Application of the novel Cu-resistant fungus Aspergillus niger A3 in bioremoval of Cu-NPs from its aqueous solutions

Q2 Pharmacology, Toxicology and Pharmaceutics OpenNano Pub Date : 2023-09-12 DOI:10.1016/j.onano.2023.100187
Osama M. Darwesh , Marwa A. Shalaby , Mohamed M. Gharieb , Ibrahim A. Matter
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Abstract

Copper is an essential element for the metabolism of plants and animals, and has wide applications in the agricultural and industrial sectors. On the other hand, copper nanoparticles (Cu-NPs) have become widely used for research and application, which increases the chances of its spread and potential environmental exposure to this element. Therefore, in this study, the bioremediation bioreactor for the removing of Cu-NPs based on a fungal strain (Aspergillus niger) was introduced. A. niger isolate MR3 with accession No. OP861660.1 after molecular identification was selected as a promising isolate for copper resistance and Cu-NPs bioremoval. The impact of biomass age, pH, and contact time was investigated in order to establish the ideal biosorption conditions. The results showed a high Cu-NPs removal via two-days-old A. niger biomass, where the bioremoval percentage reached 66.8 % at pH value 7 after a contact time of 10 min. Dead biomass of A. niger achieved the highest Cu-NPs removal rate, eliminating 68.2 % compared with both living and alginate beads-immobilized biomass. Thus, bioremoval experiments using dead biomass were performed in a bioreactor for sequential removal of Cu-NPs. The bioremoval capacity reached 97 % under optimized conditions from synthetic wastewater after a contacting time of 10 min. Thus, the present work considered the first report for bioremediation of Cu-NPs into bioreactor.

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新型抗铜真菌黑曲霉A3在水中生物去除Cu-NPs中的应用
铜是动植物代谢的重要元素,在农业和工业部门有着广泛的应用。另一方面,铜纳米颗粒(Cu-NPs)已被广泛用于研究和应用,这增加了其传播的机会,并增加了其潜在的环境暴露于该元素的可能性。因此,在本研究中,介绍了一种基于真菌菌株(黑曲霉)的生物修复生物反应器,用于去除Cu NPs。经分子鉴定后,黑曲霉分离物MR3(登录号OP861660.1)被选为耐铜和Cu NPs生物去除的有前途的分离物。研究了生物量年龄、pH值和接触时间的影响,以建立理想的生物吸附条件。结果表明,通过两天龄的黑曲霉生物质对Cu NPs的去除率很高,在接触时间为10分钟后,pH值为7时,生物去除率达到66.8%。黑曲霉的死生物量对Cu NPs的去除率最高,与活生物和藻酸盐珠固定化生物量相比,去除率为68.2%。因此,在生物反应器中使用死生物质进行生物去除实验,以顺序去除Cu NP。在优化的条件下,经10分钟的接触,合成废水的生物去除率达到97%。因此,本工作考虑了将Cu NPs生物修复到生物反应器中的第一份报告。
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来源期刊
OpenNano
OpenNano Medicine-Pharmacology (medical)
CiteScore
4.10
自引率
0.00%
发文量
63
审稿时长
50 days
期刊介绍: OpenNano is an internationally peer-reviewed and open access journal publishing high-quality review articles and original research papers on the burgeoning area of nanopharmaceutics and nanosized delivery systems for drugs, genes, and imaging agents. The Journal publishes basic, translational and clinical research as well as methodological papers and aims to bring together chemists, biochemists, cell biologists, material scientists, pharmaceutical scientists, pharmacologists, clinicians and all others working in this exciting and challenging area.
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