首页> 美国卫生研究院文献>International Journal of Medical Sciences >Capping Agent-Dependent Toxicity and Antimicrobial Activity of Silver Nanoparticles: An In Vitro Study. Concerns about Potential Application in Dental Practice
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Capping Agent-Dependent Toxicity and Antimicrobial Activity of Silver Nanoparticles: An In Vitro Study. Concerns about Potential Application in Dental Practice

机译:银纳米粒子的加帽剂依赖性毒性和抗菌活性:一项体外研究。有关在牙科实践中潜在应用的担忧

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摘要

Objectives: In dentistry, silver nanoparticles (AgNPs) have drawn particular attention because of their wide antimicrobial activity spectrum. However, controversial information on AgNPs toxicity limited their use in oral infections. Therefore, the aim of the present study was to evaluate the antibacterial activities against a panel of oral pathogenic bacteria and bacterial biofilms together with potential cytotoxic effects on human gingival fibroblasts of 10 nm AgNPs: non-functionalized - uncapped (AgNPs-UC) as well as surface-functionalized with capping agent: lipoic acid (AgNPs-LA), polyethylene glycol (AgNPs-PEG) or tannic acid (AgNPs-TA) using silver nitrate (AgNO3) as control.Methods: The interaction of AgNPs with human gingival fibroblast cells (HGF-1) was evaluated using the mitochondrial metabolic potential assay (MTT). Antimicrobial activity of AgNPs was tested against anaerobic Gram-positive and Gram-negative bacteria isolated from patients with oral cavity and respiratory tract infections, and selected aerobic Staphylococci strains. Minimal inhibitory concentration (MIC) values were determined by the agar dilution method for anaerobic bacteria or broth microdilution method for reference Staphylococci strains and Streptococcus mutans. These strains were also used for antibiofilm activity of AgNPs.Results: The highest antimicrobial activities at nontoxic concentrations were observed for the uncapped AgNPs and the AgNPs capped with LA. It was found that AgNPs-LA and AgNPs-PEG demonstrated lower cytotoxicity as compared with the AgNPs-TA or AgNPs-UC in the gingival fibroblast model. All of the tested nanoparticles proved less toxic and demonstrated wider spectrum of antimicrobial activities than AgNO3 solution. Additionally, AgNPs-LA eradicated Staphylococcus epidermidis and Streptococcus mutans 1-day biofilm at concentration nontoxic to oral cells.Conclusions: Our results proved that a capping agent had significant influence on the antibacterial, antibiofilm activity and cytotoxicity of AgNPs.Clinical significance: This study highlighted potential usefulness of AgNPs against oral anaerobic Gram-positive and Gram-negative bacterial infections and aerobic Staphylococci strains provided that pharmacological activity and risk assessment are carefully performed.
机译:目的:在牙科领域,银纳米颗粒(AgNPs)具有广泛的抗菌活性,因此受到了特别的关注。但是,关于AgNPs毒性的有争议信息限制了它们在口腔感染中的使用。因此,本研究的目的是评估对一组口腔致病细菌和细菌生物膜的抗菌活性,以及​​对10 nm AgNPs对人牙龈成纤维细胞的潜在细胞毒性作用:以及未官能化的未封端(AgNPs-UC)用封端剂表面官能化的方法:以硝酸银(AgNO3)为对照的硫辛酸(AgNPs-LA),聚乙二醇(AgNPs-PEG)或鞣酸(AgNPs-TA)方法:AgNPs与人牙龈成纤维细胞的相互作用使用线粒体代谢潜能分析(MTT)评估细胞(HGF-1)。测试了AgNPs对从口腔和呼吸道感染患者中分离出的厌氧革兰氏阳性和革兰氏阴性细菌以及部分需氧葡萄球菌菌株的抗菌活性。最低抑菌浓度(MIC)值通过厌氧菌的琼脂稀释法或参考葡萄球菌菌株和变形链球菌的肉汤微稀释法确定。这些菌株也用于AgNPs的抗生物膜活性。结果:未封端的AgNPs和被LA封端的AgNPs在无毒浓度下观察到最高的抗菌活性。发现在牙龈成纤维细胞模型中,与AgNPs-TA或AgNPs-UC相比,AgNPs-LA和AgNPs-PEG显示出较低的细胞毒性。与AgNO3溶液相比,所有测试的纳米颗粒均具有较低的毒性,并具有更广泛的抗菌活性。此外,AgNPs-LA消除了表皮葡萄球菌和变形链球菌1天浓度对口腔细胞无毒的生物膜。强调了AgNPs对口服厌氧革兰氏阳性和革兰氏阴性细菌感染以及有氧葡萄球菌菌株的潜在有用性,前提是要仔细进行药理活性和风险评估。

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