Tocopherol-assisted magnetic Ag-Fe3O4-TiO2 nanocomposite for photocatalytic bacterial-inactivation with elucidation of mechanism and its hazardous level assessment with zebrafish model

光催化 斑马鱼 化学 氧化应激 细菌 纳米复合材料 生物膜 纳米材料 微生物学 环境化学 纳米技术 生物 材料科学 生物化学 催化作用 遗传学 基因
作者
Rajaiah Alexpandi,Gurusamy Abirami,Balaji Murugesan,Ravindran Durgadevi,Roshni Prithiviraj Swasthikka,Yurong Cai,Thennarasu Ragupathi,Arumugam Veera Ravi
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:442: 130044-130044 被引量:4
标识
DOI:10.1016/j.jhazmat.2022.130044
摘要

In recent years, many endeavours have been prompted with photocatalytic nanomaterials by the need to eradicate pathogenic microorganisms from water bodies. Herein, a tocopherol-assisted Ag-Fe3O4-TiO2 nanocomposite (TAFTN) was synthesized for photocatalytic bacterial inactivation. The prepared TAFTN became active under sunlight due to its narrowed bandgap, inactivating the bacterial contaminants via photo-induced ROS stress. The ROS radicals destroy bacteria by creating oxidative stress, which damages the cell membrane and cellular components such as nucleic acids and proteins. For the first time, the nano-LC-MS/MS-based quantitative proteomics reveals that the disrupted proteins are involved in a variety of cellular functions; the most of these are involved in the metabolic pathway, eventually leading to bacterial death during TAFTN-photocatalysis under sunlight. Furthermore, the toxicity analysis confirmed that the inactivated bacteria seemed to have no detrimental impact on zebrafish model, showing that the disinfected water via TAFTN-photocatalysis is enormously safe. Furthermore, the TAFTN-photocatalysis successfully killed the bacterial cells in natural seawater, indicating the consistent photocatalytic efficacy when recycled repeatedly. The results of this work demonstrate that the produced nanocomposite might be a powerful recyclable and sunlight-active photocatalyst for environmental water treatment.
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