Ao Bo, He Fei, Lv Jing, Tu Junming, Tan Zheng, Jiang Honglin, Shi Xiaoshan, Li Jingjing, Hou Jianjun, Hu Yuanliang, Xia Xian
Hubei Key Laboratory of Edible Wild Plants Conservation and Utilization, Huangshi Key Laboratory of Lake Environmental Protection and Sustainable Utilization of Resources, Hubei Engineering Research Center of Characteristic Wild Vegetable Breeding and Comprehensive Utilization Technology, Hubei Normal University, Huangshi, China.
Hubei Provincial Center for Disease Control and Prevention, Wuhan, China.
Front Microbiol. 2022 Oct 5;13:1020179. doi: 10.3389/fmicb.2022.1020179. eCollection 2022.
Tellurite [Te(IV)] is a high-toxicity metalloid. In this study, a fungus with high Te(IV) resistance was isolated. Strain AB1 could efficiently reduce highly toxic Te(IV) to less toxic Te(0). The reduced products formed rod-shaped biogenetic Te(0) nanoparticles (Bio-TeNPs) intracellularly. Further TEM-element mapping, FTIR, and XPS analysis showed that the extracted Bio-TeNPs ranged from 100 to 500 nm and consisted of Te(0), proteins, lipids, aromatic compounds, and carbohydrates. Moreover, Bio-TeNPs exhibited excellent antibacterial ability against , , , and according to inhibition zone tests. Further growth and live/dead staining experiments showed that . and . were significantly inhibited by Bio-TeNPs, and cells were broken or shriveled after treatment with Bio-TeNPs based on SEM observation. Additionally, the antioxidant and cytotoxicity tests showed that the Bio-TeNPs exhibited excellent antioxidant capacity with no cytotoxicity. All these results suggested that strain AB1 showed great potential in bioremediation and Bio-TeNPs were excellent antibacterial nanomaterials with no cytotoxicity.
亚碲酸盐[Te(IV)]是一种具有高毒性的类金属。在本研究中,分离出了一种对Te(IV)具有高抗性的真菌。菌株AB1能够有效地将高毒性的Te(IV)还原为低毒性的Te(0)。还原产物在细胞内形成棒状的生物源Te(0)纳米颗粒(生物碲纳米颗粒,Bio-TeNPs)。进一步的透射电子显微镜-元素映射、傅里叶变换红外光谱和X射线光电子能谱分析表明,提取的Bio-TeNPs粒径范围为100至500 nm,由Te(0)、蛋白质、脂质、芳香族化合物和碳水化合物组成。此外,根据抑菌圈试验,Bio-TeNPs对[此处缺失具体细菌名称]表现出优异的抗菌能力。进一步的生长和活/死染色实验表明,[此处缺失具体内容]。[此处缺失具体细菌名称]受到Bio-TeNPs的显著抑制,并且基于扫描电子显微镜观察,用Bio-TeNPs处理后细胞破裂或皱缩。此外,抗氧化和细胞毒性测试表明,Bio-TeNPs表现出优异的抗氧化能力且无细胞毒性。所有这些结果表明,菌株AB1在生物修复方面具有巨大潜力,并且Bio-TeNPs是优异的无细胞毒性的抗菌纳米材料。