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基于酪氨酸模板的双组分银纳米材料通过生成 ROS 表现出光致发光性能和多功能抗菌性能。

Tyrosine-Templated Dual-Component Silver Nanomaterials Exhibit Photoluminescence and Versatile Antimicrobial Properties through ROS Generation.

机构信息

Department of Chemistry, Indian Institute of Science Education and Research Bhopal, Bhopal Bypass Road, Bhopal 462066, Madhya Pradesh, India.

Department of Biological Sciences, Indian Institute of Science Education and Research Bhopal, Bhopal Bypass Road, Bhopal 462066, Madhya Pradesh, India.

出版信息

ACS Appl Mater Interfaces. 2021 Aug 11;13(31):36938-36947. doi: 10.1021/acsami.1c10520. Epub 2021 Jul 30.

Abstract

The role of small molecules in the preparation of metal nanomaterials generates considerable interest in the fields from materials science to interdisciplinary sciences. In this study, a small amino acid, l-tyrosine (Tyr), has been used as a ligand precursor for the preparation of silver nanomaterials (AgNMs) comprising a dual system: smaller silver nanoclusters (responsible exclusively for the photophysical properties) and larger silver nanoparticles (responsible exclusively for the antimicrobial properties). The luminescent properties of this AgNM system substantiate the role played by Tyr as a capping and a reducing agent outside the protein environment. An interesting feature of this report is the promising antimicrobial properties of the AgNMs against , , , and cell lines. The importance of this work is that this investigation demonstrates the combating ability of our AgNM system against pathogenic strains ( and ) as well. Moreover, the mechanistic aspects of the antimicrobial activity of the AgNMs were elucidated using various methods, such as propidium iodide staining, monitoring reactive oxygen species generation, leakage of proteins, DNA cleavage, etc. We propose that AgNM-mediated cytotoxicity in stems from the generation of singlet oxygen (O) species that create oxidative stress, disrupting the cell membrane and thereby resulting in leakage of proteins from the cells. This study can pave the way toward elucidating the role of a small molecule, Tyr, in the formation of NMs and describes the use of new NMs in potential antimicrobial applications.

摘要

小分子在金属纳米材料制备中的作用引起了从材料科学到跨学科科学等领域的极大兴趣。在这项研究中,一种小的氨基酸 l-酪氨酸(Tyr)被用作银纳米材料(AgNMs)制备的配体前体,该 AgNMs 包含一个双重系统:较小的银纳米团簇(专门负责光物理性质)和较大的银纳米颗粒(专门负责抗菌性质)。该 AgNM 系统的发光性质证实了 Tyr 在蛋白质环境之外作为封端剂和还原剂的作用。本报告的一个有趣特点是 AgNMs 对 、 、 、 和 细胞系具有有前景的抗菌性能。这项工作的重要性在于,该研究表明我们的 AgNM 系统对病原菌( 和 )也具有对抗能力。此外,还使用各种方法(如碘化丙啶染色、监测活性氧生成、蛋白质泄漏、DNA 断裂等)阐明了 AgNMs 抗菌活性的机制。我们提出,AgNM 介导的 细胞毒性源于单线态氧(O )物种的生成,该物种会产生氧化应激,破坏细胞膜,从而导致蛋白质从细胞中泄漏。这项研究可以为阐明小分子 Tyr 在纳米材料形成中的作用铺平道路,并描述了新纳米材料在潜在抗菌应用中的用途。

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