晶粒尺寸和颗粒尺寸,并增强毒性潜力。建议进行进一步研究,以分析在 CuO NPs 的毒理学研究中添加表面活性剂的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4810/6458183/0a9d3fd8e4d7/41598_2019_42419_Fig1_HTML.jpg

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