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在 Pb 诱导下金针菇(Flammulina velutipes)子实体中纳米金的生物合成。

Biosynthesis of gold nanoparticles in the fruiting body of enoki mushrooms (Flammulina velutipes) under Pb induction.

机构信息

School of Life Science, Changchun Normal University, Changchun, China.

Institute of Science, Technology and Innovation, Changchun Normal University, Changchun, China.

出版信息

IET Nanobiotechnol. 2023 Apr;17(2):61-68. doi: 10.1049/nbt2.12104. Epub 2022 Nov 19.

Abstract

Fungi can produce many compounds, such as proteins, enzymes, amino acids, and polysaccharides, which are internalised and enriched for metals, and are widely used as reducing and stabilising agents for the biosynthesis of gold nanoparticles (Au NPs). Almost all fungal sources used in the synthesis of the Au NPs are in the form of cell filtrates or mycelial suspensions. However, the culture of cell-free fungal filtrate and mycelium is not comparable to the propagation of fungal substrates in input and operation. Here, we evaluated in vivo biosynthesis of Au NPs in enoki mushrooms (Flammulina velutipes). HAuCl was reduced in the fruiting body of the enoki mushrooms via induction by Pb , resulting in the generation of Au NPs. We then employed UV-Vis absorption spectroscopy, Transmission Electron Microscope, and Energy Dispersive Spectrometer to characterise various shapes of the Au NPs. The elemental analysis indicated that the Au NPs were mainly concentrated in organelles of the stalk and cap cells. We also demonstrated that 0.3-0.5 mM HAuCl was the optimal stress treatment concentration based on the changes in physiological indicators of the enoki mushrooms. This work reveals that fungi can be utilised well as nanomaterial bioreactors.

摘要

真菌可以产生许多化合物,如蛋白质、酶、氨基酸和多糖,这些化合物可以将金属内化并富集,并且被广泛用作金纳米粒子(Au NPs)生物合成的还原剂和稳定剂。几乎所有用于合成 Au NPs 的真菌来源都是细胞滤液或菌丝悬浮液的形式。然而,无细胞真菌滤液和菌丝的培养与真菌基质在输入和操作方面的繁殖是不可比的。在这里,我们评估了金针菇(Flammulina velutipes)体内 Au NPs 的生物合成。HAuCl 通过 Pb 的诱导在金针菇的子实体中被还原,从而产生 Au NPs。然后,我们采用紫外-可见吸收光谱、透射电子显微镜和能量色散光谱对各种形状的 Au NPs 进行了表征。元素分析表明,Au NPs 主要集中在菌柄和菌盖细胞的细胞器中。我们还证明,基于金针菇生理指标的变化,0.3-0.5 mM HAuCl 是最佳的应激处理浓度。这项工作表明,真菌可以很好地用作纳米材料生物反应器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d44f/10116022/0837fbd63756/NBT2-17-61-g007.jpg

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