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基于适体-DNA 支架银纳米簇的生物膜光谱研究。

Spectroscopic Study on Biofilm in the Presence of the Aptamer-DNA Scaffolded Silver Nanoclusters.

机构信息

Department of Chemistry and Biochemistry, Stephen F. Austin State University, Nacogdoches, TX 75962, USA.

Department of Physics and Astronomy, Mississippi State University, Mississippi State, MS 39762, USA.

出版信息

Molecules. 2020 Aug 10;25(16):3631. doi: 10.3390/molecules25163631.

Abstract

We report the effectiveness of silver nanocluster (Ag-NC) against the biofilm of (PA). Two DNA aptamers specific for PA and part of their sequences were chosen as templates for growing the Ag-NC. While circular dichroism (CD) studies determined the presence of secondary structures, UV/Vis absorption, and fluorescence spectroscopic studies confirmed the formation of the fluorescent Ag-NC on the DNA templates. Furthermore, mesoscopic physics-based partial wave spectroscopy (PWS) was used to analyze the backscattered light signal that can detect the degree of nanoscale mass density/refractive index fluctuations to identify the biofilm formation, comparatively among the different aptamers with respect to the control sample. The importance of the secondary structure of the aptamer DNA in targeting, successfully binding with the cells and delivering the Ag-NC, is evidenced by the decrease in disorder strength () of the Ag-NC treated samples compared to the untreated PA cells, which showed the abundance of higher in the PWS studies. The higher value attributed to the higher mass density fluctuations and the formation of biofilm. We envision this study to open a new avenue in using a powerful optical microscopic technique like PWS in detection, and DNA aptamer enclosed silver nanoclusters to prevent biofilms for opportunist pathogens like

摘要

我们报告了银纳米簇(Ag-NC)对 (PA)生物膜的有效性。选择针对 PA 的两个 DNA 适体及其部分序列作为生长 Ag-NC 的模板。圆二色性(CD)研究确定了二级结构的存在,而紫外/可见吸收和荧光光谱研究则证实了在 DNA 模板上形成了荧光 Ag-NC。此外,基于中观物理的分波光谱(PWS)被用于分析反向散射光信号,该信号可以检测纳米级质量密度/折射率波动的程度,以识别不同适体相对于对照样品的生物膜形成情况。适体 DNA 的二级结构在靶向、成功结合细胞和递送 Ag-NC 方面的重要性,通过与未经处理的 PA 细胞相比,Ag-NC 处理样品的无序强度()降低得到证明,这表明在 PWS 研究中存在更多的 。更高的 值归因于更高的质量密度波动和生物膜的形成。我们设想这项研究将为使用像 PWS 这样强大的光学显微镜技术进行检测开辟一条新途径,并使用 DNA 适体封闭的银纳米簇来防止机会性病原体如 的生物膜形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3ee/7464845/12c0f93de0e8/molecules-25-03631-g001.jpg

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