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使用银-普鲁士蓝纳米级配位聚合物实现稳健的双重模式抗菌作用。

Robust dual modality antibacterial action using silver-Prussian blue nanoscale coordination polymer.

机构信息

Department of Chemistry, University of Delhi, Delhi, 110007, India.

Institute of Genomics and Integrative Biology, Sukhdev Vihar, Delhi, 110025, India.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Aug;113:110982. doi: 10.1016/j.msec.2020.110982. Epub 2020 Apr 21.

Abstract

We report the synthesis of novel silver-doped Prussian blue nanoscale coordination polymers (SPB NCPs), for dual modality photothermal ablation and oxidative toxicity in bacterial cells. The comparison of SPB NCPs (having Fe-CN-Ag bonds) with the conventionally used Prussian blue nanoscale coordination polymers (PB NCPs, having Fe-CN-Fe bonds) was investigated in terms of their physical and therapeutic properties. It was observed that both PB and SPB NCPs have similar physical dimensions, crystalline phase and optical properties. Both these NCPs showed robust photothermal effect by heat generation (hyperthermia) upon exposure to red laser light. However, among the two, only SPB NCP showed oxidase-like activity by generating HO in aqueous medium, presumably due to its silver content. In vitro antibacterial studies revealed that the SPB NCPs, but not PB NCPs, show inherent toxicity towards bacteria with an IC value close to 2.5 μg/ml. It can be inferred that this toxicity is oxidative in nature, as a result of the oxidase-like behaviour shown by SPB NCPs. Furthermore, light activation resulted in substantial additional antibacterial effect (photothermal toxicity) in bacterial cells treated with SPB NCPs. In comparison, marginal additional photothermal toxicity was observed in PB NCP-treated bacteria. Thus, we conclude that the combination of dual modality oxidative and photothermal toxicities demonstrated by SPB NCPs, but not by control PB NCPs, makes the former promising antibacterial agents at low dosages.

摘要

我们报告了新型银掺杂普鲁士蓝纳米级配位聚合物(SPB NCPs)的合成,用于细菌细胞的双模态光热消融和氧化毒性。SPB NCPs(具有 Fe-CN-Ag 键)与传统使用的普鲁士蓝纳米级配位聚合物(PB NCPs,具有 Fe-CN-Fe 键)在物理和治疗特性方面进行了比较。结果表明,PB 和 SPB NCPs 具有相似的物理尺寸、晶相和光学性质。这两种 NCPs 在暴露于红色激光光下时都表现出强大的光热效应,通过产生热(高热)。然而,在这两种 NCPs 中,只有 SPB NCP 表现出类氧化酶活性,在水介质中产生 HO,可能是由于其银含量。体外抗菌研究表明,SPB NCPs 而非 PB NCPs 对细菌具有固有毒性,IC 值接近 2.5μg/ml。可以推断,这种毒性是氧化性质的,是由于 SPB NCPs 表现出的类氧化酶行为。此外,光激活导致用 SPB NCPs 处理的细菌中表现出显著的额外抗菌作用(光热毒性)。相比之下,在用 PB NCP 处理的细菌中观察到边际额外的光热毒性。因此,我们得出结论,SPB NCPs 表现出的双模态氧化和光热毒性的组合,而不是对照 PB NCPs,使得前者成为低剂量有前途的抗菌剂。

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