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采用动态模型评估纳米结构和纳米涂层矫形假体材料上微生物的黏附与生物膜形成。

Evaluation of Microbial Adhesion and Biofilm Formation on Nano-Structured and Nano-Coated Ortho-Prosthetic Materials by a Dynamic Model.

机构信息

Department of Translational Research, N.T.M.S., University of Pisa, via San Zeno, 37/39-56127 Pisa, Italy.

Institute of Chemistry of Organometallic Compounds, National Research Council, via Giuseppe Moruzzi, 1-56124 Pisa, Italy.

出版信息

Int J Environ Res Public Health. 2020 Feb 5;17(3):1013. doi: 10.3390/ijerph17031013.

Abstract

The bio-engineering technologies of medical devices through nano-structuring and coating was recently proposed to improve biocompatibility and to reduce microbial adhesion in the prevention of implantable device-related infections. Our aim was to evaluate the ability of new nano-structured and coated materials to prevent the adhesion and biofilm formation, according to the American Standard Test Method ASTM-E2647-13. The materials composition was determined by X-ray Fluorescence and Laser Induced Breakdown Spectroscopy. Silver release was evaluated by Inductively Coupled Plasma Mass Spectrometry analysis. The gene expression levels of the Quorum Sensing and system were evaluated by the ΔΔCt method. The Log bacterial density (Log CFU/cm) on TiAl6V4 was 4.41 ± 0.76 and 4.63 ± 1.01 on TiAl6V4-AgNPs compared to 2.57 ± 0.70 on CoCr and 2.73 ± 0.61 on CoCr-AgNPs (P < 0.0001, A.N.O.V.A.- one way test). The silver release was found to be equal to 17.8 ± 0.2 µg/L after the batch phase and 1.3 ± 0.1 µg/L during continuous flow. The gene resulted in a 2.70-fold increased expression in biofilm growth on the silver nanoparticles (AgNPs) coating. In conclusion, CoCr showed a greater ability to reduce microbial adhesion, independently of the AgNPs coating. The silver release resulted in promoting the up-regulation of the system. Further investigation should be conducted to optimize the effectiveness of the coating.

摘要

医疗器械的生物工程技术通过纳米结构和涂层处理,最近被提出用于提高生物相容性并减少微生物黏附,以预防植入式装置相关感染。我们的目的是根据美国标准测试方法 ASTM-E2647-13 评估新型纳米结构和涂层材料防止黏附和生物膜形成的能力。通过 X 射线荧光和激光诱导击穿光谱法确定材料组成。通过电感耦合等离子体质谱分析评估银释放。采用ΔΔCt 法评估群体感应和系统的基因表达水平。TiAl6V4 上的细菌密度(Log CFU/cm)为 4.41 ± 0.76,TiAl6V4-AgNPs 上为 4.63 ± 1.01,而 CoCr 上为 2.57 ± 0.70,CoCr-AgNPs 上为 2.73 ± 0.61(P < 0.0001,单因素方差分析)。批处理阶段后发现银释放量等于 17.8 ± 0.2 µg/L,连续流动阶段为 1.3 ± 0.1 µg/L。在银纳米粒子(AgNPs)涂层上的生物膜生长中,基因的表达增加了 2.70 倍。总之,CoCr 表现出降低微生物黏附的更大能力,而与 AgNPs 涂层无关。银释放促进了系统的上调。应进一步研究以优化涂层的有效性。

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