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采用形态学、酶学和代谢方法阐明暴露于 h-和α-三氧化钼纳米颗粒的真菌中的细胞凋亡样死亡。

A morphological, enzymatic and metabolic approach to elucidate apoptotic-like cell death in fungi exposed to h- and α-molybdenum trioxide nanoparticles.

机构信息

Facoltà di Bioscenze e Tecnologie Agroalimentari ed ambientali, Università degli Studi di Teramo, Via R. Balzarini 1, 64100 Teramo, Italy.

出版信息

Nanoscale. 2018 Nov 15;10(44):20702-20716. doi: 10.1039/c8nr06470a.

Abstract

The present study compares for the first time the effects of h-MoO3 and α-MoO3 against two fungal strains: Aspergillus niger and Aspergillus flavus. The h-MoO3 nanoparticles were more toxic to both fungi than α-MoO3. The toxic effects of h-MoO3 were more pronounced toward A. flavus, which presented a growth inhibition of 67.4% at 200 mg L-1. The presence of the nanoparticles affected drastically the hyphae morphology by triggering nuclear condensation and compromising the hyphae membrane. Further analysis of the volatile organic compounds (VOCs) produced by both fungi in the presence of the nanomaterials indicated important metabolic changes related to programmed cell death. These nanomaterials induced the production of specific antifungal VOCs, such as β-Elemene and t-Cadinol, by the fungi. The production of essential enzymes involved in fungal metabolism, such as acid phosphatase, naphthol-As-BI-phosphohydrolase, β-galactosidase, β-glucosidase and N-acetyl-β-glucosaminidase, reduced significantly in the presence of the nanomaterials. The changes in enzymatic production and VOCs corroborate the fact that these nanoparticles, especially h-MoO3, exert changes in the fungal metabolism, triggering apoptotic-like cell death responses in these fungi.

摘要

本研究首次比较了 h-MoO3 和 α-MoO3 对两种真菌菌株(黑曲霉和黄曲霉)的影响。h-MoO3 纳米颗粒对两种真菌的毒性都比 α-MoO3 更强。h-MoO3 对黄曲霉的毒性更为明显,在 200mg/L 时生长抑制率达到 67.4%。纳米颗粒的存在通过触发核浓缩和破坏菌丝膜,极大地影响了菌丝的形态。进一步分析两种真菌在纳米材料存在下产生的挥发性有机化合物(VOCs)表明,与程序性细胞死亡相关的代谢发生了重要变化。这些纳米材料诱导真菌产生特定的抗真菌 VOCs,如β-榄香烯和 t-雪松醇。参与真菌代谢的必需酶,如酸性磷酸酶、萘酚-AS-BI-磷酸水解酶、β-半乳糖苷酶、β-葡萄糖苷酶和 N-乙酰-β-葡萄糖胺酶的产生在纳米材料存在的情况下显著减少。酶产生和 VOCs 的变化证实了这些纳米颗粒,特别是 h-MoO3,会改变真菌的代谢,引发这些真菌发生类似凋亡的细胞死亡反应。

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