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在金纳米粒子存在的情况下霍乱弧菌生长动力学的建模:大小和形态的影响。

Modelling of growth kinetics of Vibrio cholerae in presence of gold nanoparticles: effect of size and morphology.

机构信息

Department of Biochemistry, Bose Institute, P1/12 CIT Scheme VIIM, Kolkata, 700054, India.

Department of Physics, Bose Institute, 93/1A.P.C. Road, Kolkata, 700009, India.

出版信息

Sci Rep. 2017 Aug 29;7(1):9671. doi: 10.1038/s41598-017-09357-0.

Abstract

Emergence of multiple drug resistant strains of pathogenic bacteria calls for new initiatives to combat infectious diseases. Gold nanoparticles (AuNPs), because of their non-toxic nature and size/shape dependent optical properties, offer interesting possibility. Here we report the antibacterial efficacy of AuNPs of different size and shape (AuNS10, AuNS100 and AuNR10; the number indicating the diameter in nm; S stands for sphere and R for rod) against the classical (O395) and El Tor (N16961) biotypes of Vibrio cholerae, the etiological agent responsible for cholera. Growth kinetics was monitored by measuring optical density at different time intervals and fitted by non-linear regression of modified Buchanan model. Sigmoidal growth curve for VcO395 indicated the existence of single phenotype population and was affected by AuNR10 only, implying the importance of morphology of AuNP. Growth of VcN16961 was affected by all three AuNPs indicating the vulnerability of El Tor biotype. Interestingly, VcN16961 exhibited the occurrence of two phenotypic subpopulations - one with shorter (vulnerable Type 1) and the other with extended (tolerant Type 2) lag phase. Various assays were conducted to probe the impact of AuNPs on bacterial cells. Apart from AuNR10, antimicrobial efficacy of AuNS10 was better compared to AuNS100.

摘要

多种耐药性病原菌的出现要求采取新的措施来对抗传染病。由于金纳米粒子(AuNPs)具有无毒的性质和尺寸/形状依赖性的光学特性,因此提供了有趣的可能性。在这里,我们报告了不同尺寸和形状的 AuNPs(AuNS10、AuNS100 和 AuNR10;数字表示直径,nm;S 代表球体,R 代表棒)对经典(O395)和 El Tor(N16961)生物型霍乱弧菌(引起霍乱的病原体)的抗菌功效。通过在不同时间间隔测量光密度来监测生长动力学,并通过修正的 Buchanan 模型的非线性回归进行拟合。VcO395 的 Sigmoidal 生长曲线表明存在单一表型群体,仅受 AuNR10 影响,这意味着 AuNP 形态的重要性。三种 AuNPs 均影响 VcN16961 的生长,表明 El Tor 生物型的脆弱性。有趣的是,VcN16961 表现出两种表型亚群的发生 - 一种具有较短(易受影响的 1 型)和另一种具有延长(耐受的 2 型)迟滞期。进行了各种实验来探究 AuNPs 对细菌细胞的影响。除了 AuNR10 之外,与 AuNS100 相比,AuNS10 的抗菌功效更好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e15b/5575114/3a684015521f/41598_2017_9357_Fig1_HTML.jpg

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