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新型 TiO2 光催化剂在低强度 UVA 光下对串珠镰孢霉和黑曲霉的消毒机制的新见解。

New insight into the disinfection mechanism of Fusarium monoliforme and Aspergillus niger by TiO photocatalyst under low intensity UVA light.

机构信息

Hybrid Nanostructure and Nanocomposite Laboratory, National Nanotechnology Center (NANOTEC), National Science and Technology Development Agency (NSTDA), Pathumthani 12120, Thailand.

Hybrid Nanostructure and Nanocomposite Laboratory, National Nanotechnology Center (NANOTEC), National Science and Technology Development Agency (NSTDA), Pathumthani 12120, Thailand.

出版信息

J Photochem Photobiol B. 2017 Nov;176:17-24. doi: 10.1016/j.jphotobiol.2017.09.014. Epub 2017 Sep 15.

Abstract

Titanium dioxide (TiO photocatalytic reaction has great potential for the disinfection of harmful pathogens. However, the disinfection mechanisms of TiO photocatalysis are not yet well-known for fungi and protozoa. In this work, the photocatalytic disinfection mechanism of Fusarium monoliforme and Aspergillus niger under low intensity UVA light (365nm, <10W/m) was studied at the ultrastructural level. Photocatalytic treatments showed that the photocatalytic oxidation of 10% TiO based paint was efficacious in the complete disinfection of F. monoliforme under low intensity UVA light. No growth of F. monoliforme was observed on agar plate in the subsequent dark. Transmission electron microscopy (TEM) of F. monoliforme exposed to TiO photocatalysis treatment showed a distinct damage to electron-dense outer cell wall, but not to an underlying electron-transparent layer cell wall. The TEM image revealed that the UVA-light only did not damage cell wall, cell membrane and cellular organelles. Unlike, A. niger was more sensitive to UVA-light. Serious destructions of cell membrane and cellular organelles were shown in A. niger exposed to UVA-light only and photocatalytic treatments. However, morphological change in A. niger cell wall was only observed in photocatalytic treatment. Changes to the outermost melanin like layer and cell wall of A. niger spore due to photocatalytic treatment were greatly apparent while the intracellular organelles of A. niger spore were not affected. Therefore, regrowth of A. niger on agar plate was expected from the germination of A. niger spore in the subsequent dark. These observations give a better understanding of the photocatalytic disinfection mechanism toward fungi.

摘要

二氧化钛(TiO)光催化反应在有害病原体的消毒方面具有巨大潜力。然而,TiO 光催化对真菌和原生动物的消毒机制尚不清楚。在这项工作中,在低强度 UVA 光(365nm,<10W/m)下,研究了单端孢霉烯和黑曲霉的光催化消毒机制。光催化处理表明,低强度 UVA 光下,基于 10%TiO 的油漆的光催化氧化在完全消毒单端孢霉烯方面是有效的。在随后的黑暗中,在琼脂平板上未观察到单端孢霉烯的生长。暴露于 TiO 光催化处理的单端孢霉烯的透射电子显微镜(TEM)显示出电子致密的外壁明显受损,但电子透明层细胞壁没有受损。TEM 图像显示,UVA 光仅不会损坏细胞壁、细胞膜和细胞细胞器。相比之下,黑曲霉对 UVA 光更敏感。仅暴露于 UVA 光和光催化处理的黑曲霉中,细胞膜和细胞细胞器受到严重破坏。然而,在光催化处理中仅观察到黑曲霉细胞壁的形态变化。由于光催化处理,黑曲霉孢子最外层的黑色素样层和细胞壁发生了明显变化,而黑曲霉孢子的细胞内细胞器没有受到影响。因此,预计在随后的黑暗中,黑曲霉孢子的萌发会导致黑曲霉在琼脂平板上的再生。这些观察结果使我们对真菌的光催化消毒机制有了更好的理解。

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